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Best Business Opportunities in Punjab- Identification and Selection of right Project, Thrust areas for Investment, Industry Startup and Entrepreneurship Projects

Food and Agro Processing: Project Opportunities in Punjab

PROFILE:

Food processing involves any type of value addition to agricultural or horticultural produce and also includes processes such as grading, sorting and packaging which enhance shelf life of food products. The food processing industry provides vital linkages and synergies between industry and agriculture. The Food Processing Industry sector in India is one of the largest in terms of production, consumption, export and growth prospects. The government has accorded it a high priority, with a number of fiscal reliefs and incentives, to encourage commercialization and value addition to agricultural produce, for minimizing pre/post harvest wastage, generating employment and export growth. India's food processing sector covers a wide range of products fruit and vegetables; meat and poultry; milk and milk products, alcoholic beverages, fisheries, plantation, grain processing and other consumer product groups like confectionery, chocolates and cocoa products, Soya-based products, mineral water, high protein foods etc.

RESOURCES:

Punjab is a land of boundless opportunity for agro based industry. Punjab State with only 1.5 per cent geographical area of country produces 22 per cent of wheat; 12 per cent of rice and 12 per cent of cotton in the country. Priority is also being given to sugarcane, oil seeds, horticulture and forestry. The cropping intensity of the State is more than 186% and has earned it a name of food basket and granary of India. Despite rising commodity prices and the financial meltdown, the food processing industry in Punjab is bullish on growth and has lined up new launches. Fruits and vegetables which is grown in Punjab are orange, mango, grape, pear, peach, litchi, lemon, tomato, potato, cabbage, cauliflower, brinjal, and many more. National Productivity Council of India after a survey found that in Punjab availability of crop residue is of the order of 31.5 million tons. The major crop residues are rice straw, wheat straw and cotton stalk. In addition to that industrial residue/by product such as rice husk and bagasse is also available. Approximately 2 million tons of these two products are generated every year.

GOVERNMENT POLICIES:

The Ministry of Food Processing Industries (MOFPI) is a ministry of the Government of India is responsible for formulation and administration of the rules and regulations and laws relating to food processing in India. The ministry was set up in the year 1988, with a view to develop a strong and vibrant food processing industry, to create increased employment in rural sector and enable farmers to reap the benefits of modern technology and to create a of surplus for exports and stimulating demand for processed food.

•        Custom duty rates have been substantially reduced on food processing plant and equipments, as well as on raw materials and intermediates, especially for export production.

•        Wide-ranging fiscal policy changes have been introduced progressively in food processing sector. Excise and Import duty rates have been reduced substantially. Many processed food items are totally exempt from excise duty.

•        Corporate taxes have been reduced and there is a shift towards market related interest rates. There are tax incentives for new manufacturing units for certain years, except for industries like beer, wine, aerated water using flavouring concentrates, confectionery, chocolates etc.

•        Indian currency, rupee, is now fully convertible on current account and convertibility on capital account with unified exchange rate mechanism is foreseen in coming years.

•        Repatriation of profits is freely permitted in many industries except for some, where there is an additional requirement of balancing the dividend payments through export earnings.

 

Automotives: Project Opportunities in Punjab

 

PROFILE:

The automotive industry in India is one of the largest in the world and one of the fastest growing globally. India's passenger car and commercial vehicle manufacturing industry is the sixth largest in the world, with an annual production of more than 3.7 million units in 2010. As of 2010, India is home to 40 million passenger vehicles. More than 3.7 million automotive vehicles were produced in India in 2010 (an increase of 33.9%), making the country the second fastest growing automobile market in the world.

RESOURCES:

The auto-components industry of India is likely to grow rapidly, given its global competitiveness, and this has strong implications for employment and income generation in Punjab. Punjab has an automotive component industry which caters largely to the lower value replacement market. This is partly the result of no significant automotive producer having set up manufacturing base in the state since the economic reforms were launched in India in 1991. The state government must adopt an imaginative plan to attract modern automotive components manufacturers to set up capacity in the state, while at the same time seeking large scale investments in the automotive sector.

GOVERNMENT POLICIES:

·          The auto-components industry of India is likely to grow rapidly, given its global competitiveness, and this has strong implications for employment and income generation in Punjab. Punjab has an automotive component industry which caters largely to the lower value replacement market. This is partly the result of no significant automotive producer having set up manufacturing base in the state since the economic reforms were launched in India in 1991. The state government must adopt an imaginative plan to attract modern automotive components manufacturers to set up capacity in the state, while at the same time seeking large scale investments in the automotive sector.

 

Dairy: Project Opportunities in Punjab

PROFILE:

India is the world's highest milk producer and all set to become the world's largest food factory. Milk production alone involves more than 70 million producers, each raising one or two cows/ buffaloes primarily for milk production. The domesticated water buffalo is one of the gentlest of all farm animals; hence it can be breeded easily. The dairy sector offers a good opportunity to entrepreneurs in India.

RESOURCES:

The primary source of milk and other dairy products in Punjab is the buffalo. The state ranks at the top in the country in the availability of milk after Haryana and Gujarat. Punjab plans 100 dairies to promote dairy farming. In an effort to promote dairy farming in the state, the Government of Punjab is planning to open 100 commercial dairies to increase milk production, thus paving the way for White Revolution.

GOVERNMENT POLICIES:

•        Liberalisation of the economy – dairy sector open for investment by private and foreign players

•        Abolition of the Quantitative

•        Restrictions on import of dairy products

•        Per capita consumption of milk products below international average – scope of increasing consumption

•        Amendment of the Milk and Milk Products Order (MMPO) – no restrictions on capacity installation and expansion

•        Amendment in Cold Storage Act (No licenses needed for establishing refrigerated and cold chain units for dairy products)

 

Biotechnology: Project Opportunities in Punjab

 

PROFILE

The Biotechnology sector in India is one of the fastest growing sectors of the Indian Economy. As the sector is mainly based on knowledge, it is expected that it will play an important part in shaping the Indian Economy, which is developing at a rapid pace. The Indian Biotechnology sector holds immense potential in terms of research and development, skill and cost effectiveness. As per the eight annual survey by the Association of Biotechnology-led enterprise (ABLE) and a monthly journal, Bio-Spectrum, the sector grew threefold in five years and reported a revenue of US$ 3 billion during 2009-2011 with a 17 per cent rise as compared to the previous year.

RESOURCES

Punjab's strong agricultural base presents an opportunity for leveraging it to develop the biotechnology industry in the state. The Government of Punjab has taken significant initiatives to promote biotechnology related R&D in the state.

 Two centres which form the nucleus of the biotech research in the region are the Institute for Microbial Technology (IMTECH) in Chandigarh which takes up research in microbial bio-processing and the Central same. In addition, it is also supporting the Scientific and Industrial organization (CSIO) which has been developing a number of biotech based diagnostic kits.

 The state is developing a biotechnology park in the suburbs of Chandigarh to nurture commercially viable leads through companies. Its facilities will include a biotech incubator for research and development, pilot testing and other validation facilities. The park aims to attract Small and Medium Enterprises (SMEs) to the cluster and contribute to overall R&D in the sector. The Punjab State Council for Science and Technology will act as the single window agency for setting up business in the biotech park.

 

GOVERNMENT POLICIES:

The State Govt. notified its IT-BT Policy in 2003 as part of the Industrial Policy under which special incentives are being given to promote the growth of biotech industry such as:

•        Minimum floor rates of Sales Tax.

•        No restriction on movement of capital equipment. 

•        No octroi on biotech items. 

•        Availability of power at industrial (and not commercial) power tariff.

•        Exemption from Electricity Duty.

•        Uninterrupted power supply.

 

Pharmaceuticals: Project Opportunities in Punjab

PROFILES:

The Pharmaceutical industry in India is the world's third-largest in terms of volume and stands 14th in terms of value. The Indian pharmaceuticals market is expected to reach US$ 55 billion in 2020 from US$ 12.6 billion in 2009. The pharmaceutical industry in India meets around 70% of the country's demand for bulk drugs, drug intermediates, pharmaceutical formulations, chemicals, tablets, capsules, orals and injectibles. There are about 250 large units and about 8000 Small Scale Units, which form the core of the pharmaceutical industry in India (including 5 Central Public Sector Units). These units produce the complete range of pharmaceutical formulations, i.e., medicines ready for consumption by patients and about 350 bulk drugs, i.e., chemicals having therapeutic value and used for production of pharmaceutical formulations.

 

RESOURCES:

Punjab has one of the largest Indian pharmaceutical companies domiciled in the state and has several other companies engaged in the business. There are several colleges for training skilled manpower required for the pharmaceutical industry. The state government must focus on enlarging the pharmaceutical and personal hygiene industrial product space in Punjab.

 

GOVERNMENT POLICIES:

•        Industrial licensing for the manufacture of all drugs and pharmaceuticals has been abolished except for bulk drugs produced by the use of recombinant DNA technology, bulk drugs requiring in-vivo use of nucleic acids, and specific cell/tissue targeted formulations.

•        Reservation of 5 drugs for manufacture by the public sector only was abolished in Feb. 1999, thus opening them up for manufacture by the private sector also.

•        Foreign investment through automatic route was raised from 51% to 74% in March, 2000 and the same has been raised to 100%.

•        Automatic approval for Foreign Technology Agreements is being given in the case of all bulk drugs, their intermediates and formulations except those produced by the use of recombinant DNA technology, for which the procedure prescribed by the Government would be followed.

•        Drugs and pharmaceuticals manufacturing units in the public sector are being allowed to face competition including competition from imports. Wherever possible, these units are being privatized.

•        Extending the facility of weighted deductions of 150% of the expenditure on in-house research and development to cover as eligible expenditure, the expenditure on filing patents, obtaining regulatory approvals and clinical trials besides R&D in biotechnology.

•        Introduction of the Patents (Second Amendment) bill in the Parliament. It, inter-alia, provides for the extension in the life of a patent to 20 years.

 

Textiles: Project Opportunities in Punjab

PROFILES:

India Textile Industry is one of the leading textile industries in the world. India textile industry largely depends upon the textile manufacturing and export. It also plays a major role in the economy of the country. India earns about 27% of its total foreign exchange through textile exports. Further, the textile industry of India also contributes nearly 14% of the total industrial production of the country. It also contributes around 3% to the GDP of the country. India textile industry is also the largest in the country in terms of employment generation. It not only generates jobs in its own industry, but also opens up scopes for the other ancillary sectors. India textile industry currently generates employment to more than 35 million people.

RESOURCES:

Punjab is a major grower of cotton and has a long established industry of cotton spinning and weaving. The Textile Industry is also one of the largest provider of employment and accounts of almost 60% of industrial employment in the State of Punjab. It has been noted that even with high level of mechanisation, the chances of machine replacing human are minimum in the sector due to essential skill requirement. The textiles industry of Punjab already has wool and acrylic fibre base.  To sustain the thrust on textiles, some balance with manmade and blended fibre products will have to be maintained to cater to an expanding market for manmade and blended textiles. It provides employment opportunity to semi literates and lower section of the society where the incident of unemployment is most glaring. Most importantly the Textile Sector is one of the biggest employment providing sectors to women. Hence any boost to Textile Industry will definitely provide and offer opportunity of large number of employment to the youths in the State of Punjab.

GOVERNMENT POLICIES:

The Ministry of Textiles in India has formulated numerous policies and schemes for the development of the textile industry in India. The government of India has been following a policy of promoting and encouraging the handloom sector through a number of programmes. Most of the schematic interventions of the government of India in the ninth and tenth plan period have been through the state agencies and co-operative societies in the handloom industries. Some of the major acts relating to textile industry include: Central Silk Board Act, 1948, The Textiles Committee Act, 1963, The Handlooms Act, 1985, Cotton Control Order, 1986, The Textile Undertakings Act, 1995 Government of India is earnestly trying to provide all the relevant facilities for the textile industry to utilize its full potential and achieve the target. The textile industry is presently experiencing an average annual growth rate of 9-10% and is expected to grow at a rate of 16% in value, which will eventually reach the target of US $ 115 billion by 2012. The clothing and apparel sector are expected to grow at a rate of 21 %t in value terms.

Tourism: Project Opportunities in Punjab

PROFILE:

Tourism in India is the largest service industry, with a contribution of 6.23% to the national GDP and 8.78% of the total employment in India. The tourism industry in India is substantial and vibrant, and the country is fast becoming a major global destination. India’s travel and tourism industry is one of them most profitable industries in the country, and also credited with contributing a substantial amount of foreign exchange. Indian Tourism offers a potpourri of different cultures, traditions, festivals, and places of interest.

RESOURCES:

Punjab, the land of five rivers and yellow fields, is a favourite tourist destination. It has an integrated cultural history consisting of ancient monuments, religious places, museums and royal palaces like Quila Mubarak. It also has wild life sanctuaries with a rare site of migratory birds. The major places of tourist interest are:- Golden Temple, Durgiana Mandir, Jallianwala bagh in Amritsar; Takhat Sri Kesgarh Sahib and Khalsa Heritage Complex at Anandpur Sahib; Bhakra Dam, Qila Androon and Moti Bagh Palace at Patiala; Wetland at Harike Pattan Sanghol for archaeological importance and Sodal Temple at Jalandhar commemorative Maharishi Balmiki Heritage, etc.

        Tourism in the State is a source of substantial revenues; employment generation; up gradation of human skills; creation of infrastructure, thus helping in the development of all other sectors of an economy. Since tourism is a composite sector, its growth requires participation of private investors at different levels. For this purpose, the State Government has also announced a tourism policy with the aim of developing tourism as a major industry of Punjab, by providing leadership and strategic direction.

GOVERNMENT POLICIES:

In order to develop tourism in India in a systematic manner, position it as a major engine of economic growth and to harness its direct and multiplier effects for employment and poverty eradication in an environmentally sustainable manner, the National Tourism Policy was formulated in the year 2002. Broadly, the Policy attempts to:-

•        Position tourism as a major engine of economic growth;

•        Harness the direct and multiplier effects of tourism for employment generation, economic development and providing impetus to rural tourism;

•        Focus on domestic tourism as a major driver of tourism growth.

•        Position India as a global brand to take advantage of the burgeoning global travel trade and the vast untapped potential of India as a destination;

•        Acknowledges the critical role of private sector with government working as a pro-active facilitator and catalyst;

•        Create and develop integrated tourism circuits based on India’s unique civilization, heritage, and culture in partnership with States, private sector and other agencies; and ensure that the tourist to India gets physically invigorated, mentally rejuvenated, culturally enriched, spiritually elevated and feel India from within.

 

Waste management and recycling: Project Opportunities in Punjab

PROFILE:

Rapid industrialization last few decades have led to the depletion of pollution of precious natural resources in India depletes and pollutes resources continuously. Further the rapid industrial developments have, also, led to the generation of huge quantities of hazardous wastes, which have further aggravated the environmental problems in the country by depleting and polluting natural resources. Therefore, rational and sustainable utilization of natural resources and its protection from toxic releases is vital for sustainable socio-economic development.

Hazardous waste management is a new concept for most of the Asian countries including India. The lack of technical and financial resources and the regulatory control for the management of hazardous wastes in the past had led to the unscientific disposal of hazardous wastes in India, which posed serious risks to human, animal and plant life.

 

RESOURCES:

In Punjab, growth of population, industrialization and urbanization has resulted in generation of large volumes of solid waste. The total amount of collected solid waste from the districts includes 1108012.25 MT of municipal waste and 6695.57 MT of bio-medical waste (PPCB as cited in Statistical Abstract of Punjab, 2007). The factors contributing to the generation of solid waste are:

•      The state has registered 45% increase in its population during the last decades.

•      The state is the 7th most urbanized state in the country with urban population increasing to 33.95% against a national average of 27.8%.

•      The state has two (Ludhiana & Amritsar) cities with more than 1 million population.

•        The state supports a large number of floating populations from other states like Bihar, Uttar Pradesh, Rajasthan and Andhra Pradesh.

•      Most of the solid waste is presently disposed of on land and remains uncovered resulting in environmental pollution of surrounding area.

•        The change in life style towards consumes and discard culture is responsible for adding to municipal solid waste and changing waste composition. It also adds pressure on the existing municipal solid waste handling infrastructure, as well as, disposal sites.

 

GOVERNMENT POLICIES:

National policy on waste management is set out in the October 1998 policy statement on waste management- Changing our Ways. It outlines the Government's policy objectives in relation to waste management, and suggests some key issues and considerations that must be addressed to achieve these objectives. The policy is firmly grounded in an internationally recognised hierarchy of options, namely prevention, minimisation, reuse/recycling, and the environmentally sustainable disposal of waste which cannot be prevented or recovered.

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Profitable Business Ideas & Opportunities in Tempering and Toughening of Flat Glass

Toughened or tempered glass is a type of safety glass processed by controlled thermal or chemical treatments to increase its strength compared with normal glass. Tempering creates balanced internal stresses when broken which cause the glass, to crumble into small granular chunks instead of splintering into jagged shards. The granular chunks are less likely to cause injury. Glass is a naturally fragile material. To boost its functional properties and enhance its operational safety, it undergoes the process of tempering. Tempering or toughening is a process where the glass is heated at high temperatures to make it stronger and more resistant to breakage. This process creates a balance in the product’s internal stresses, so that when the glass is broken, it would crumble into tiny granular chunks instead of breaking into sharp, jagged pieces. Because of its increased strength and safety, builders and architects utilize them in a multitude of demanding applications. This includes showers, vehicle windows, refrigerator trays, glass tables, diving masks, glassware, cookware, fireplace grates, bulletproof windows, architectural glass doors and virtually anywhere else that needs safe and strong glass. Tempering is a term used in metallurgy, and defines the degree of hardness and strength imparted to a metal, as by quenching, heat treatment, or cold working. Glass is also 'hardened' the same way, i.e., heated to very high temperatures, then cooled quickly. (The melting point of glass is between 1400°C and 1600°C depending on its composition). This changes the structure of the glass. It has lower stress points and forms cube-like crystalline structures. Because of this, tempered glass shatters into cubes rather than into long, sharp shards so it is a lot safer to use. After toughening, bit becomes highly resistant to heat and shock. Tempered glass is four to five times more resistant to breakage than annealed glass. THE PROCESS OF TEMPERING GLASS Tempered glass goes through a process similar to that of a tempered steel. Stage 1: All toughened glass begins life as a float glass. Before it undergoes tempering, the glass is examined for imperfections. Bubbles, inclusions, and cracks may cause the float glass to break during toughening. So if any signs of such flaws are found, the glass can’t be tempered. Stage 2: Prior to toughening, it must first be cut to the desired shape as it won’t be possible to cut or etch the finished product in its toughened state. Once cut, the edges are smoothed and any burrs produced during etching or cutting are removed. Stage 3: To completely remove the grains of glass that were deposited during sanding, the float glass is thoroughly washed. This also ensures that dirt and any other tiny debris won’t interfere with the tempering. Stage 4: In the tempering process, the surface of the float glass is heated at over 600 degrees Celsius as it travels through a furnace. Some manufacturers heat the glass above its annealing point of approximately 720 degrees Celsius. Stage 5: The scorching glass is then rapidly cooled through quenching by a high-pressure blast of air for a period of three to 10 seconds at various angles. As it cools and begins to shrink, tensile stresses temporarily build-up in the interior zone of the glass while its surface consequently develops surface stresses. These compressive stresses eventually enhance the strength of the glass, making it tougher to break. A properly tempered glass should be able to withstand pressures of a minimum of 10,000 pounds per square inch (psi) and can be expected to break at about 24,000 psi. Beyond the added tensile strength and safety, tempered glass has a greater resistance to thermal shock and thermal stresses. Essentially, it can withstand constant exposure to temperatures as high as 243 degrees Celsius. Toughened glass has hundreds of applications. Used in automobiles, toughened glass windshields and windows reduces the occurrence of deadly cuts and bleeding in case of accidents because the glass breaks into small, cube-like pieces. Because of its structural strength, tempered glass is widely used in architectural applications. Toughened glass acquires a degree of strength for excess of the strength of normal glass sheet or plate glass, which if broken shatters into small and comparatively harmless pieces. It is claimed that the resistance to mechanical stock of toughened plate glass is 4 to 5 times more than that of ordinary plate glass. A toughened glass has better resistance to the vibration, mechanical shock and abrasion. Process of Manufacture: The glass plate is heated to a temperature above its softening point and then subjected to rapid cooling. The glass is suddenly chilled and in this process contracts towards the core. It stretches until it has solidified and is no longer able to contract further at this stage the core is still soft. It contracts against restrained exercise by the solidified upper layer of the glass. This compression is responsible for the strength of the glass sheet, which is limited to about 20,000 lb/sq.inch. Thus it is highly stressed and the resultant force is able to nullify the external impact. The intensity of the stresses depends on the rate of cooling, co-efficient of expansion, thermal conductivity of the glass, its specific heat, elasticity, and certain other physical properties. Toughening Process: The raw plate glass sheet which is free from waviness, distortion etc., is cut to required size and shape and then all the edges are ground and polished as per end use of the product. This is called edge 4 grinding and polishing and is very important for toughening because it will lead to breakages during process. No glass sheet can be toughened without edge grinding and polishing. Washing and Drying: After the edge grinding and polishing the glass sheets are washed manually or by machine and then dried. The glass sheets are fed into the furnace (Electrically operated). The sheets are kept in the furnace above its softening point, which varies according to the composition of glass. After attaining required temperature the glass sheets are removed out of the furnace and placed in the air blowing quenching boxes for 20 to 25 seconds. After quenching glass sheet is toughened. For bend glass toughening, the glass sheets passes through a set of dies (as per shape) after furnace and then to the quenching boxes. Testing: After toughening all the sheet glasses are passed through the polariscope inspection. Tempered glass is also termed as toughened glass as it is believed to be four times stronger than normal glass. Tempered glass, when broken results into harmless granular pieces. In toughened or tempered glass, activities such as drilling, cutting, sandblasting, and machining are not possible. Increasing government initiatives on infrastructure facilities accompanied with widening application outlook in construction sector will favor tempered glass market demand. Improving standard of living along with rising consumer spending on interior furniture designing owing to disposable income and rapid urbanization in India, China and Brazil will stimulate industry growth. Rise in tempered glass market demand owing to high strength, safety, anti-breakage, and heat resistance properties coupled with its wide usage in public buildings including phone booths, bus terminals, canopies gymnasiums and sports arenas should stimulate market demand. Rising government regulatory support to favor infrastructure development towards residential and commercial buildings should stimulate the market growth. Global Tempered Glass Market was valued at $46 billion in 2016, and is projected to reach $65 billion by 2023, registering a CAGR of 5.0% from 2017 to 2023. Tempered glass also known as toughened glass, is known to be four times stronger than simple annealed glass. Tempered glass is produced by heating the silica mix up to 600°C and then rapidly cooling the molten silica. Tempered glass is widely used in automotive window panes, building windows, furniture, and interior activities of buildings. Growth in use of tempered glass in automotive and construction industry drives the market. However, stringent government regulations in the automotive and construction industry restricts the market growth. Increase in construction activities in emerging economies such as India, Indonesia, Brazil, Argentina, and the Middle East offers growth opportunity for the tempered glass market. 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Investment Opportunities in Production of Caffeine

Investment Opportunities in Production of Caffeine. Extraction of Caffeine from used Tea Leaves. Tea Waste Management Caffeine in pharmaceuticals is considered as a drug that acts as a stimulant for the central nervous system (CNS). It is one of the most widely used drug in the world and is known for containing psychoactive substances. It is a bitter substance containing white crystalline like purine, mostly methylxanthine alkaloid. They are found in seeds, nuts or even leaves of few plants that are said to be native of South America or East Asia. Usually, the main source of caffeine is said to be coffee beans. The main usage of caffeine is to prevent the consumer from drowsiness and improve their performance. Caffeine is found in many beverages like coffee, tea, cola among others and is heavily consumed by most adults globally. Consumption of 400grams of caffeine is safe for an adult but its consumption by adolescents must be limited to prevent from future illness. Caffeine is the most widely consumed psychoactive drug that acts as a stimulant for the central nervous system (CNS). Caffeine is a naturally-occurring component present in coffee beans, cocoa beans, guarana, and tea leaves. Caffeine is a white crystalline purine, mostly a methylxanthine alkaloid, with bitter taste. The consumption of caffeine in adequate amounts improves the reaction time, alertness, concentration, and lowers the risk of cardiovascular disease and diabetes. Moreover, it helps in protecting against various types of cancer, including liver, colon, and colorectal cancers. Caffeine is a naturally occurring substance compound observed in plant constituents such as cocoa beans and expresso, the kola nut, guarana berries, tea leaves and includes a long history of human utilization. Caffeine is the most widely consumed psychoactive drug which acts as a stimulant for the central nervous system. It is a white crystalline purine, very often a methylxanthine alkaloid consisting of bitter taste. Caffeine has a wide application range, right from food and beverage to pharmaceutical to flavor and fragrance. Caffeine is beneficial in burning fats, improves drastically physical performance, fights depression and fatigue and also protects from many diseases. The consumption of caffeine in adequate amounts improves the reaction time, alertness, concentration, and lowers the risk of cardiovascular disease and diabetes. Moreover, it helps in protecting against various types of cancer, including liver, colon, and colorectal cancers. Process of extraction of Caffeine from tea waste Caffeine also comes from tea leaves and other tea wastes. The isolation of caffeine from tea leaves is a difficult task and presents the chemist with a major problem. Caffeine does not occur alone in tea leaves, but is accompanied by other natural substances like cellulose, tannins, flavonoid pigments and chlorophyll from which it must be separated. This separation can be very costly due to involvement of many chemicals and sophisticated laboratory is needed. Apart from this caffeine can also be recovered from the waste tea or from the residue left behind after the preparation of the tea. Tea Waste Tea waste can be used at broad level to recover the residual caffeine. For this purpose firstly the source from where the tea waste is generated has to be identified. Regarding this tea waste generated from various tea processing industries has to be collected and brought to the extraction plant for extraction of caffeine. The extraction of caffeine is known to be a multi-stage counter-current extraction technique. The extraction plant is broadly sub-divided into three sections, namely: • Pre-treatment section. • Extraction section. • Post-treatment section. Extraction of caffeine from tea waste is a three stage process which are described one by one below: 1. Pre Treatment Section The very first step of extraction is called pre-treatment. For this purpose, in the pre-treatment section, tea waste, lime and water are mixed. The mixing ratio of these three ingredients is pre-fixed and always kept constant. After mixing them in the predefined ratio, the mixture prepared is then cooked at elevated temperature in a mixing device called cooker-cum-mixer. The purpose of the pre-treatment is that by cooking the tissues of the tea waste gets loosen which helps in the efficient extraction of caffeine in the extractor. This is the main reason why pre-treatment is done. 2. Extraction Section In this section, a suitable solvent is used to extract caffeine tea waste. In this process, the solvent is recovered subsequently and recycled back to the system. The addition of the solvent leads to the generation of crude caffeine. Complete operation in this section is carried out in a continuous mode other than batch operation. A continuous feed of waste is given to the reactor to maintain the continuity of the reactor system. Inside the extractor, the waste comes in contact with the solvent in counter-current way which leads to the extraction of caffeine in stage-wise manner. Caffeine is recovered from the miscella, a mixture of lime tea waste and water which is stored in the balancing tank in the form of crude caffeine. During this storage all the solvent is removed from the crude caffeine. The removal of solvent from crude caffeine occurs by a solvent recovery method called evaporation. The solvent recovered in this process is recycled back to the extractor. Before it is recycled back to the extractor it is separated from water in solvent-water separator. Crude caffeine is then subjected to the post-treatment which gives pure caffeine. The residual decaffeinated tea waste from the extractor moves to the desolventizer where the entrapped solvent in the tea waste is removed by heating. Solvent recovered through this process is recycled back to the system extractor. 3. Post Treatment In the last step, crude caffeine obtained from extraction section which is kept in the storage tank is processed further in order to obtain the final purified caffeine. Here, in this section, crude caffeine is firstly made to dissolve in hot water to separate it from wax. After that, the remaining coloured solution which contains caffeine is treated with activated charcoal and filtered. The activated charcoal being capable of absorbing all impurities absorbs all the impurities and color. The decolorized caffeine solution left behind is then concentrated by means of evaporation and allowed to crystallize. Caffeine crystals are then separated from mother liquor by centrifuging. By centrifuge the small crystals of caffeine tends to agglomerate and thus caffeine is obtained. The caffeine thus obtained is dried further in a drier and pulverized to convert it into powder form before its packing. The global caffeine market is segmented based on type, application, and geography. Based on type, the market is categorized into synthesized caffeine and natural caffeine. Based on application, the market is segmented into food, beverage, pharmaceutical, flavor & fragrance, and others. The report analyzes the market trends in different regions such as North America, Europe, Asia-Pacific, and LAMEA. The global caffeine market is driven by the benefits associated with the intake of caffeine such as enhanced performance, improved concentration, and reduced risk of cancer, and cardiovascular disease. Increased awareness of health fitness has led surge in consumption of sports drinks, which have higher concentrations of caffeine, for use as a performance enhancer. However, government regulations to monitor the quantity of caffeine in food products and beverages could hamper the market growth. The caffeine market is segmented by product and by application. On the basis of product segment the caffeine market can be further divided into synthesis caffeine and natural caffeine. The natural caffeine is recently given much importance due to its presence in the coffee beans, tea and other such related products. Moreover, the synthesis caffeine contains raw materials like chloroacetic or cyanide acid. Furthermore, on the basis of applications the caffeine market can be segmented into food and beverages, pharmaceuticals, flavor and fragrance and others. Food and beverages is the highest growing sector in the caffeine market and is expected to grow during the forecast period. Application in pharmaceuticals and flavors considers a moderate growth and dignified research and development is taking place to boost the segment. Tags Caffeine from Tea Waste, Recycling of Tea Waste, Solid–Liquid Extraction of Caffeine from Tea Waste, Project Report on Caffeine from Tea Waste, Caffeine Extraction from Tea, Extraction of Caffeine from Tea Waste Pdf, Extraction of Caffeine from used Tea Leaves, How to Extract Caffeine from Tea, Tea Industry - Waste in Food Industry, Producing Caffeine from Tea, Tea Waste Management, Extraction: Isolation if Caffeine from Tea, Extraction of Caffeine from Different Verities of Tea, Extraction is used to Extract Caffeine from Tea, How to Extract Caffeine from Tea, Caffeine Extraction, Caffeine from Tea Waste Manufacturing Project Report, Tea Waste Composition, Caffeine Production, Tea Waste Utilization, Caffeine Production project ideas, Projects on Small Scale Industries, Small scale industries projects ideas, Caffeine Production Based Small Scale Industries Projects, Project profile on small scale industries, How to Start Caffeine Extraction Industry in India, Caffeine Extraction Projects, New project profile on Caffeine Extraction industries, Project Report on Caffeine Production Industry, Detailed Project Report on Extraction of Caffeine from Tea, Project Report on Extraction of Caffeine from Tea, Pre-Investment Feasibility Study on Caffeine Production, Techno-Economic feasibility study on Caffeine Production, Feasibility report on Caffeine Production, Free Project Profile on Caffeine Production, Project profile on Caffeine Production, Download free project profile on Caffeine Production, Startup Project for Caffeine Production, Project report for bank loan, Project report for bank finance, Project report format for bank loan in excel, Excel Format of Project Report and CMA Data, Project Report Bank Loan Excel, Extraction of Caffeine from Tea, Extraction of Caffeine from used Tea Leaves, Tea Waste Management, Tea Waste Utilization
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Rice Syrup Processing Plant

Rice Syrup Processing Plant. Production of Liquid Glucose from Broken Rice. Rice/Broken Rice Liquid Glucose Syrup Processing Plant Liquid Glucose is an aqueous solution of nutritive saccharide obtained by starch hydrolysis, by using Corn and Rice as raw material, which is purified and concentrated to required solids. It is usually odorless and clear yellow colored viscous liquid sweet syrup which is processed and stored under hygienic conditions. It has wide application and is particularly useful where high concentrations of invert sugars are required. It also has such advantages as anti-crystalline, a lower freezing point and high degree of sweetening power relative to sucrose. Liquid Glucose, Glucose syrup and Corn syrups are synonyms. Broken rice is the by-product of rice mill. It has various uses out of which one use is to prepare liquid glucose from broken rice. It can be processed from the F.C.I. Godown also. By using broken rice, starch can used as filler in the different variety of food products. About 90% of the liquid glucose produced in India is consumed by the confectionery industry. Its preparation of sugar candy. It standard confectionery being about 33%. It is used also in textile printing and in biscuit and tobacco canning. The rest of this is used in leather, textile pharmaceutical and other industries. The domestic demand for liquid glucose had been estimated as 4000 MT/annum of which 3000 tonnes are used in the confectionery plants and are therefore widely distributed in their crude from. They can be found in almost all fruits, vegetables and corns. Different countries are known to be using different agricultural sources for production of starch. Broken rice is damaged white rice, broken during processing. During the milling process grain fragments, the length of which does not exceed three quarters of the average length of the whole grain, are separated from the white rice, whose shape remains intact. This is classed as broken rice. Uses Liquid glucose or glucose syrup is a refined and concentrated non-crystallizable aqueous solution of D-glucose, maltose and other polymers of D-glucose, obtained by controlled hydrolysis of starch containing material. Glucose syrup is used in hard boiled sweets and many dairy products, as a granulating agent for tablet coating and as a vehicle for orally administered medical syrups in pharmaceuticals. Glucose syrup is used in the manufacture of canned foods, confectionery, bakery products, ice-creams, chewing tobacco, shoe polish and leather chemicals. It is used widely used in • Making Candies • Making Chocolates • Making Chewing Gums • Making Ice creams • In Canned Fruits • Fruit Juices and beverages • Making breads and puddings • Making cold drinks and beverages • Making Jams, Jellies and other dairy products • For flavoring and dressing tobacco for cigarettes • Used in shoe polish prevents caking and also results in a quicker and better shine • Used in Leather industry as it gives pliability and weight to the leather. Glucose is used in a wide range of applications including food & beverage, pharmaceutical, cosmetics and paper-making. Food & beverages was the largest market for glucose over the past few years and the trend is anticipated to continue over the forecast period on account of growing demand for bakery goods and confectioneries. Increasing demand of energy drinks which contains a significant amount of glucose on account of maintaining a healthy lifestyle also has been the reason for this rapid growth rate in the food & beverage sector. However, non-food uses of glucose including pharmaceutical, cosmetics and paper-making is likely to witness fastest growth over the next seven years owing to the expansion of these end-use industries. Global glucose market is expected to witness a rapid increase in demand due to the rise in consumption of glucose syrup over the forecast period. Glucose syrup accounts for a majority share in the global starch derivatives market owing to its wide range use in the manufacture of candy products and is poised to grow at a very intense rate by the end of 2020. Some other derivatives of glucose include maltodextrin, hydolysates and cyclodextrin. Glucose is primarily used along with sugar as it exhibits complimentary characteristics to natural sugar such as preventing sugar from crystallizing, reducing stickiness of sugar and retention of extra moisture. Glucose is extensively used as an additive in pharmaceuticals and nutrition foods owing to its high energy content. Over the past few years, there has been an increasing use of glucose in the form of tablets or medicine for patients having low blood sugar. Growth of the pharmaceutical industry is expected to augment demand for glucose over the forecast period. 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Business Ideas, Projects & Opportunities in Production of Solar Panel & Electronic Toys

Solar panel refers to a panel designed to absorb the sun's rays as a source of energy to generating electricity and heating. It reduces the amount of electricity coming from fossil fuels by supplying your operations with clean, renewable energy from the sun. Solar panels are also called photovoltaic or PV modules as it directly converts sunlight into electricity. The sun produces enough energy daily to supply 10,000 times the world’s electrical needs. Solar Photovoltaic panels are packaged, connected assembly of typically 6x10 solar cells that generates and supplies solar electricity in commercial and residential applications. Solar panels are not only used for residential rooftop applications, but they are also widely used for applications such as powering electronic devices, individual gadgets, and vehicle batteries. Installing solar panels on a house roof can decrease the household’s carbon footprint by an average of 35,180 pounds of carbon dioxide per year. There is increasing demand for solar panels in the residential rooftop applications. There is significant fall in the prices for key components such as silver and polysilicone that are used to make solar cells. Solar Panels don’t create noise and don’t make any emissions. Price drops for industrial commodities that are used to make solar panels, and higher price expectations for electricity and natural gas are the factors that are expected to drive growth of the solar panels market for the forecast period (2015-2025). Increase in electricity price combined with cheaper solar panels will drive the solar panels market. Global Solar Panel market is expected to witness positive growth within the forecast period on account of increasing government incentives for the adoption of renewable energy alternatives for power generation. A solar panel uses the solar energy to cleanly and efficiently produce electricity. For many years solar was considered as the main pillar of a future renewable energy based system. Demand for a solar panel is increasing prominently all over the world. By providing operations with renewable, clean energy from the sun solar panels reduces the amount of electricity generating from fossil fuels. The solar panel currently available in the market gives high efficiency and long-term warranties will increase the customer preferences towards renewable energy sources. Moreover, the technological innovations coupled with the commercialization of Solar Panel have also been aiding the growth of the Solar Panel market. Rising awareness about the benefits of Solar Panel and depletion of fossil fuels is expected to surge the demand for Solar Panel in the years to come. However, the high cost of installation and maintenance of solar panel is expected to be a major restraint for the global Solar Panel market. Technological advancements and favorable government policies to construct solar power stations are expected to provide growth opportunities for the key players in the market over the coming years. The Solar Panel market can be segmented into categories by product types such as monocrystalline, polycrystalline, and thin-film solar panels. Poly-crystalline solar panel dominated the global Solar Panel market in 2016 owing to the wide range of applications and high efficiency in affordable price range. Mono-crystalline solar panel segment is expected to register remarkable growth within the forecast period due to their ability technological advancement. Global Solar Panel market is expected to witness significant growth within the forecast period on account of increasing government incentives for the adoption of solar panels. Solar panels are photovoltaic that produce electricity with sunlight. Solar Panel continuously generates electricity as long as a source of light is supplied. Solar Panel does not burn fuel, helping to make the process quiet, pollution-free and around two to three times more efficient than combustion technologies. Indian Solar Power Industry is anticipated to have double digit growth during next few years, due to the government’s policy to increase the share of solar power in the country’s energy mix and falling equipment (PV Module) costs globally. Moreover, solar power tariff in India has witnessed a drastic fall over the last few years. With increasing focus of the government on development of renewable energy sector, solar power products market in India is on the verge of expansion. Target for solar power generation capacity in the country has been set at 100 GW by 2022 and this is anticipated to increase development of solar power products in India. Government provides incentives and subsidies for solar power products such as solar pumps and solar lanterns, thereby boosting their adoption across the country. Moreover, development of solar rooftop PV plants is being supported by various mechanisms such as Feed-In Tariff, Accelerated Depreciation Mechanism, Generation Based Incentives, etc., and this is anticipated to boost India solar rooftop PV market in the coming years. Rising development of solar power generation projects is expected to aid in addressing the growing demand for electricity and in turn boost growth in the solar power products market through 2022. The market for solar power products in India is forecast to grow at a CAGR of over 10% through 2022, on account of growing demand for power and increasing focus on reduction of greenhouse gases emissions from the power sector. Development of power transmission and distribution network is projected to increase adoption of grid connected rooftop solar plants in the country through 2022. In addition, implementation of Net Metering Policy across various states in the country is anticipated to boost grid connected solar rooftop plant developments, as it aids in exporting additional energy back to the grid. Nowadays, electronic toys are most popular toys item globally. In addition to that, it comes in a wide price range and features. Also, electronic toys are popular as smart toys. The demand for electronic toys is increasing. Basically, the reasons for the growth are rising personal income and continuous product innovation. The toys are categorized into many in India and the plastic toys have a market share of nearly 80% of the total toy industry in the country. Other types of toys available in the market are fabric toys, paper toys, and wooden toys, metal toys and DIY toys (containing arts and craft toys) that are manufactured mostly by the cottage industry. However, out of these the metal toys are considered to be sharp toys which are harmful for children and a hindrance in their safety that is why these toys are known to be slowly losing its popularity. Another popular category of toys seen today are educational toys and activity toys which help build the mind and body of the child, then there are soft toys, Electronic toys, battery operated toys and board games like chess and monopoly. There are different types of Electronic toys available in the market. Electronic toys with or remote, walkie talkie sets for kids, toy radios, musical toys, hand-held video games, video games used with T.V, Arcade entertainment products, educational toys etc. are popular among Indian children. This report is about a remote controlled car toy. There are a number of Remote controlled Toys in the market. These, include Cars, trucks, playing machines and other equipments. There are differences in the mechanical assembly of these types of toys but the basic Electronic principle is the same. These types of toys have four main units i.e., Transmitter, Receiver, Motor and Power Source. The transmitter sends radio wave which is received by the receiver which is fitted with an antenna. These signals are used to activate the motor. The power source is typically a rechargeable battery pack, but sometimes it's just normal batteries. Electronic toys, and traditional toys will support strong market growth out to 2022. Electronic toys will grow to hold 13.1% of the total toy market in 2022; and arts & crafts, construction toys, and board games will hold a total of 30.5% for the same period. Tags How are Solar Panels made? Solar Panel Manufacturing, How to Start a Solar Panel Manufacturing Company, Solar Panel Manufacturing & Production, Solar Panel Manufacturing Plant Cost, Solar Panel Manufacturing Process Pdf, Solar Panel Manufacturing Equipment, Solar Panel Manufacturing Process PPT, Solar Panel Manufacturing Process Project Report, Solar Panel Manufacturing in India, Solar Panels Manufacturing, Manufacturing of Solar Panels, Solar Product Manufacturing, Solar Panel Technology, How Solar Panels are Manufactured? Production of PV Panels, How to Start Kids Electronic Toys Factory, Electronics Toys Manufacturing Business, Electronic Toys & Games Manufacturing Industry, Electronic Toys Manufacture, Electronic Toys Manufacturing Plant, How to Start a Toy Manufacturing Business in India, Electronic Toys Production, How to Start Toys Business in India, Solar Panel Production, Solar Cell & Module Production, Solar Panel Manufacturing Unit, Solar Panel Energy Production, Solar Industry, Project Profile on Solar Items, How to Start Up a Solar Panel Manufacturing Industry? 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Gas Detectors of L.P.G.

A gas detector is a device that detects the presence of gases in an area, measures and indicates the concentration of certain gases in air via different technologies, often as part of a safety system. When facing unknown environmental hazards invisible to the body’s senses, a gas detector is the first line of defence for worker safety and the portable gas detectors are often part of personal protective equipment (PPE) mandated by businesses and designed to keep personnel safe. Rising demand for ensuring the workers’ safety across various industries such as oil and gas, mining, food processing, increasing need for monitoring combustible gases and chemical agents in oil & gas industry, and several governmental regulations and norms pertaining to precautionary measures for maintaining the health of workers and employees in manufacturing industries are bolstering the demand for gas detectors. Conversely, intense competition and low-profit margins may impede the market growth. Nevertheless, rising investments by companies in smart gas detectors by focusing on the development of innovative wireless technology, such as Bluetooth, Wi-Fi, Wi-MAX, ZigBee, and rapid integration of big data and artificial intelligence is stoking the demand for gas detection systems. The global gas detectors market was valued at USD 2175.9 million in 2017, and is expected to reach a value of USD 2731.6 million by 2023, at a CAGR of 3.73%, during the forecast period (2018 - 2023). The regions considered in the scope of it include North America, Europe, Asia Pacific, Latin America, and Middle East & Africa.
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Peppermint Oil

Peppermint oil is derived from extraction of oils from flowers and stem of peppermint herb. The steam distillation process is used for extraction of oil. Peppermint oil is used medicines due to its therapeutic benefits. The healthcare uses of peppermint oil include digestive system simulation and for soothing headaches, muscle pain, cold, sinus etc. They are used extensively in oral care products because of cooling effect and its ability to kill bacteria responsible for bad breath. Peppermint oils are also for flavoring in food and beverage industry. And they are also used as safe natural food additive. Peppermint oil is an aromatherapy ingredient, which helps in stimulation and relaxation of body. It acts as skin toner in cosmetic products. The rise in demand for aromatherapy treatments is expected to drive the growth of global peppermint oil market. The increasing consumer awareness regarding the use of safe natural and organic products is expected to boost the growth of global peppermint oil market. Increasing disposable income and awareness of personal care has resulted in demand for oral care and confectionery products in rural areas, which is a major driver for the growth of global peppermint oil market. The recent outbreak of Zika virus and diseases such as dengue and malaria has increased the demand for natural mosquito repellents and the use of peppermint oil in these repellents is expected to increase the demand. The fragrance ingredients and essential oils market recorded high growth rate, which is expected to increase the demand for peppermint oil.
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Processing of Milk and Milk Products

Processing of Milk and Milk Products. Production of Paneer, Butter and Ghee. Investment Opportunities in Dairy Sector Milk is a valuable nutritious food that has a short shelf-life and requires careful handling. Milk is highly perishable because it is an excellent medium for the growth of microorganisms – particularly bacterial pathogens – that can cause spoilage and diseases in consumers. Milk processing allows the preservation of milk for days, weeks or months and helps to reduce food-borne illness. The usable life of milk can be extended for several days through techniques such as cooling (which is the factor most likely to influence the quality of raw milk) or fermentation. Pasteurization is a heat treatment process that extends the usable life of milk and reduces the numbers of possible pathogenic microorganisms to levels at which they do not represent a significant health hazard. Milk can be processed further to convert it into high-value, concentrated and easily transportable dairy products with long shelf-lives, such as butter, cheese and ghee. The milk processing section in processing plants contains all operations of milk like collecting milk from farmers, storing milk in tanks then separating, pasteurizing and homogenizing for making good quality milk products. The processing market in India is expected to grow at a CAGR of 20.5% over FY 2015 to FY 2020. The milk processing industry has traditionally been integral to India’s rural economy, and there are various factors contributing towards its growth. Recently, a number of established FMCG players ventured into the dairy segments through new product launches. Milk Processing Industry in India 2017, several established milk processing companies are looking to further expand their business and are looking to raise funds through IPOs. This will further aid in the development of the country's milk processing industry. Increasing urbanization in the country is bringing more consumers in touch with various processed milk products. This, along with the rising income of Indians, has ensured that the market continues to experience strong growth. Increasing urbanization, rising incomes, and the proliferation of food and grocery retail outlets across tier 2 and tier 3 cities has led to an increasing accessibility and demand for processed milk products in India. However, the Indian milk processing industry is yet to achieve its full potential due to challenges such as gaps in the supply chain, insufficient cold storage and distribution facilities, and lack of quality feed. Despite the challenges, growth in the Indian milk processing industry looks promising. The industry is seeing a number of established FMCG players foray into the dairy segment with new product launches. India is the largest producer of milk and dairy products in the world. The country has experienced tremendous improvement in per capita availability of milk over the last five years. Organized dairy products market in the country is witnessing growth, on account of rising demand for functional dairy products, due to their low fat and cholesterol content. India is witnessing entry of large number of international players, offering a variety of non-conventional dairy products such as yogurts and probiotic drinks. However, unorganized sector, which comprises small farmers, accounts for a majority share in the country’s dairy products market. Domestic players are also increasing their focus on offering products for health conscious consumers and introducing packaging innovations to strengthen their market position. Ghee, which is widely used in Indian cooking, is the pure butter fat left over after the milk solids and water are removed from butter. It is very fragrant with a rich nutty taste and represents the second largest consumed dairy product in India, after liquid milk. The healthy growth of the market can be attributed to numerous forces. Population growth, rising disposable incomes, easy availability, and growing awareness about the benefits of ghee are some of the factors that are broadening the growth aspects of the market. Ghee is nutritionally rich class of clarified butter used as a cooking medium. It is known for its taste & pure health in the Indian subcontinent. It is commonly used in South Asian and Middle Eastern cuisines, traditional medicines, and religious rituals. It is prepared by gently heating butter, and retaining the clear liquid fat while discarding the solid residue that settled to the bottom. The taste, texture, and color of the ghee depend on the quality of butter, source of milk, and duration of boiling. In Ayurveda, ghee is considered as a vital medicine for healing wounds, improving digestion, reducing free radicals, and boosting immune system. It can be kept at room temperature for several weeks without refrigeration. The consumption of ghee has increased, as it is rich in fat soluble vitamins A, D, & E, helps in building strong bones, improves digestion, and reduces inflammation. The plethora of health benefits and high penetration in the emerging market are the key drivers of the market growth. Further, high disposable income and population boom are expected to present lucrative opportunities to market players. However, overconsumption of ghee could lead to cardiovascular diseases, which in turn is key factor affecting the market growth during the forecast period. Butter is a dairy product made by churning cream or milk. It can be used like a spread and as a regular ingredient in cooking. From a nutritional perspective, butter is a very good source of protein. It contains saturated fat made from the fresh cream and milk. The global butter market is expected to grow at a CAGR of 3.8% during the forecast period, 2018-2023. Butter is one of the vital ingredients of confectionary products. However, with the dropping prices of butter, the competition between substitute products has intensified. The demand for spreadable butter has been growing gradually in developing countries, as it is used in various food products. Paneer contains a host of nutrients like calcium, protein, phosphorus, zinc, vitamin A and vitamin B12. Calcium is one of the nutrients most likely to be lacking in the American diet. To reduce calories, you can grate or sprinkle harder Paneer over your dishes or use small amounts of aromatic and sharp Paneer for their delicious Paneer flavor. The major health benefits of Paneer include relief from hypertension and osteoporosis. It also helps in maintaining bone health, gaining weight and dental care. Paneer is also rich in vitamin-B, which is very good for children, women (particularly when pregnant or lactating) and elderly people, for the formation and strengthening of bones and cartilage. Paneer contains conjugated linoleic acid and sphingo lipids which help prevent cancer. The organised Paneer market, including its variants like processed Paneer, Paneer spreads, mozzarella, flavoured and spiced Paneer is valued at around Rs. 6 bn. The value of processed Paneer market at 55% of the overall market is estimated Rs. 3.5 bn. The next most popular variant is Paneer spread claiming a share of around 30% of the total processed Paneer market. Paneer is becoming a popular item in the menu of all relatively affluent families. The global dairy product market is expected to witness significant growth over the forecast period. Growing world population base, rise in per capita income, and increase in consumer awareness level regarding nutritional values of dairy products and, change in consumer dietary patterns are the key drivers regulating the market growth. In addition, technological advancements and innovations for obtaining more milk from dairy animals are also estimated to boost market growth. Demand for milk and milk products is increasing daily with increase in world population. High-end technology is required to meet these needs by increasing the milk processing capacity and maintaining the quality of the product. The dairy industry is highly localized owing to perishable nature of milk products. Dairy products are exported to the regions where climatic conditions, unmet demand supply ratio, unfavorable government measures and change in exchange rates play a major limiting role. Use of technologically advanced transportation measures for maintaining the efficiency and quality of milk products during long distance export are also anticipated to boost the market growth. The dairy food market in the India has witnessed a growth in recent years on account of rising demand for dairy food products fueled by expansion in milk production. The surge in growth is majorly originated from growth in Ice cream and Milk Powder as a segment of dairy food market. The growth in this segment has been largely led by the domestic factors such as innovative technology and rise in availability of variants. Global demand for milk and dairy products is becoming increasingly insatiable. In recent years, the wedge between demand and supply has continued to grow. Increasing real incomes coupled with rising willingness to spend, changing consumer dietary patterns, increasing consumer awareness regarding the nutritional values of dairy products and waning price responsiveness are the major factors influencing the market growth. Tags Milk Processing, Milk and Milk Products, Milk Processing & Dairy Products, Milk Processing Plant, Production Process of Dairy Products, Liquid Milk Processing Plant, Dairy Industry, Milk Processing PPT, Milk Processing Procedure, How to Start a Milk Processing Plant? Milk Processing Plant Project Report, Milk Processing Plant Pdf, Setting up Mini Milk Processing Plant, Milk Plant Project Report, How to Set up a Milk Processing Plant, How to Start a Dairy Milk Plant. Dairy Products in India, Milk Processing Unit, Small Milk Processing Plant, Milk for Manufacturing Purposes and Its Production and Processing, Paneer Production, Paneer Manufacture, How is Paneer Prepared? Paneer Making Process in Factory, Paneer Manufacturing Business, How to Start Paneer Manufacturing Business? Preparation of Paneer, Manufacture of Paneer, Paneer Manufacturing Project Report, Paneer Production Cost, Small-Scale Paneer Manufacturing Business, Project Profile on Dairy Products, Commercial Paneer Production, Milk Paneer Manufacturing Project Report, Buttermaking Process, How Butter is Made? Butter Manufacture, Butter Production, Butter Production Flow Chart, Butter Manufacturing Process PPT, Butter Manufacturing Process Flow Chart, Butter Production Process Pdf, Butter Processing Plant, Production of Butter and Dairy Based Products, Butter Production Process, Industrial Production of Butter, Production of Butter, Preparation of Ghee, Ghee Production Plant in India, Ghee Manufacturing Unit, Ghee Production Plant, Manufacture of Ghee, Ghee Processing, How to Start a Ghee Manufacturing Unit, Business Opportunity: Ghee Manufacturing, Ghee Manufacturing Process Pdf, Project Report on Ghee Manufacturing Industry, Detailed Project Report on Ghee Manufacturing, Project Report on Butter Manufacturing, Pre-Investment Feasibility Study on Paneer Production, Techno-Economic feasibility study on Butter Manufacturing, Feasibility report on Milk Processing, Free Project Profile on Milk Processing, Project profile on Paneer Production, Startup Project for Ghee Manufacturing, Project report for bank loan, Project report for bank finance, Project report format for bank loan in excel, Excel Format of Project Report and CMA Data, Project Report Bank Loan Excel, Clarified Butter
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Textile Dyeing Auxiliaries

Dyeing auxiliaries are fine chemical products in the textile printing and dyeing industry applications. Dyeing agent is an important type of textile printing and dyeing auxiliaries, generally according to the classification of dyes, to name different types of dyeing agents. Dyeing auxiliaries is mainly included auxiliary for cotton, auxiliaries for polyester, auxiliaries for wool and nylon, auxiliaries for acrylic etc. To be specific, dyeing agents include leveling agent, fixing agent, dispersing agent, fluorescent whitening agent and softener. Textile dyeing auxiliaries are essential to enhance the value-added and upgrading of textiles, they can also make the textile more contemporary, functional, and high-grade. To some extend, dyeing auxiliaries quality affects directly the fabric quality. Dyeing auxiliaries mean a chemical or formulated chemical product which enables a processing operation in preparation, dyeing, printing or finishing to be carried out more effectively, or which is essential if a given effect is to be obtained. Main functions of dyeing auxiliaries to prepare the substrate for coloration, to stabilize the application medium, to increase the fastness properties of dyeing, to modify the substrates etc. In this article I will give a list of dyeing auxiliaries and explain some important auxiliaries function in dyeing. The global textile chemicals market is moderately consolidated. Companies consistently develop new strategies to expand their capacity and product portfolios through joint ventures and research & development. Demand for textile chemicals is primarily related to the production of textiles and apparels. It also related to the demand for textiles and apparels as end products. Textile manufacturers are shifting their manufacturing facilities from developed countries such as the U.S., Japan, and those in Europe to developing economies such as China and those in Southeast Asia. Abundant availability of raw materials and low-cost manpower in Asia Pacific are some of the major factors responsible for the shift in focus toward developing regions. The growth rate of apparel consumption is expected to be higher in an emerging or developing country than that in a developed country due to the increase in disposable income of the people in developing countries. This is anticipated to drive the textile chemicals market in the next few years. The global textile chemicals market can be segmented based on product type and applications. Based on product type, the textile chemicals market can be divided into coating & sizing chemicals, colorants & auxiliaries, finishing agents, surfactants, desizing agents, bleaching agents, bleaching agents, yarn lubricants, and others. The coating & sixing chemicals segment can be further classified into wetting agents, defoamers, and other coating & sizing chemicals. The coating & sizing chemicals segment constituted a dominant share of the textile chemicals market, followed by colorants & auxiliaries segment, in terms of volume and revenue, in 2017. In terms of application, the textile chemicals market can be segmented into home furnishing textiles, technical textiles, apparel, and industrial textiles. Home furnishing textiles can be sub-segmented into carpets & rugs, furniture, and other home furnishing textiles. Technical textiles can be further categorized into agrotech, geotech, meditech, and other technical textiles. Textile chemicals were primarily used for home furnishing in 2017. The trend is anticipated to continue during the forecast period.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Chromic Acid

The term chromic acid is usually used for a mixture made by adding concentrated sulfuric acid to a dichromate, which may contain a variety of compounds, including solid chromium trioxide. This kind of chromic acid may be used as a cleaning mixture for glass. Chromic acid may also refer to the molecular species, H2CrO4 of which the trioxide is the anhydride. Chromic acid features chromium in an oxidation state of +6 (or VI). It is a strong and corrosive oxidising agent. Chromic acid is a strong acid that can be prepared in a few steps. There are more steps involved in the proper disposal of chromic acid. In this lesson, we will discuss how to prepare a solution of chromic acid, how to safely dispose of it and hazards associated with it. Chromic acid is an intermediate in chromium plating, and is also used in ceramic glazes, and colored glass. Because a solution of chromic acid in sulfuric acid (also known as a sulfochromic mixture or chromosulfuric acid) is a powerful oxidizing agent, it can be used to clean laboratory glassware, particularly of otherwise insoluble organic residues. This application has declined due to environmental concerns. Furthermore, the acid leaves trace amounts of paramagnetic chromic ions — Cr(III) — that can interfere with certain applications, such as NMR spectroscopy. This is especially the case for NMR tubes. The global Chromic Acid market is valued at USD XX million in 2018 and is projected to reach USD XX million by the end of 2022, growing at a CAGR of XX% during the period 2018 to 2022.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Screen Printing

Screen printing is a printing technique whereby a mesh is used to transfer ink onto a substrate, except in areas made impermeable to the ink by a blocking stencil. A blade or squeegee is moved across the screen to fill the open mesh apertures with ink, and a reverse stroke then causes the screen to touch the substrate momentarily along a line of contact. This causes the ink to wet the substrate and be pulled out of the mesh apertures as the screen springs back after the blade has passed. Screen printing is also a stencil method of print making in which a design is imposed on a screen of polyester or other fine mesh, with blank areas coated with an impermeable substance. Ink is forced into the mesh openings by the fill blade or squeegee and by wetting the substrate, transferred onto the printing surface during the squeegee stroke. As the screen rebounds away from the substrate the ink remains on the substrate. Screen T-shirt printing machines are being increasingly used to print T-shirts, having same design, in bulk to meet rising demand from large companies, NGOs, and communities etc. in Asia Pacific. As a result, spending on screen T-shirt printing machines is projected to increase by vendors, particularly focusing on providing low-cost customized T-shirts to their customers. The t-shirt printing machines is highly fragmented with large number of local players in each regional market. Some major players in the global custom t-shirt printing market are Brother International Corporation, Seiko Epson Corporation, ColDesi, Inc, Kornit Digital, The M&R Companies, Mimaki Global, Anajet, Konica Minolta, Inc., Mutoh Belgium nv, Mciroscreen Production Pte. Ltd, KP Tech Machine Pvt Ltd and several others.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Information
  • One Lac / Lakh / Lakhs is equivalent to one hundred thousand (100,000)
  • One Crore is equivalent to ten million (10,000,000)
  • T.C.I is Total Capital Investment
  • We can modify the project capacity and project cost as per your requirement.
  • We can also prepare project report on any subject as per your requirement.
  • Caution: The project's cost, capacity and return are subject to change without any notice. Future projects may have different values of project cost, capacity or return.

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