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

Minerals: Project Opportunities in Odisha (Orissa)

 

PROFILE:

Indian mineral resources are sufficiently rich and varied to provide the country with a strong industrial base. India is gifted with important mineral resources. The country produces about 89 minerals out of which 52 are non-metallic, 4 are fuel minerals, 11 are metallic, and 22 are minor minerals. The Mining industry in India is a major economic activity which contributes significantly to the economy of India. The GDP contribution of the mining industry varies from 2.2% to 2/5% only but going by the GDP of the total industrial sector it contributes around 10% to 11%. Even mining done on small scale contributes 6% to the entire cost of mineral production. Indian Mining Industry provides job opportunities to around 700,000 individuals.

RESOURCES:

With its vast resources of minerals Orissa offers excellent opportunities for mineral and mineral-based industries. The State has vast and diverse mineral deposits amounting to almost 16.92% of the total reserves of the country. Orissa offers investment opportunities for the following mineral-based industries: - sponge iron unit, induction furnace, coal washery, aluminium fluoride, powder metallurgy, aluminium downstream. The rich reserves of minerals in Orissa have led to the establishment of several mineral based industries in the State. Orissa is endowed with rich mineral resources like iron-ore, bauxite, coal, manganese-ore, chromite etc. According to All India Mineral Resources Estimates the mineral deposits of Orissa in respect of chromite, nickel, cobalt, bauxite, iron-ore are about 98.4%, 95.1%, 77.5%, 52.7% and 33.4% respectively of the total deposits of India. Other important mineral resources of the state are limestone, china clay, quartz, precious and semi-precious stones, copper, vanadium etc. The main exported minerals of the state are chromite, coal, dolomite, iron-ore, manganese and bauxite.

GOVERNMENT POLICIES:

The salient features of the National Mineral Policy, 2008 (NMP) generally applicable to the States are as follows:-

·         Minerals being a valuable resource, extraction have to be optimised through scientific methods, beneficiation and economic utilization. Zero waste mining will be the goal.

·         The regulatory environment will be made more conducive to investment. Transparency in allocations of concession will be assured with security of tenure to a concessionaire.

·         The duration of all concessions shall be rationalised.

·         Data filing requirements will be rigorously monitored and concessionaires will be closely monitored in this regard.

·         A framework of sustainable development will be designed to ensure that mining can take place along with restoration.

·         Mining shall not be undertaken in ecologically fragile or biologically rich areas. Mining in forest areas will be accompanied by time-bound reclamation.

·         Mining sectoral value addition through beneficiation, calibration, blending, sizing, concentration, pelletisation, purification and customization will be encouraged.

·         Mining infrastructure requires a special thrust. Infrastructure needs will be financed through innovative structures including user charges, PPP mode and viability gap funding.

·         An enabling environment will be created to motivate large capacity mining companies to undertake creation of transportation network.

·         In the public funding of infrastructure, greater thrust will be given to development of health, education, drinking water, road and other related facilities for integrated regional development.

·         State agencies involved in mineral sector development and regulation will be encouraged to modernize in the areas of prospecting as well as regulation.

·         The State Directorates will be suitably strengthened to enable them to regulate mining in the interests of conservation and scientific development of the sector.

 

Agro & Food Processing: Project Opportunities in Odisha (Orissa)

 

PROFILE:

India is the world's second largest producer of food next to China, and has the potential of being the biggest with the food and agricultural sector. The Indian food processing industry stands at $135 billion and is estimated to grow with a CAGR of 10 per cent to reach $200 billion by 2015. The food processing industry in India is witnessing rapid growth. In addition to the demand side, there are changes happening on the supply side with the growth in organised retail, increasing FDI in food processing and introduction of new products. India's food processing sector covers 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:

The State has vast potential for agro and food processing industries. This sector has therefore been identified as a prominent thrust area. Agriculture occupies a vital place in Orissa's economy with nearly 65 per cent of the total work force directly or indirectly engaged it. The State attaches top most priority to the growth of agro based and food processing industries. The Government has framed an agricultural policy with the aim of increasing investment in agriculture; bringing about a shift from subsistence to commercial agriculture and thus providing a status of industry to agriculture. There are several investment opportunities in the sector, which include :- provision of infrastructure like cold storage, storage godown, lift irrigation, marketing, etc ; (ii) setting up of agro-based industries for value addition to agricultural produce; (iii) seed production and quality planting material; (iv) agro-service centres; (v) production of organic tea, coffee, ginger, turmeric, cashew, aromatic rice; (vi) export of horticultural produces; (vii) fisheries and fish processing; etc. Priority has been accorded to agriculture extension through application of high-end crop production technologies as well as adoption of integrated nutrient management and pest management practices.

 

GOVERNMENT POLICIES:

The promotion of Agro-based industries is among the priorities of the State Government. Government would consider privatization of Government agricultural farms to act as nuclei for production of high quality seeds for hi-tech, agriculture and dissemination of advanced technology to farmers. Private efforts for development of agriculture, horticulture, plantation crops etc. will generally through contract farming. However, provisions of the Land Reforms Act would be suitably amended to exclude private commercial plantations from the provisions of Land Reforms. Greenhouse horticulture/floriculture would be promoted in private sector. Hi-tech, agritech firms would be also supported in selected areas. Sericulture will get high priority and private sector would be permitted to be involved in this activity. Tissue-Culture and techniques of advanced bio-technology will be promoted in a big way. Special efforts would be made to extensively develop cotton and sugarcane. Separate agencies will be created in the Agriculture A comprehensive programme for development of inland fish culture through advanced techniques of high yielding fish production will be launched. Brackish water and fresh water prawn culture has vast potential in the State. While promoting this sector, care will be taken to regulate this activity to prevent encroachments/pollution/disease spread. Modern hatcheries and feed plants would be promoted and supported. To give the required support to agro and food processing industries, a new corporate body will be set up to promote this sector through equity participation, load and other financial support and escort services. A comprehensive programme for development of Poultry sector will also be launched. Efforts will be made for long term arrangements to meet the raw material requirements of existing forest-based industries. Measures to promote commercial plantations in areas like rubber, coffee and tea will also be adopted.

 

 

Automobile Industry: Project Opportunities in Odisha (Orissa)

 

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 seventh largest in the world, with an annual production of more than 3.7 million units. Automobile Exports registered a growth of 22.30 percent during the current financial year. Automotive industry is the key driver of any growing economy. It plays a pivotal role in country's rapid economic and industrial development. It caters to the requirement of equipment for basic industries like steel, non-ferrous metals, fertilisers, refineries, petrochemicals, shipping, textiles, plastics, glass, rubber, capital equipments, logistics, paper, cement, sugar, etc. It facilitates the improvement in various infrastructure facilities like power, rail and road transport. Due to its deep forward and backward linkages with almost every segment of the economy, the industry has a strong and positive multiplier effect and thus propels progress of a nation. The automotive industry comprises of the automobile and the auto component sectors.

 

RESOURCES:

The State would make every endeavour to attract entrepreneurs specially established industrial houses to the State for setting up Automobile, Automobile components and Auto Ancillary industries of suitable locations. Orissa holds huge investment potential in the automobile sector including the auto component sector. This is because of the inherent advantages of the State in terms of raw material, cost and manpower. The resources available in the State to support automobile manufacturing units include:- Good quality pig iron/steel ingot and aluminium ingot; steel flat products like plates and sheets; steel rounds; several state-of-the-art automobile tyre manufacturing units; adequate supply of power in the State for the power intensive industrial activities; several institutions which are a constant source of educated and skilled human resource; etc. Investment Opportunities in the sector exist in passenger car segment, two wheeler segment and heavy truck segment. The Government is making all efforts to attract investors into the State, through various incentives and schemes.

 

GOVERNMENT POLICIES:

The Orissa state government is considering implementing a dedicated policy to encourage and boost investment in the sector of automotive components manufacturing. The state sees huge potential in the sector owing to the surge of investment and growth in the automobile industry and expects to cash in on it through the policy. According to a state official, the state plans to come up with a policy that will incentivize investment from auto parts manufacturing companies with the aim of creating an auto parts manufacturing hub in the state. In order to do so, the incentives offered in other states will be studied and the draft of the policy will be prepared accordingly after consultations with various prospective investors and stakeholders.

Biotechnology Industry: Project Opportunities in Odisha (Orissa)

 

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.

 

RESOURCES:

Given the rich bio-resources base, the State offers several opportunities for investment in the sector. This is particularly so, in the areas of tissue culture, herbal products, biofertilizers and biopesticides, as well as aqua-culture. The Government of Orissa has been encouraging investors through provision of infrastructural facilities and other necessary support. The State is advantageously positioned to harness biotechnology applications owing to its rich mineral and bio-resources.  The Chilika lake, Asia’s largest brackish water lake, houses a unique ecosystem comprising aquatic and terrestrial vegetation, migratory and resident birds, fishery resources and terrestrial wild life. It has a long coastline covering 480 km.  The State has a rich floristic wealth with an estimated 2754 plant species. Out of the estimated 1200 orchid species in India, 129 rare species are reported to occur exclusively in Orissa. Forests cover about 30% of the geographical area of the State.

GOVERNMENT POLICIES:

Recognizing the potential, the Government of Orissa has identified biotechnology as a priority area. The biotech policy aims at integrating the existing achievements in research and industry and strengthening and expanding the existing base to maximize the benefits for development of the state through the following:

1. Prioritising the thrust areas for basic and applied research and technology development

2. Promoting innovation in R&D by providing financial and infrastructural support and by encouraging public-private partnership for R&D.

3. Promoting development of the industry by providing quality infrastructure and an enabling environment for sustained growth and international competitiveness.

4. Development of human resources in various areas of biotechnology.

5. Employment generation

6. Capacity building of IPR and biosafety.

7. Providing financial support, and incentives to industry.

 

 

Handicrafts and Handlooms: Project Opportunities in Odisha (Orissa)

PROFILE:

Indian handloom has been the pride of India’s tradition and a representative of its cultural brilliance. In fact, handloom sector has been gaining significance since the ancient times, when it was discovered. The basic meaning of Indian handloom is creating designs by keeping traditions intact. And that’s the reason; this sector has always been in demand. In earlier times, the weavers, embroiders and printers used to do wonders with their skills manually. But, the development in this sector has given birth to various machines that are meant to simplify the tasks. India has a rich history of handicrafts that has evolved over the centuries. The entire wealth of timeless Indian handicrafts has survived through ages. The legacy of Indian culture promises everything- beauty, dignity, form and style. The magnetic appeal of Indian culture resides in its exclusivity, its mystical tone that leaves people amazed at their sight.

RESOURCES:

Handlooms and Handicrafts of Orissa are known the world over. The industry is being assisted by the Government in various ways. It is being provided raw material, marketing and quality up gradation facilities as well as the required financial support. The sector is a source of large scale employment in the State, particularly in the rural areas. All efforts would be made to provide assistance for marketing, quality upgradation, etc. Strong incentives and support would be provided to Khadi and Village Industries sector to provide large scale employment in rural areas. As with many other handicrafts of Orissa, the roots of the applique art/craft form is interwined with the rituals and traditions of Lord Jagannath, the presiding deity of the Puri temple. Horn articles of Orissa are mystical and are blended with a superb fashion design. Their lively appearance, dynamism and animation vie with the real objects of nature - that spells the names of Parlakhemundi and Cuttack. Available in widest spectrum of items like combs, pen stands, cigar pipes, decorative figures - horn articles form a memorable memento for the near and dear ones at home. The traditional crafts like wood and stone carvings, tie and dye weaving textiles, folk and patta paintings, applique, filigree and jewellery work had flourished side by side with royal patronage and ritualistic needs of the temples in the state.

 

GOVERNMENT POLICIES:

For handlooms and handicrafts, the two key organisations under the ministry of textiles are the Office of the Development Commissioner for Handlooms and the Office of the Development Commissioner for Handicrafts. Over the years, AIACA has engaged with the two offices in various capacities over issues such as access to raw material, access to markets and access to credit. More recently, AIACA has been engaging on the issue of protection, preservation and promotion of handloom and handicraft goods through the Geographical Indications status. Due to effective Government intervention through financial assistance and implementation of various developmental and welfare schemes, this sector has been able to withstand the competition from the power loom and mill sectors.

 

 

Tourism: Project Opportunities in Odisha (Orissa)

 

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. Tourism has become an important industry in many countries of the world, both in the east and the west. Various initiatives are being taken by the Government and other organizations to promote tourism here. Tourism is one of the fastest growing industries in the world. The number of tourists worldwide has been registering phenomenal growth and it is expected that this number would shortly touch 1.5 billion. Tourism contributes about 11% of the world work force and 10.2% of the global gross domestic products. The dynamic growth of this industry is evident from the fact that a new job is added to this sector every 2.5 second.

RESOURCES:

Orissa offers excellent opportunities in the tourism sector. The Government has recognised the importance of tourism promotion in economic growth and has accordingly, undertaken several measures. These include:-A new logo to re-position and rebrand Orissa as a vibrant tourist destination Tourism fairs and festivals such as 'Sreekhetra Utsav' at Puri, 'Ekamra Utsav' at Bhubaneswar, 'Konark Festival' at Konark, showcasing tourism and cultural potential of the State Participation in travel-trade shows like 'Buddhist festival' , 'Leisure Moscow', 'WTM', 'PATA convention', 'IATO' , 'TTF', etc. The State has several places for tourists attraction, in the form of ancient monuments; beaches; religious places; hot springs; forest and wildlife; etc. The beaches include Gopalpur, Puri, Chandipur, Chandrabhaga, Aryapalli, Astaranga, Balaramgadi, Balighai, Baliharachandi, Beleswar, Paradeep, etc. Atri, Deulajhari, Taptapani and Tarabalo are the hot springs. Major waterfalls in the State are Barehipani, Joranda, Badaghagra, Sanaghagra, Khandadhar, Duduma, Harishankar, Miriglotah, Nrusimhanath, Phurli Jharan and Pradhanpat. Orissa was the first State to declare Hotels as an Industry. In addition to Hotels, other tourism related activities and wayside amenities would be entitled to various incentives as industries under the Industrial Policy. A separate policy on tourism would be formulated and announced shortly.

GOVERNMENT POLICIES:

A tourism policy has also been formulated by the Government for encouraging private investors. Investment opportunities in the sector, existing across a wide spectrum of areas, include:-

·         Accommodation facilities in the form of hotels, motels, spas and resorts, camps and jungle lodges;

·         Transportation services in the form of air, road and rail network, tourist vehicles and taxicabs;

·         Entertainment and leisure centres in the form of amusement Parks, theme Parks, multiplexes; water sports complexes; golf courses, bowling alleys and other sports related facilities;

 

Waste Management: Project Opportunities in Odisha (Orissa)

PROFILE:

Waste utilization, recycling and reuse plays a major role in limiting resource consumption and the environmental impact of waste. Recycling is an integral part of any waste management system as it represents a key utilization alternative to reuse and energy recovery (Waste-to-Energy). Which option is ultimately chosen depends on the quality, purity and the market situation. 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:

The most common way of treating solid waste in Orissa is land filling. Awareness on Solid Waste management among the people and various Institutions, Government Organisations and non-government Organisations are working on it. In Puri Municipality there exists a mechanized Bio-compost plant for treatment of garbage of 100 TPD capacities. Solid waste from industrial activities is one of the major environmental concerns. About 25 million tons of solid waste is being generated from industrial sectors in the state. It includes fly ash & bottom ash from thermal power plants, chemical slags from Iron 7 Steel plants and red mud from Aluminium industries. Some of the wastes are designated as hazardous because of their composition and hazard potential. About 80000 MT/annum of hazardous waste is being generated in Orissa. In the mining sectors, the major solid waste is the overburden waste.

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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Glucose Saline

Glucose, also known as dextrose, is a simple sugar that can be found in nature and are chemically identical. Dextrose may decrease body protein and nitrogen losses, promote glycogen deposition, and decrease or prevent ketosis if sufficient doses are given. Since dextrose is usually metabolized to carbon dioxide and water, administration of a solution of dextrose and water is equivalent to providing the same volume of free water. Dextrose is readily metabolized; it increases blood glucose concentrations and provides calories. Dextrose may decrease body protein and nitrogen losses, promote glycogen deposition, and decrease or prevent ketosis if sufficient doses are given. Since dextrose is usually metabolized to carbon dioxide and water, administration of a solution of dextrose and water is equivalent to providing the same volume of free water. Following oral administration, dextrose, a monosaccharide, is rapidly absorbed from the small intestine principally by an active mechanism. It used for balancing the body fluid and it is added to the human body to balance the body fluid by injection which will recover fatality of the human being and recover the inside body pressure. Treatment of discarded water and electrolyte metabolism, especially in severe cases. Therapy of acid base in balances. The volume substitution and volume replacement in surgery of accident victim suffering blood lose. Arenteral nutrition for severally ill and post-operative patients. Saline is also often used for nasal washes to relieve some of the symptoms of the common cold. The solution exerts a softening and loosening influence on the mucus to make it easier to wash out and clear the nasal passages for both babies and adults. In this case "home-made" saline may be used: this is made by dissolving approximately half a teaspoon of table salt into 8 ounces (approx. 240ml) of clean tap water. The global intravenous solutions market reached a value of US$ 8.5 Billion in 2019. IV solutions and electrolytes are mainly used for fluid resuscitation, routine maintenance, replacement, and redistribution. The Market size value in 2020 is USD 86.2 million and Revenue forecast in 2025 is USD 121.7 million is expected to exhibit a CAGR of 7.1% from 2018 to 2025. As a whole any entrepreneur can venture in this project without risk and earn profit. Few Indian major players • Amanta Healthcare Ltd. • Baxter Pharmaceuticals India Pvt. Ltd. • Bayer Pharmaceuticals Pvt. Ltd. • Denis Chem Lab Ltd. • Meridian Enterprises Pvt. Ltd. • Pfizer Healthcare India Pvt. Ltd. • Pfizer Ltd. • Pharmacia Healthcare Ltd. • Shree Krishna Keshav Laboratories Ltd. • Vikrant Pharmaceuticals Ltd.
Plant capacity: 200000 Bottles/ dayPlant & machinery: Rs. 2170 Lakhs
Working capital: -T.C.I: Cost of Project: Rs. 4083 Lakhs
Return: 25.00%Break even: 37.00%
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Vitamin ‘C’ from Sorbitol

Vitamin c is chemically the simplest of the vitamins and for this reason was among the first to be isolated, characterized, and purified and to have its structure determined. More vitamin C is produced industrially than any other vitamin, or indeed all the other vitamins put together. Vitamin C has itself been said to have almost magical properties and it is useful to get a picture of the chemistry and biochemistry of this enigmatic compound. This has unearthed a rich vein of chemistry involving L-ascorbic acid as both a redox companion and as a complexion agent; indeed the reaction of L-ascorbic acid with oxygen and other oxidizing agents is catalyzed by transition metal ions, especially copper (II), so that sometimes solution are stabilized by the addition of EDTA, which complexes the metal ions and arrests the catalysis. It is one of the few pure chemical compounds which is taken routinely by human beings in gram quantities (a possible challenger is sugar). It appears to have no harmful effects even in these large amounts and it is a medicine which it is a pleasure to take, especially in the form of fruit or vegetables. Its role (as a constituent of fruits and vegetables) in the cure and prevention of scurvy was widely debated for hundreds of years. Ascorbic acid is generally used in bread due to its properties that help extend shelf life, high profile industrial bakers such as Hovis and Kings mill both use ascorbic acid in the majority of their loaves. Using ascorbic acid in an industrial bakery can contribute to higher profit yields, lower production times and higher buyer satisfaction longer shelf life, reduced number of damaged loaves during transport. The global Ascorbic Acid market is expected to witness moderate growth over the forecast period on account of increasing demand from pharmaceutical industry. The majority of ascorbic acid manufactured is used as an antioxidant. The major end-user industries of ascorbic acid are pharmaceuticals, food & beverages, personal care, and others. The pharmaceutical industry is the largest consumer of ascorbic acid. Vitamin C helps to recycle vitamin E. The presence of a broad distribution network of companies in this region will boost the Asia Pacific vitamin ingredients market in the near future. Analysts predict this regional market to rise at a CAGR of 5.40% from 2017 to 2025 in terms of value. Entrepreneurs who invest in this project will be successful. Few Indian major players • Dishman Pharmaceuticals & Chemicals Ltd. • Glaxosmithkline Pharmaceuticals Ltd. • Gulshan Polyols Ltd. • Kasyap Sweetners Ltd. • M S Healthcare Pvt. Ltd. • Pfizer Healthcare India Pvt. Ltd. • Pfizer Ltd. • Procter & Gamble Health Ltd. • Unicorn Organics Ltd.
Plant capacity: 600 kg/dayPlant & machinery: Rs. 371 Lakhs
Working capital: -T.C.I: Cost of Project: Rs. 717 Lakhs
Return: 24.00%Break even: 50.00%
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Lithium Ion (LiFePO4) Cell Manufacturing

The Lithium Iron Phosphate Battery (LiFePO4 battery) or LFP Battery (lithium ferrophosphate), is a type of lithium-ion battery using LiFePO4 as the cathode material (on a battery this is the positive side), and a graphitic carbon electrode with a metallic backing as the anode. Cylindrical lithium cells are used for high specific energy density and good mechanical stability. Li-ion batteries have a higher energy density when compared to other rechargeable batteries. Li-ion batteries are composed of four main components namely cathode, anode, electrolyte, and separator. Lithium-ion battery generates electricity because of continuous reactions of lithium Li-ion Batteries have high power capacity without being too bulky. Lithium ion batteries are thus used in electronic equipment like mobile phones and laptops, which need to operate longer between charges while consuming more power and need batteries with a much higher energy density. Memory effect refers to as the process of losing maximum energy capacity of rechargeable batteries due to repeated recharges after being only partially discharged. They are used in telecommunication equipment, instruments, portable radios and TVs, pagers. They are used to operate laptop computers and mobile phones and aerospace application. Also used in electric vehicles, cell phones, camcorders, lap-top and palmtop computers, portable electronic devices, etc. The li-ion batteries are used in cameras, calculators; they are used in cardiac pacemakers and other implantable device. They are used in telecommunication equipment, instruments, portable radios and TVs, pagers. The lithium iron phosphate batteries market, by application, is segmented on the basis of the end-users it caters. The portable segment was the largest market in 2018 owing to its increased demand from the automotive sector, which is the major demand-generating industry for lithium iron phosphate batteries. The market for lithium-ion battery in India is expected to grow at a CAGR of 34. 8% during the forecast period of 2019 – 2024. In addition to it, the lithium-ion battery has comfortable rechargeable property, lightweight, long-lasting; thus, it perfectly contributes to the electric vehicle market to grow in the forecast period. Thus, due to demand it is best to invest in this project. Few Indian major players • BYD Company Ltd. • A123 Systems LLC, • K2 Energy • Electric Vehicle Power System Technology Co., Ltd. • Bharat Power Solutions
Plant capacity: 25000 nos/dayPlant & machinery: Rs. 3618 Lakhs
Working capital: -T.C.I: Cost of Project: Rs. 4626 Lakhs
Return: 25.00%Break even: 39.00%
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Single Wall Steel Water Bottle

Water bottles are available in different shapes, colors, and sizes. The stainless steel bottle comes with a string to provide ease of carrying. Stainless steel fridge bottle is made from high-quality steel, food-grade and BPA-free stainless steel material that make the bottles safe for use on a regular basis. The taste and nutritive value of the drinks remains intact making the bottle very appropriate choice for storing beverages. Water bottles can be either disposable or reusable. Single-walled metal bottles readily transfer temperature of contents to external surfaces, which make them unsuitable for use with unusually hot or cold liquids. Double-walled metal bottles are insulated to keep cold liquids cold and hot liquids hot, without the external surface being too hot or too cold. Because double-walled bottles have more metal in them, they are more expensive. They are typically vacuum-insulated. Metal water bottles are growing in popularity. Made primarily from stainless steel or aluminium (aluminium), they are durable; retain less odor and taste from previous contents than most plastic bottles. Double-walled metal bottles are insulated to keep cold liquids cold and hot liquids hot, without the external surface being too hot or too cold. Because double-walled bottles have more metal in them. Single wall stainless steel water bottles prevent condensation and don’t allow sweat to happen. The outside of the bottle remains normal, even having cold water inside. The bottles have a single layer of steel that helps you keep drink hot or cold for long hours. Be it a chilled winter morning or a warm day at work, you can always have a refreshing sip of drink from these bottles. Steel bottles are environment-friendly and can be used for multiple years and do not end up in landfills owing to their 100% recyclability. Stainless steel water bottles can be used more than hundreds of times. You just need to clean them after one use, and they will be ready for the next use. Investing once in steel bottles, you don’t have to even think about reinvesting in them for like multiple years. The market is expected to reach INR ~403.06 Bn by the end of 2023, from its current value of INR ~160 Bn, expanding at a compound annual growth rate (CAGR) of ~20.75% from 2018. Based on volume, the market is likely to reach ~35.53 Bn liters by 2023, expanding at a CAGR of ~18.25% from 2018 to 2023. Entrepreneurs who invest in this project will be successful. Few Indian major players • Borosil Ltd. • Cello International Pvt. Ltd. • Hamilton Housewares Pvt. Ltd. • M-Pol Industries Bangalore Pvt. Ltd. • Nirlon Ltd.
Plant capacity: 2,000 nos/ dayPlant & machinery: Rs. 138 Lakhs
Working capital: -T.C.I: Cost of Project: Rs. 439 Lakhs
Return: 29.00%Break even: 64.00%
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Magnesium Powder from Dolomite Stone

Magnesium (Mg) is a silvery white metal that is similar in appearance to aluminium but weighs one-third less. Magnesium is strongly reactive with oxygen at high temperatures; above 645°C (1,190°F) in dry air, it burns with a bright white light and intense heat. For this reason, magnesium powders are used in pyrotechnics. At room temperature, a stable film of water-insoluble magnesium hydroxide forms on the metal’s surface, protecting it from corrosion in most atmospheres. The highly reactive metal is used in the manufacture of reagents, which are essential in modern metal processing. But Magnesium allows for so much more. As an example: The bonding of powder molecules by atomic diffusion process in the shaping production of components by pressure or sintering, will result in components superior to other metals with regard to their characteristics. In particular their weight is a clear benefit. magnesium powder is widely used in such scientific areas as military and aviation industries, The chemical performance of magnesium is very active, which is mostly used in metallurgical industry. Magnesium powder can serve as desulfurizer or cleaning agent for steel-making industry and casting of non-ferrous metals, and reducer for production of rare metal. In chemical industry, magnesium powder can be used as dehydrator for organic compound or to directly make organic compound of magnesium. Magnesium allows the bonding of powder molecules by atomic diffusion process in the shaping production of components by pressure or sintering, will result in components superior to other metals with regard to their characteristics. In particular their weight is a clear benefit. Magnesium powder can serve as desulfurizer or cleaning agent for steel-making industry and casting of non-ferrous metals, and reducer for production of rare metal. Magnesium powder is an essential nutrient for plant growth; it enhances food quality. Magnesium (Mg) plays a vital role in chlorophyll formation and photosynthesis. It influences various metallic processes and reactions such as photophosphorylation (i.e., ATP formation in chloroplasts), photosynthetic carbon dioxide (CO2) fixation, protein synthesis, partitioning and utilization of photo-assimilates, generation of reactive oxygen species, and photooxidation in leaf tissues. The market in Asia-Pacific dominated the global market with a share of over 40% in 2018 and is projected to register the highest CAGR of over 6.5% during the forecast period. The Global Magnesium Powder Market is projected to register a healthy CAGR of 5.50% to reach USD 1,334.6 Million by the end of 2024. Thus, due to demand it is best to invest in this project.
Plant capacity: 166.7 MT/dayPlant & machinery: Rs. 4160 Lakhs
Working capital: -T.C.I: Cost of Project: Rs. 13904 Lakhs
Return: 26.00%Break even: 72.00%
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Trichloroisocyanuric Acid

Trichloroisocyanuric acid is an organic compound with the formula (C3Cl3N3O3). It is used as an industrial disinfectant, bleaching agent and a reagent in organic synthesis. Trichloroisocyanuric acid (TCCA) is a versatile and efficient reagent for chlorination and oxidation reactions. Depending on the reaction conditions employed, it can release either an electrophile chlorine atom (Cl+) or a radical chlorine atom (Cl.) promoting selectively different pathways of reaction. It was effectively used to synthesize many classes of compounds such as: chlorinated arenes, N?chloramines and amides, ??halo?carbonyl compounds, benzyl chlorides, esters, carboxylic anhydrides, and amides. It is widely used in civil sanitation for pools and spas, preventing and curing diseases in animal husbandry and fisheries, fruit and vegetable preservation, wastewater treatment, as an algaecide for recycled water in industry and air conditioning, in anti shrink treatment for woolens, for treating seeds and in organic chemical synthesis. It is used in chemical synthesis as an easy to store and transport chlorine gas source, it is not subject to hazardous gas shipping restrictions, and its reaction with hydrochloric acid produces relatively pure chlorine. Trichloroisocyanuric acid as used in swimming pools is easier to handle than chlorine gas. It dissolves slowly in water, but as it reacts, cyanuric acid concentrations in the pool will build-up. It is used in chemical synthesis as an easy to store and transport chlorine gas source, it is not subject to hazardous gas shipping restrictions, and its reaction with hydrochloric acid produces relatively pure chlorine. Intensifying demand for safe and treated water across the Asia Pacific region for constraining diseases that is innate from polluted water. Such factor is expected to significantly driving the trichloroisocyanuric acid market growth during the forecast period. Moreover, the positive impact of various regulations and standards regarding safe water infrastructure and system across North America and European region are also projected to lay a strong base for trichloroisocyanuric acid market growth in the upcoming years. The Middle East and Africa and Latin America are projected to witness robust growth in the global trichloroisocyanuric acid market during the forecast period. As a whole any entrepreneur can venture in this project without risk and earn profit. Few Indian major players • Aditya Birla Chemicals • Kashyap Industries
Plant capacity: Trichoroisocyanuric Acid: 16.7 MT/day Hydrochloric Acid 32% by product: 24.5 MT/dayPlant & machinery: Rs.178 Lakhs
Working capital: -T.C.I: Cost of Project: Rs.1095 Lakhs
Return: 31.00%Break even: 73.00%
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Linear Alkyl Benzene Sulfonic Acid (LABSA) Business Plan for Production

Introduction (LABSA) Linear alkyl benzene sulfonic acidic is used to make anionic, non-anionic, and amphoteric surfactants, and its degradability in nature is crucial. It's a water-soluble emulsifying agent. Because of its low cost, high performance, and biocompatibility due to its linear chain, alkyl benzene sulfonic acid is one of the most commonly used anionic surfactants. Hydrophilic and hydrophobic groups coexist in this anionic surfactant. The sulfonation process produces these non-volatile compounds. These compounds are made up of phenyl and sulfonate groups in carbon chains ranging from 10 to 14 carbons long. Related Projects: - Production of Linear Alkyl Benzene Sulphonic Acid Linear Alkyl Benzene Sulphonic Acid’s Specific Uses Linear alkyl benzene sulfonic acid is primarily used in the manufacture of household detergents such as laundry powders, liquids, and other cleaners, as well as in a variety of industrial applications such as coupling agents and emulsifiers for agricultural herbicides and emulsion polymerization. In the first phases of the sewage-treatment process, a significant portion of the LAS is eliminated from the aqueous phase of the wastewater due to adsorption on the sludge or sedimentation in the presence of calcium or magnesium. When reacting with calcium, the LAS homologs with the longest alkyl chain have a higher propensity to adsorb on solids and become less dissolved. Related Books: - The Complete Technology Book on Chemical Industries Production of Linear Alkyl Benzene Sulphonic Acid The sulphonation reaction of Alkyl Benzene with Sulphur trioxide produces LABSA (Linear Alkyl Benzene Sulphonic Acid) (SO). Other processes can call for the use of oleum or sulfuric acid. The final decision will be influenced by a number of factors, including raw material availability, plant location, plant size, and plant operation mode, to name a few. Nonetheless, when major factors such as cost, availability, versatility, and protection are taken into account, SO remains the reaction's preferred reagent. LABSA is one of the most popular active ingredients in soaps and detergents. It also makes up a higher percentage of the raw materials used in the manufacture of liquid soaps. Chemithon and Ballestra are two of the major producers. Both companies use the same steps to create LABSA. However, the technology differs slightly, particularly at the sulphonation level, where Chemithon uses a Falling Film Reactor or Jet Reactor and Ballestra uses a Stirred Tank Reactor/Cascade Reactor or Multitube Falling Film Reactor. Market Outlook The market for linear alkyl benzene sulfonic acid can be divided into three categories: type, purity, and application. The market can be divided into two types: alpha-olefin sulfonate (AOS) and alkyl sulphate (AS). The market can be divided into linear alkyl benzene sulfonic acid (90 percent) and linear alkyl benzene sulfonic acid (90 percent) based on purity (96 percent). The global market can be divided into two categories based on application: soap and detergent and personal care. One of the active ingredients used in the soap and detergent industry is linear alkyl benzene sulfonic acid. It has outstanding foaming and consistency characteristics. North America, Asia Pacific, Europe, Latin America, and the Middle East and Africa are the regions in which the global linear alkyl benzene sulfonic acid market can be divided. The demand for linear alkyl benzene sulfonic acid is dominated by Asia Pacific, followed by Europe. Rise in population in Asia Pacific developing economies, improvement in people's lifestyles, and increased focus on investment. Related videos: - Chemicals (Organic, Inorganic, Industrial) Rise in population in developing economies of Asia Pacific, improvement in lifestyle of the people, and increase in emphasis on improving hygiene standards in the food & beverages industry are propelling the demand for linear alkyl benzene sulfonic acid in Asia Pacific. Germany, the United Kingdom, and France are Europe's top consumers of linear alkyl benzene sulfonic acid, owing to their large customer bases. The largest consumers of linear alkyl benzene sulfonic acid in Europe are Germany, the United Kingdom, and France, owing to their large customer bases and rising demand for dishwashing cleaners and liquids. The linear alkyl benzene sulfonic acid market in the region is also benefiting from an increase in demand for industrial cleaners to maintain industrial hygiene. In North America, the United States is the largest producer of linear alkyl benzene sulfonic acid. The global Linear Alkyl Benzene Sulphonic Acid market is projected to expand at a CAGR of 3.5 percent from 2021 to 2026, from 3606.9 million USD in 2021 to 4601.4 million USD by the end of 2026. Key Players: - • Nirma Ltd. • Reliance Industries Ltd. • Tamilnadu Petroproducts Ltd. For More Details, Click Here: - Handbook on Chemical Industries #DetailedProjectReport #businessconsultant #BusinessPlan #feasibilityReport #NPCS #entrepreneurindia #startupbusiness #ProjectReport #startup #projectconsultancy #businessopportunity #IndustryDemands #profitablebusiness #ManufacturingBusiness #LinearAlkylBenzeneSulfonate #LinearAlkylBenzeneSulfonateMarket #LASProduction #LABSProduction #LASBusiness #ChemicalBusiness #ChemicalIndustry #ChemicalProduction
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Production of Lithium Ion (LiFePO4) Cell batteries for electric vehicles

In today's portable electronics, two types of batteries are used: lithium-ion and lithium iron phosphate. Although they have some similarities, the high energy density, long life cycles, and protection of both are significant differences. The majority of people are familiar with lithium-ion batteries since they own a smartphone, tablet, or computer. Lithium iron phosphate is a newer type of battery that is gaining popularity in the manufacturing industry due to its low cost materials and high temperature stability. Related books:- Automobile Industry, Automotive Components & Allied Products Engine Parts, Piston, Pin, Piston Ring, Valve, Control Cable, Engine Mounting, Auto Lock, Disc Brake, Drum, Gear, Leaf Spring, Shock Absorber, Silencer, Chain, Cylinder Block, Chassis, Battery Advantages of Lithium Ion (LiFePO4) Cell batteries High energy density paves the way for even greater capacities. When fresh, there is no need to prime it for a long time. All that is required is a single daily fee. Self-discharge is less than half that of nickel-based batteries, suggesting that they have a poor self-discharge. Low Maintenance: There is no need for a periodic discharge, and there is no memory. Specialty cells can provide a large amount of current to applications like power tools. Lithium Ion (LiFePO4) Cell manufacturing process Cathode, anode, electrolyte, and separator are the four primary components of Li-ion batteries. The continuous reactions of lithium in a lithium-ion battery produce electricity. Cathode A Li-ion battery's power and voltage are determined by its cathode. Since lithium is unstable in its element form, the cathode of a Li-ion battery is lithium oxide. The frame of the cathode is held together by a thin aluminium foil, which is coated with a paste made up of active material, conductive additive, and a binder. Related project: - Lithium Ion Battery Anode The anode is also coated with an active material that allows for the reversible absorption or emission of lithium ions released from the cathode while also allowing for the flow of electric current through the external circuit. Lithium ions are contained in the anode rather than the cathode when the battery is charged. Lithium ions migrate back to the cathode via the electrolyte as the conducting wire binds the cathode to the anode in the discharge state, and electrons are isolated from lithium ions and travel along the wire, producing electricity. Electrolyte The electrolyte in a Li-Ion Battery allows the transfer of lithium ions between the cathode and the anode, as well as the movement of electrons through the wire. To allow the movement of lithium ions, an electrolyte is usually made up of chemicals with high ionic conductivity. Separator The cathode and anode determine the battery's basic efficiency, while the electrolyte and separator determine the battery's safety. By holding the cathode and anode separate, the separator serves as a physical barrier. It also prevents electrons from flowing directly through the internal microscopic hole, allowing only lithium ions to pass through. Synthetic resins such as polyethylene (PE) and polypropylene (PP) are widely used in commercialized separators (PP). Market outlook The demand for lithium iron phosphate batteries in North America, Europe, Asia-Pacific, Latin America, and the Middle East and Africa. North America is divided into three parts: the United States, Canada, and Mexico. Germany, the United Kingdom, Italy, France, and the rest of Europe make up Europe. China, India, Japan, and the Rest of Asia-Pacific make up Asia-Pacific. Because of its proven automotive sector and rising consumer electronics demand, Asia-Pacific dominated the global market. From 2020 to 2027, the global lithium iron phosphate battery market is projected to expand at a compound annual growth rate (CAGR) of 15.2 percent. Related videos: - Renewable Energy Sector, Green Power, Solar Energy, Biofuel, Hydroelectric, Wind, Non-conventional Energy, New and Renewable Energy Govt policies On November 11, 2020, the government approved the production-linked incentive (PLI) scheme in advance chemistry cell (ACC) battery manufacturing, as well as 10 other industries. The battery strategy of the scheme aims to make producers more internationally competitive, increase exports, achieve economies of scale, and develop cutting-edge goods. This is part of an attempt to encourage the use of electric vehicles (EVs), which have been hindered in India by high battery costs and a lack of supporting infrastructure. Battery imports account for more than half of the cost of an electric vehicle in India. The government has suggested that local manufacturing facilities be built in order to minimize costs and promote competition. The government has made it clear that it wants to drive India toward clean energy and transportation, as evidenced by the ambitious target of 450 GW of renewable energy production by 2020. Apart from promoting EVs, there has been a notable drive for renewable energy to be available around the clock, which includes energy storage like ACC batteries. Market Research; - Market Research Report The proposed battery policy is output-based rather than input-based, which is one of the scheme's key features. The subsidy is based on the amount of production generated and the amount of value added by private businesses. Only private companies would be eligible for a government subsidy if they reach a 60 percent value addition within five years of the project's start date, which is when full-scale development is planned. Any new technology that emerges in the next ten years will be eligible for a subsidy as well. Next, the government has set aside 570 billion (US$7.7 billion) for the car industry over the next five years as part of the programme. In reality, ACC manufacturing industries have been allocated 180 billion (US$2.4 billion) in advance. The government would pay the producer a fixed subsidy (as determined by the private entity's bid) for a period of ten years, subject to discounting over time. Economies of scale and lower production prices will be factored into the discounting. Key Players:- • BYD Company Ltd. • A123 Systems LLC, • K2 Energy • Electric Vehicle Power System Technology Co., Ltd. • Bharat Power Solutions • OptimumNano Energy Co., Ltd. • LiFeBATT, Inc. Related Projects: - Renewable Energy, Non-conventional Energy, Solar Energy, Biofuel, Biomass Projects Tags:- #LithiumIonBattery #LithiumIonBatteryProduction #LithiumIonBatteryIndustry #LithiumIonBatteryManufacturing #ElectricVehicles #ElectricVehiclesIndustry #ElectricVehiclesProduction #ElectricalIndustry #ElectricIndustry #RenewablePower #DetailedProjectReport #businessconsultant #BusinessPlan #feasibilityReport #NPCS #entrepreneurindia #startupbusiness #ProjectReport #startup #projectconsultancy #businessopportunity #IndustryDemands #profitablebusiness #ManufacturingBusiness
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Set Up an Industry for the Manufacture of Intravenous (IV) Catheters

Set Up an Industry for the Manufacture of Intravenous (IV) Catheters Introduction An IV Cannula, also known as an IV Catheter, is a Bevel-type needle that is used to make insertion smoother and less painful. This Catheter tube is flexible, kink-resistant, and double tapered with a rounded tip for a smooth introduction and minimal patient discomfort. Intravenous (IV) cannulation is a venous access operation that involves inserting a cannula into a vein. Blood should be drawn and fluids, medications, parenteral care, chemotherapy, and blood products can be delivered into a vein. Related projects:- Business Plan for Set up Manufacturing Unit of Intravenous (IV) Cannulas Uses of (IV) cannula An intravenous cannula is a flexible tube that can be placed into a patient's veins to deliver drugs and IV fluids, as well as take blood samples. Intravenous cannula sizes are color coded according to their intended use. The most popular cannula sizes are 14 to 24 gauges. Which cannula sizes should be used depends on the intent, the patient's condition, and the urgency with which intravenous fluid must be administered. The smaller the gauge, the greater the cannula's diameter, and the quicker the fluid flow. Rapid is one of their most popular applications. • replacement of fluid • Transfusion of blood • Major surgery and trauma . GOVT. Schemes for Promotion of Medical Devices Manufacturing Medical devices have been listed as a priority sector for the flagship 'Make in India' initiative, and the Indian government is committed to strengthening the manufacturing ecosystem. India is Asia's fourth-largest market for medical devices. The Indian market is currently heavily reliant on imports, but exports have recently increased. Related book:- Handbook on Medical and Surgical Disposable Products (Blood Bags, Plastic Gloves, I.V. Cannula, Infusion Set, Gowns, Masks, Catheter, Cotton and Bandage, Surgical Wear, Syringes) India's vision of being a global manufacturing center for medical devices is being boosted by the “Atma Nirbhar” Bharat mission. The Development Linked Incentive Scheme (PLI) and the Promotion of Medical Device Parks Scheme, for example, are recent initiatives that illustrate this. These schemes have been thoughtfully designed to encourage large-scale manufacturing and to provide the infrastructure necessary for the development of manufacturing clusters in India. The PLI Scheme for Medical Devices Manufacturing proposes a financial opportunity to improve domestic manufacturing and attract substantial investment in medical device segments such as cancer care devices, radiology and imaging devices, anesthetics devices, implants, and so on. The production process during the scheme's length, linked rewards worth up to INR 3,420 corer will be awarded. Surgical dressings and disposable perfusion sets are classified as Class A products by the central drug authority. If needles, urinary catheters, and other medical devices are classified as class B, bone cement, dialysis machines, and other medical devices are classified as class C due to the moderate-high risk they pose. Class D products, such as stents and heart valves, are high-risk. The low-risk, high-volume category has the most enforcement issues. Related videos:- Disposable Products The demand for consumables and patient aids is estimated to be worth $5.2 billion, or roughly 30% of the total. Large players dominate the hi-tech diagnostic imaging market, which would be the least affected. The government has set strict deadlines for the rule's enforcement for various items. The notice from the Ministry of Health includes all products, including instruments, apparatus, appliances, implants, materials, and other objects — whether used alone or in combination, including software or an accessory — that the manufacturer intends to be used specifically for humans or animals. The announcement comes at a time when the domestic medical device industry was anticipating a separate law to govern medical devices, rather than the existing regulation that classifies such devices as "drugs" and requires regulatory approval under the Drugs and Cosmetics Act. Market Outlook The market has been divided into three categories based on the material used in the construction of cannulas: • Metal • Plastic • Silicone In the cannula market, silicone material is expected to be the fastest growing segment. The non-irritant quality of the material is a major factor moving the silicone cannula market forward. Furthermore, since this form of cannula is more flexible and delicate, it is more convenient and manageable for both the health care professional and the patient to use. The cannula market is divided into four segments based on geography: North America, Europe, Asia Pacific, and the Rest of the World. The cannula market is divided into four segments based on geography: North America, Europe, Asia Pacific, and the Rest of the World. Market Research; - Market Research Report Boston Scientific Corporation, Teleflex Incorporated, Conmed Corporation, Sorin Group, Edward Life science Corporation, Medtronic plc. Terumo Corporation, Smith & Nephew plc. Smiths Medical, and Marquette Holding B.V. & Co. are among the major industry players in the cannula market. KG. The global peripheral intravenous (IV) catheter market is projected to hit USD 6.73 billion by 2025, up from USD 4.03 billion in 2017. The market is expected to expand at a CAGR of 6.1 percent from 2018 to 2025. KEY PLAYERS:- Angi Plast Pvt. Ltd. Global Medikit Ltd. Hemant Surgical Inds. Ltd. Hindustan Syringes & Medical Devices Ltd. Mediplus (India) Ltd. Smiths Medical India Pvt. Ltd. #DetailedProjectReport #businessconsultant #BusinessPlan #feasibilityReport #NPCS #entrepreneurindia #startupbusiness #ProjectReport #startup #projectconsultancy #businessopportunity #IVCannulas #CannulasMarket #CannulasIndustry #IntravenousCannulation #Medical #MAnufacturingBusiness #ProductionBusiness #DisposableProducts #DisposableBusiness #SurgicalProducts #SurgicalIndustry #SurgicalManufacturing #SurgicalBusiness #SurgicalIndustry #SurgicalMarket #DisposableMarket #DisposableIndustry
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Fiberglass Fabric Weaving Unit (For Composites)

Introduction For thermal insulation, an innovative design of fiberglass textile products was developed. The design is the result of extensive research into the construction of plain woven fiberglass textile and the factors that influence it. The selection of glass fibers, the manufacturing mechanism, and the level of insulation control were all highlighted. The new structure of thermal insulation fabrics was achieved using plain weave fabrics, tapes, and meshes methods. The work was expanded to include testing, characterization, and assessment of the various fiberglass textiles obtained in order to explain their performance and confirm the feasibility of the design conceived for the manufacture of these thermal insulation textiles in a variety of industrial applications, including welding, shipyards, refineries, power plants, and chemical plants, among others. Related books:- Plastics And Polymers, Polyester Fibers, Pet & Preform, Medical, Expanded Plastics, Polyurethane, Polyamide, Polyester Fibers, Additives, Colourants And Fillers, Extrusion, Moulding, Mould Designs, Optical Glass, Reinforced, Films, HDPE, Thermoset Uses of Fiberglass Fabric Glass fiber is made by extruding very thin strands of silica-based monofilament into fiberglass material. Glass is an amorphous solid, which means it lacks a crystalline structure in its solid state and instead behaves like a very viscous liquid. Because the thin fibers can easily bend, glass fiber lends itself to woven fabric. Glass fiber fabric has a high tensile strength, dimensional stability, heat and fire resistance, and resistance to a wide range of chemical compounds. Fiberglass fabric can also be used to dissipate heat and has electrical properties that make it suitable for use in electronic components. Related Projects:- TEXTILE BLEACHING, DYEING, SPINNING, WEAVING, PRINTING, FINISHING AND TEXTILE AUXILIARIES PROJECTS Manufacturing Process of Fiberglass Fabric Weaving To form a cloth structure, the weaving machine, or loom, interlaces the warp and filling yarns according to a weave pattern. The warp refers to the yarn system that runs the length of the cloth. On a loom beam, it is delivered to the weaving machine. Ends are a term used to describe warp yarns. Weft or filling refers to the yarns that cross the warp. They are inserted in the cloth by a weft feeder on the new loom generation, allowing for frequent unwinding. Glass product can be woven in almost any weaving pattern. Plain, basket, twill and their derivatives, unidirectional, and leno weaving are the most common patterns used to make meshes. There Are Five Basic Processes That Make Up The Weaving Process: Mechanism 1: The warp is distributed to the loom by the let-off motion. Mechanism 2: The warp yarn is moved up and down according to the weaving pattern by a warp shedding mechanism. Mechanism 3: a filling insertion system places the filling between the openings of the warp yarns (also known as sheds), which is done by the shedding mechanism. Modern picking systems are primarily used to fill glass products: • Air jet • Rapier • Projectiles • Needle (loom for narrow fabrics) Mechanism 4: the filling between the warp yarns is beaten against the cloth in formation by a reed moved by the beat-up motion. Mechanism 5: the filling density is controlled by a fabric take-up, and the fabric is wound onto a tube on the loom or by a separate winding device. Related Videos:- Plastic Products Market Outlook Building and construction, automotive and transportation, wind energy, aerospace and Defence, chemical, and other end-use industries have increased their demand for fiberglass fabric. Because of their comprehensive set of characteristics, such as high tensile strength, dimensional stability, high heat resistance, fire resistance, excellent thermal conductivity, good chemical resistance, and more, fiberglass fabrics are in high demand in a variety of industries. Furthermore, because of its lightweight, electrical, and durable properties, fiberglass fabrics are widely used in electrical and electronics applications, which is expected to boost the fiberglass fabric market during the forecast period. In terms of value, the global fiberglass fabric market is expected to reach USD 13.48 billion by 2022, growing at a CAGR of 7.62 percent between 2017 and 2022. Market Research; - Market Research Report Key Players • Everlast Composites Pvt. Ltd. • Goa Glass Fibre Ltd. • Jushi India Pvt. Ltd. • Magnus Composites Synergies Pvt. Ltd. • U P Twiga Fiberglass Ltd. • SAERTEX GmbH & Co.KG • Saint-Gobain Performance Plastics Corporation • Tah Tong Textile Co., Ltd. • Taiwan Electric Insulator Co., Ltd. • Valutex Reinforcements Inc. #DetailedProjectReport #businessconsultant #BusinessPlan #feasibilityReport #NPCS #entrepreneurindia #startupbusiness #ProjectReport #startup #projectconsultancy #businessopportunity #FiberglassFabric #FiberglassFabricManufacturing #FiberglassFabricProduction #FiberglassFabricMarket #FabricWeaving #Weaving #WeavingIndustry #WeavingFiber #WeavingProduction #FiberManufacturing #FiberProduction #FiberIndustry #FiberMarket #FiberPlant #ManufacturingBusiness #ProductionBusiness
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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