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

Steel industry: Project Opportunities in Karnataka

 

PROFILE:

Steel Industry is a booming industry in the whole world. The increasing demand for it was mainly generated by the development projects that have been going on along the world, especially the infrastructural works and real estate projects that has been on the boom around the developing countries. India’s economic growth is contingent upon the growth of the Indian steel industry. Consumption of steel is taken to be an indicator of economic development. While steel continues to have a stronghold in traditional sectors such as construction, housing and ground transportation, special steels are increasingly used in engineering industries such as power generation, petrochemicals and fertilisers. India occupies a central position on the global steel map, with the establishment of new state-of-the-art steel mills, acquisition of global scale capacities by players, continuous modernisation and up gradation of older plants, improving energy efficiency and backward integration into global raw material sources.

RESOURCES:

Karnataka is the 3rd largest producer of steel in India with a current production level of 10.70 Million Tons per annum. Both alloy and non-alloy steel are produced and the product range includes basic steels like pig iron and sponge iron, ingot, blooms, billets, slabs, finished products like long products CTD & TMT (bars & rods), wire rod, sections, bright bars, CR/HR coils. The export of steel from Karnataka is around 0.96 Million Tons.

It is one among 6 major steel producing states. Karnataka is the 2nd largest in the country in terms of iron ore reserves and largest exporter of iron ore in the country. Hence, it can share more than 40% of the steel demand in India which is estimated as 124 million tons by 2011-12 and 50% of the exports of finished steel products. Based on this estimate, Karnataka can host a manufacturing steel base for more than 100 million tons capacity per annum.

GOVERNMENT POLICIES:

Under the new industrial policy, iron and steel has been made one of the high priority industries. Price and distribution controls have been removed  as well as foreign direct investment up to 100% (under automatic route) has been permitted.  The Trade Policy has also been liberalized and import and export of iron and steel is freely allowed with no quantitative restrictions on import of iron and steel items. Tariffs on various items of iron and steel have drastically come down since 1991-92 levels and the government is committed to bring them down to the international levels.  With the abolishing of price regulation of iron and steel in 92, the steel prices are market determined. The policy devises a multi-pronged strategy to achieve these targets with following focus areas; removal of supply constraints especially availability  of critical inputs like iron ore; improve cost competitiveness by expanding and strengthening the infrastructure in roads, railways, ports and power; increase exports; meet the additional capital requirements by mobilizing financial resources; promote investments by removing  procedural delays. In addition the policy also addresses challenges arising out of environmental concerns, human resource requirements, R&D, volatile steel prices and the secondary sector. 

 

Food processing: Project Opportunities in Karnataka

 

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:

Karnataka is poised to become the leading food processing hub in India. Clearly, the food processing industry is on the threshold of demand-led growth in the country and within the state of Karnataka. It says Karnataka boasts of specific supply strengths, giving the state a comparative advantage to become a leading food processing hub of the country. With 10 agro-climatic zones and land topography highly suitable for agriculture, Karnataka is one of the most agriculturally diverse states in India. It is estimated that about 83 per cent of the geographic area of the state is suitable for agriculture, of which 64.60 per cent is under agricultural cultivation. Consequently, Karnataka is the largest producer of ragi, sunflower, tomato, coffee and arecanut and the second largest producer of maize, safflower, grapes, pomegranate and onion. The state is also the largest producer of spices, aromatic and medicinal plants in the country. In addition, the state has a wealth of livestock and marine resources that augur well for processing of dairy, meat, fish and shrimp. Karnataka, the report points out, also takes pride in having a strong and expanding infrastructure base for setting up food processing facilities in the state.

GOVERNMENT POLICIES:

The promotion of Agro-based industries is among the priorities of the State Government. The state has assured supply of fruits & vegetables grown by applying scientific techniques, investment in post harvest and good transport infrastructure. The National Horticulture Mission (NHM) in the Jharkhand State was launched in late 2005-06 initially in 10 districts with main focus on production of planting materials, vegetable seed production, establishment of new gardens, creation of water resources etc. Establishment of new gardens include perennial and non perennial fruits, spices, floriculture, aromatic and medicinal plants. This scheme was 100 % sponsored by Central Govt. during 2005-06 and 2006-07 (Xth Five Year Plan). However, during 2007-08 and onwards (XIth Five Year Plan) this scheme has been implemented in 15 districts with the pattern of assistance as 85:15 by Central Govt. and State Govt. respectively. The Jharkhand government has decided to set up a food park to kick off the development of the food processing sector in the state and attract investors. In general very few small scale food processing industries are present in the state.

Textile: Project Opportunities in Karnataka

 

PROFILE:

The textile industry is primarily concerned with the production of yarn, and cloth and the subsequent design or manufacture of clothing and their distribution. The raw material may be natural or synthetic using products of the chemical industry. India Textile Industry is one of the leading textile industries in the world. Though was predominantly unorganized industry even a few years back, but the scenario started changing after the economic liberalization of Indian economy in 1991. The opening up of economy gave the much-needed thrust to the Indian textile industry, which has now successfully become one of the largest in the world

RESOURCES:

In Karnataka, the Textile Industry occupies a unique position in the economy of the state in terms of its contribution to industrial production, employment and exports. The textile sector contributes 0.50% of the GDP of the State. Karnataka under its Textile Policy of 2008-13 has planned to get investment worth Rs 9000 crore. Forty percent of such investments are planned to be directed towards the garment industry. The Karnataka government will establish fashion hubs and assist in market development and brand building. Specific incentives are also provided, like entry tax reimbursement, stamp duty reimbursement, up to 25% waiver on land acquisition charges, subsidy on power and capacity building support.

 

 

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, 1995Government 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.

 

Biotechnology: Project Opportunities in Karnataka

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:

Karnataka has successfully attracted the BioTech industry. Bengaluru, Karnataka is the capital for Biotech clusters in the country. Bangalore currently houses 92 of India's 180 biotech companies, with total actual investments of over Rs 1,000 crore, of which Rs 140 crore has been venture capital funding. The companies are encouraged to invest thanks to the presence of large R&D institutions like Indian Institute of Science and the National Centre for Biological Resources. However, it is sure to face a lot of competition from media savvy Hyderabad. Bangalore Helix is a biotech cluster being planned by the Karnataka government. Bangalore Helix would support biotech units with common infrastructure. It would comprise eight biotech incubators, covering a total area of 10,000 square feet. Excluding the cost of land (around Rs 60 crore) that has already been acquired, the cluster will involve an investment of Rs 100 crore. The infrastructure support would be comprehensive, right from advance computing facilities to treated water necessary for biotech infrastructure services.

GOVERNMENT POLICIES:

·         The Karnataka government has announced a biotech policy to promote this sector and is setting up an institute for bioinformatics in Banglore.

• In addition the state government is also creating a biotechnology fund that will have inflows from the biotech companies. This could be used for incubation of new projects and promotion of the sector in the state.

• Karnataka government is putting in Rs. 50 million and an equal amount is being brought by ICICI to develop the institute if bioinformatics in Banglore. Karnataka has planned to launch India's first state sponsored biotechnology venture capital fund to boost their initiatives.

·         Three 'biotech parks' are emerging in the state , namely 'university of Agricultural Sciences, Banglore; 'Institute of Agri-biotech in Dharwad ; and Institute of Biotechnology in Karwar.

 

 

 

Automobile: Project Opportunities in Karnataka

 

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 in 2010. 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:

Auto industry is the second fastest growing sector in Karnataka, the automobile and auto component sector has maintained a 15 per cent growth in Karnataka. There is a huge potential of development in the sector of automobiles in Karnataka. The component industry caters to the OEMs (all kinds of automobiles like trucks, cars, SUVs, LCVs, buses, two-wheelers, tractors etc.,) and exports. Termed a priority sector, auto and auto parts hold the key to economic growth of the state.

GOVERNMENT POLICIES:

Government brought out a very innovative Policy "Ultra Mega Policy for Integrated Automobile Projects" that offers a very attractive package of support to automobile projects investing more than Rs.4000 Crores. As a result of this Policy, since May 2006, investments attracted by Tamil Nadu is automobiles & components manufacturing is Rs.21900 Crores, almost 5 times of the Investments attracted during previous 15 years (May 1991-April 2006). The total employment potential in these new projects is: 1.20 lakhs (direct + Indirect). Govt of India is currently implementing a project "National Automotive Testing R&D Infrastructure Project" (NATRIP) in Oragdam near Chennai at a project cost of about Rs.450 Crores. This project aims at facilitating introduction of world-class automotive safety, emission and performance standards in India as also ensure seamless integration of our automotive industry with the global industry.

 

 

Mineral: Project Opportunities in Karnataka

 

PROFILE:

Minerals are valuable natural resources being finite and non-renewable. They constitute the vital raw materials for many basic industries and are a major resource for development. Management of mineral resources has, therefore, to be closely integrated with the overall strategy of development; and exploitation of minerals is to be guided by long-term national goals and perspectives. Ministry of Mines is responsible for survey and exploration of all minerals, other than natural gases, petroleum and atomic minerals, for mining and metallurgy of non-ferrous metals like aluminium, copper, zinc, lead, gold, nickel, etc. and for administration of the Mines and Minerals (Regulation and Development) Act, 1957 in respect of all mines and minerals other than coal, natural gas and petroleum.

 

RESOURCES:

Karnataka is rich in its mineral wealth which is distributed fairly evenly across the state. Karnataka's Geological Survey department started in 1880 is one of the oldest in the country. Rich deposits of asbestos, bauxite, chromite, dolomite, gold, iron ore, kaolin, limestone, magnesite, Manganese, ochre, quartz and silica sand are found in the state. Karnataka is also a major producer of felsite, moulding sand (63%) and fuchsite quartzite (57%) in the country.

Karnataka has two major centers of gold mining in the state at Kolar and Raichur. These mines produce about 3000 kg of gold per annum which accounts for almost 84% of the country's production. Karnataka has very rich deposits of high grade iron and manganese ores to the tune of 1,000 million tonnes. Most of the iron ores are concentrated around the Bellary-Hospet region. Karnataka with a granite rock spread of over 4200 km² is also famous for its Ornamental Granites with different hues.

 

GOVERNMENT POLICIES:

The  role to be played by the Central and State Governments in  regard  to  mineral  development has  been  extensively  dealt in  the  Mines  and Minerals (Development and Regulation)  Act, 1957  and Rules  made under the Act by  the  Central  Government and  the  State  Governments in their  respective  domains.   The provisions  of  the  Act  and the Rules  will  be  reviewed  and  harmonised  with  the basic features of the new  National Mineral  Policy.  In future the core functions of the State in mining will be facilitation and regulation of exploration and mining activities of investors and entrepreneurs, provision of infrastructure and tax collection.  In mining activities, there shall be arms length distance between State agencies (Public Sector Undertakings) that mine and those that regulate.  There shall be transparency and fair play in the reservation of ore bodies to State agencies on such areas where private players are not holding or have not applied for exploration or mining, unless security considerations or specific public interests are involved. Recently, the Union Government after reviewing the current mining sector, mineral development and keeping in view the availability of the valuable finite resource have announced the National Mineral Policy (NMP))- 2010. Research organisations, including the National Mineral Processing Laboratories of the Indian Bureau of Mines should be strengthened for development of processes for beneficiation and mineral and elemental analysis of ores and ore dressing products. There shall be co-operation between and co-ordination among all organisations in public and private sector engaged in this task.

 

Waste management: Project Opportunities in Karnataka

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:

As regards municipal waste on an average 40 to 50 % of the total municipal waste is generated in the sic municipal corporation of Karnataka & more than 70 % of municipal waste is generated by the residential & market areas. The domestic waste generated by households comprises mainly of organic, plastic & paper waste & small quantities of the waste. Plastic & glass are segregated at the household level or by rag pickers and sold. The remaining waste is disposed in community bins, discarded ointments and medicine. In addition about 1 to 2% of biomedical waste also gets mixed with municipal solid waste in the community bins.

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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Solar Cooker

Solar cooker is a device which uses the energy of direct sunlight to heat, cook or pasteurize drink and other food materials. Many solar cookers currently in use are relatively inexpensive, low-tech devices, although some are as powerful or as expensive as traditional stoves, and advanced, large-scale solar cookers can cook for hundreds of people. Because they use no fuel and cost nothing to operate, many nonprofit organizations are promoting their use worldwide in order to help reduce fuel costs (especially where monetary reciprocity is low) and air pollution, and to slow down the deforestation and desertification caused by gathering firewood for cooking. Solar cookers are the application of solar energy used to cook, bake, and fry food. Solar Cookers can also be used for pasteurization. Solar cooker converts the radiant energy to the heat energy which is used for cooking food. Growing awareness for the use of renewable energy along with escalating prices of non renewable energy drives the solar cooker market. Government support and funding for the use of solar energy also stimulates the growth of solar cooker market. The solar cooker market can be segmented on the basis of the construction techniques utilized for manufacturing. The broad segmentations on the basis of construction can be done as solar box cooker, solar panel cooker and solar parabolic cooker. The solar box cookers are the most commonly available form of solar cookers in the market currently. These cookers are extremely robust in nature and operate very safely with little or no supervision required for operating.
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Stainless Steel Utensils

Stainless steels are most notable for their corrosion resistance, which increases with increasing chromium content. Additions of molybdenum increase corrosion resistance in reducing acids and against pitting attack in chloride solutions. Thus, there are numerous grades of stainless steel with varying chromium and molybdenum contents to suit the environment the alloy must endure. Stainless steels resistance to corrosion and staining, low maintenance, and familiar luster make it an ideal material for many applications where both the strength of steel and corrosion resistance are required. Stainless steel is an alloy of Iron with a minimum of 10.5% Chromium. Chromium produces a thin layer of oxide on the surface of the steel known as the 'passive layer'. This prevents any further corrosion of the surface. Increasing the amount of Chromium gives an increased resistance to corrosion. Stainless steel also contains varying amounts of Carbon, Silicon and Manganese. Other elements such as Nickel and Molybdenum may be added to impart other useful properties such as enhanced formability and increased corrosion resistance. Stainless steel is a generic term for a family of corrosion resistant alloy steels containing 10.5% or more chromium. All stainless steels have a high resistance to corrosion. This resistance to attack is due to the naturally occurring chromium-rich oxide film formed on the surface of the steel. Although extremely thin, this invisible, inert film is tightly adherent to the metal and extremely protective in a wide range of corrosive media. The film is rapidly self repairing in the presence of oxygen, and damage by abrasion, cutting or machining is quickly repaired. The global stainless steel market size is expected to reach USD 133.8 billion by 2025 at a 5.2% CAGR, according to a new report by Grand View Research, Inc. The market is anticipated to expand mainly due to advantages such as increased formability, weldability, corrosion resistance, and aesthetic appearance. The market for stainless steel is forecasted to increase by 3 percent until 2020. The increase in urbanization and modernization globally are the main reasons for this growth. Moreover, the growth in the automotive industry along with the growing demand for energy and water will likely maintain the demand for stainless steel in near future. The key driver of the stainless steel industry is the increasing demand from downstream industries such as agriculture, processing industry, consumer products, and construction industry.
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Plastic Buttons from Polyester Sheet & Rod

In modern clothing and fashion design, a Plastic Button is a small fastener, now most commonly made of plastic, but also frequently made of metal, wood or seashell, which secures two pieces of fabric together. In archaeology, a button can be a significant artifact. Textile industries is the major client of button manufacturing business. The market for acrylic buttons are increasing due to increase in consumption of garments used for domestic use and for exports. The consumption of both these sectors have registered significant growth in the past and it will continue to show good growth in future years. The Indian Plastic Industry has taken great strides in its quest for success. The last few decades have seen it rise to the position of a leading force in the country with a sizable base. The industry itself is growing at a fast pace and the per capita consumption of plastics in the country has increased manifold as compared to the earlier decade.
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Vermiculture

Vermicompost (vermi-compost, vermiculture) is the product of the composting process using various species of worms, usually red wigglers, white worms, and other earthworms, to create a mixture of decomposing vegetable or food waste, bedding materials, and vermicast. Vermicast (also called worm castings, worm humus, worm manure, or worm feces) is the end-product of the breakdown of organic matter by earthworms. Vermicompost contains water-soluble nutrients and is an excellent, nutrient-rich organic fertilizer and soil conditionerIt is used in farming and small scale sustainable, organic farming. Vermiculture means artificial rearing or cultivation of worms (Earthworms) and the technology is the scientific process of using them for the betterment of human beings. Vermicompost is the excreta of earthworm, which is rich in humus. Earthworms eat cow dung or farm yard manure along with other farm wastes and pass it through their body and in the process convert it into vermicompost. The municipal wastes; non-toxic solid and liquid waste of the industries and household garbage’s can also be converted into vermicompost in the same manner. Vermiculture is the process of garden composting using worms. Overtime, all organic material naturally goes through the process of decomposition. However, with vermiculture, the process is significantly accelerated. The worms consume the decaying organic material and then flush it out of their system in what is referred to as ‘castings’ or ‘worm manure.’ The worm castings are nutrient rich. Vermicompost is the product or process of composting using various worms, usually red wigglers, white worms and other earthworms to create a heterogeneous mixture of decomposing vegetable or food waste, bedding materials and vermicast.
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Paediatric Hospital

Children's hospital is a hospital which offers its services exclusively to children and adolescents. Most children's hospitals can serve children from birth up to the age of 18, or in some instances, children's hospitals' doctors may treat children until they finish high school. The number of children's hospitals proliferated in the 20th century, as pediatric medical and surgical specialties separated from internal medicine and adult surgical specialties. Pediatric hospitalists are pediatricians who work primarily in hospitals. They care for children in many hospital areas, including the pediatric ward, labor and delivery, the newborn nursery, the emergency department, the neonatal intensive care unit, and the pediatric intensive care unit. The other pediatric health care services segment is anticipated to capture for dominant share of the global pediatric health care products and services market during the forecast period owing to rise in burden of diseases and disorders such as infectious diseases, allergies, asthma, and other respiratory conditions among children. Moreover, increase in emphasis on newborn screening programs focused on detecting various health conditions in infants is expected to boost the growth of the segment from 2018 to 2026. The global healthcare landscape, the adoption of radiology in diagnosis and medical imaging operations continues to gain grounds, particularly in pediatric care. Protecting the new-born babies from suffering traumas during or post- birth has fuelled the demand for employing the subspecialty medical imaging science of radiology in pediatric diagnosis. In the future, hospitals and child specialty centers will actively install pediatric radiology devices to improve the diagnosis of young infants and children.
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Sanitary Ware Products (Wash Basin and Bathroom Closets)

Ceramic sanitary wares are plumbing fixtures which comprise wash basins, shower plates, toilet bowls, bath tubs, etc. Ceramic sanitary ware products are easy to clean and maintain; they are also cost efficient in nature. Corrosion resistance, abrasion resistance, varied colors and glossy surface are major characteristics of ceramic which prevents it to be replaced by its alternatives such as steel and fiber. Sanitary ware is the basic requirement in residential, commercial and public areas; hence growth in the real estate market and developing countries are expected to be major market drivers. The demand for ceramic sanitary ware products is driven by the replacement need. The increasing population in the developing nations and increasing standard of living of the people is projected to drive the ceramic sanitary ware market. Asia-Pacific holds a significant market share in the ceramic sanitary ware market. The global sanitary ware market was valued at $9,194 million in 2017 and is projected to reach $13,616 million by 2025, registering a CAGR of 5.0% from 2018 to 2025. Sanitary ware comprises toilet sinks, wash basins, cisterns, and pedestals. These products were traditionally manufactured using porcelain, which is a ceramic material. However, sanitary wares are now being manufactured using metals, glass, plastics, and other materials. Ceramic sanitary wares are cost-effective, have excellent resistance to chemical attacks, and can withstand heavy loads. The global sanitary ware market is segmented based on product type, material, and region. Based on product type, the market is segmented into toilet sink/water closet, wash basin, pedestal, and cistern. On the basis of material, the market is segmented into ceramic, pressed metal, acrylic plastic & Perspex, and others. By region, the global sanitary ware market is analyzed across North America, Europe, Asia-Pacific, MENA, and South America. Indian sanitary ware market consists of both organized player and unorganized players, with organized players holding the majority share. Further, with increasing brand awareness and demand for luxurious and stylish sanitary ware, the market share of organized players in the overall sanitary ware market is expected to increase in coming years. India is emerging as a sanitary ware manufacturing hub, with several domestic and overseas manufacturers setting up manufacturing facilities across the country due to abundant availability of raw material and low labor cost. Several domestic manufacturers such as HSIL, Cera India, etc., as well as overseas manufactures such as Roca India, Kohler India, Toto India, etc., have set up manufacturing facilities in the country.
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Sterilized Bone Meal

Bone meal is a mixture of finely and coarsely ground animal bones and slaughter-house waste products. It is used as an organic fertilizer for plants and as a nutritional supplement for animals. As a slow-release fertilizer, bone meal is primarily used as a source of phosphorus and protein. Bone meal is made from the raw bones of animals that were slaughtered for human consumption. Meat, or muscles, and fat are removed from the bones. Then the bones are transported from the slaughterhouse to a facility that turns them into bone meal.
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Calcium Silicate Blocks and Pipes Manufacturing Industry

Calcium Silicate Blocks and Pipes Manufacturing Industry. Insulation Materials. Production of Calcium Silicate Pipe & Block Insulation Calcium Silicate Calcium silicate (Ca2SiO4), also known as calcium silicon oxide, is a product derived from limestone and diatomaceous earth, and is used in the pharmaceutical industry as an anticaking agent. Anti-caking agents absorb moisture and allow products to flow freely during the manufacturing process. Calcium silicate is an inorganic substance that can exist in different forms: CaSiO3 or Ca2SiO4. It is described as a very fine, white or off-white powder with low bulk density and high physical water absorption. It is commonly used as anti-caking agent in food ingredients. Uses The calcium silicates have a number of uses in industry. Among the most important applications are their uses in building materials, such as some types of glass and cement (especially Portland cement), bricks and tiles for roofs, fireproof ceilings, and building boards. The compound is also used as a filler in the manufacture of paper and some types of plastics, where it gives body to the final product. The use of calcium silicate foam for the building sector, especially the internal insulation of walls is relatively new. Based on extensive research, it was proven that, due to the high capillary action and hydrothermal material properties, the foam can be used to improve the moisture protection – especially when energetically renovating old buildings where the outside façade is unsuited for insulation measures. Calcium silicate is used to insulate high-temperature pipes and equipment and for fire endurance applications. It is manufactured and sold in three different forms: preformed block, preformed pipe. Calcium silicate manufactured in North America is noted for its high compressive strength, corrosion-inhibiting properties, and high-temperature structural integrity. Calcium Silicate Blocks This is a hard and solid product which is known for its high compressive strength and for does not shrink or crack under high temperatures. Further, these blocks can also be cut according to exact requirement asked by the client and their strength & hardness are a result of the calcium content of this material. Features of Calcium Silicate Blocks: • Lightweight and rigid • Resistant to fire • High mechanical strength • Low specific heat • High durability • Can be reused Indian Calcium silicate blocks find many applications in various industries. These include cement industry, aluminum industry, glass industry, iron and steel industry, power plants, fertilizer industry, petrochemical industry, ship building industry, chemical industry, sugar industry, foundries, rolling mills and other industries where temperatures can go high up to 1000 degrees Centigrade. Applications: • Cement Industry • Aluminium Industry • Glass Industry • Steel Industry • Power Plants • Fertilizer Industry • Refineries • Ceramic Industry • Ship Building • Chemicals Industry • Sugar Mills • Foundries Rolling Mills Advantages: • Reduced fuel cost due to low thermal conductivity and low thermal capacity. • Consistent physio-thermal performance throughout its life. • Reduced heat loss due to fewer joints. • Longer life of 3 to 4 times the fibrous material due to high strength and resistance to vibrations. • Reduced installation cost due to simple fixing. • Zero maintenance for entire life of over 25 years. • Economical as compared to conventional insulation. • Can absorb thermal shocks. • Physio-thermal properties remain unaffected after repeated water wetting & subsequent drying. Market Outlook Calcium silicate is used as an anti-caking agent and antacid in the food industry. Demand for high-temperature insulating materials is expected to increase due to industrial development, thus boosting the market for calcium silicate. Growth in the construction sector has bolstered demand for calcium silicate as it is the major end-user of calcium silicate. Global demand for calcium silicate is expected to witness strong growth in the near future, thereby offering significant market opportunities to producers. Increasing demand for calcium silicate has compelled producers to undertake expansion and acquisition of projects to meet global demand. Numerous producers are shifting their plants to countries such as China and India due to various factors such as low raw material and labor costs. The Calcium Silicate market analysis is provided for the international markets including development trends, competitive landscape analysis, and key regions development status. Development policies and plans are discussed as well as manufacturing processes and cost structures. Global demand for calcium silicate is expected to witness strong growth in the near future, thereby offering significant market opportunities to producers. Increasing demand for calcium silicate has compelled producers to undertake expansion and acquisition of projects to meet global demand. Numerous producers are shifting their plants to countries such as China and India due to various factors such as low raw material and labor costs. Rapid urbanization and infrastructural development are projected to be key market drivers. This, in turn, would propel demand for calcium silicate in the next few years. Low raw material availability and price volatility are factors likely to affect the market growth. The Asia Pacific is anticipated to be the leading region in the global calcium silicate market due to high demand from the construction sector during the review period. The growing urbanization and infrastructural demand from developing nations such as China and India are driving the market growth in this region. Moreover, the high demand for the product as an insulating material in almost every industry is another factor fuelling the market growth in this region. Moreover, the changing food consumption habits and growth of the food industry in this region is likely to propel the market growth. Availability of raw material and labor in these countries prove advantageous to the market growth. Some of the prominent manufacturers in the global calcium silicate market are American Elements (U.S.), Promat International NV (Belgium), Morgan Advanced Materials (U.K), Prochem, Inc. (U.S.), Spectrum Chemical Manufacturing Corp. (U.S.), Materion Corporation (U.S.), Associated Ceramics & Technology, Inc. (U.S.), Mil-Spec Industries Corporation (New York), Pyrotek (India), Skamol (Denmark), ZIRCAR CERAMICS (India), and Industrial Insulation Group, LLC (U.S.) Tags #Production_of_Calcium_Silicate_Blocks_and_Pipes, #Calcium_Silicate_Block, #Calcium_Silicate_Blocks_and_Pipes, #Calcium_Silicate_Blocks_Manufacturing_Process, Calcium Silicate Manufacturing Process, How to Produce a Calcium Silicate, Production Process of Calcium Silicate, Calcium Silicate Production Process, #Calcium_Silicate_Blocks_Manufacture, Profile on Production of Calcium Silicate Blocks, Calcium Silicate Blocks and Pipes Manufacturing Plant, Producing of Calcium Silicate Products, Calcium Silicate Insulation Blocks, Calcium Silicate Manufacturing Project Report, Calcium Silicate Pipe, #Project_Report_on_Calcium_Silicate_Blocks_and_Pipes_Manufacturing_Industry, Detailed Project Report on Calcium Silicate Blocks and Pipes Manufacturing, Project Report on Calcium Silicate Blocks and Pipes Manufacturing, #Pre_Investment_Feasibility_Study_on_Calcium_Silicate_Manufacturing, Techno-Economic feasibility study on Calcium Silicate Blocks and Pipes Manufacturing, #Feasibility_report_on_Calcium_Silicate_Blocks_Manufacturing, #Free_Project_Profile_on_Calcium_Silicate_Blocks_and_Pipes_Manufacturing, Project profile on Calcium Silicate Blocks Manufacturing, Download free project profile on Calcium Silicate Blocks Manufacturing, #Manufacturing_of_Calcium_Silicate_Pipes, Insulation Blocks & Covering, Calcium Silicate Pipe & Block Insulation
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Return: 1.00%Break even: N/A
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Calcined & Activated Alumina

Calcined Alumina Calcined (or alpha) alumina is made by calcining a source alumina powder at 1200-1300C to convert it to pure Al2O3. This is the densest and most stable crystalline form of alumina. It is insoluble in water but is soluble in hydrofluoric acid and potassium bisulfate. When nearly 100% of the material converts to the large hexagonal, elongated tablet shaped crystals associated with the alpha phase, the product is referred to as "Tabular Alumina". Calcined aluminas are available in numerous grades based on the heat treatment applied, crystal size, soda content, and degree of thermal conversion to alpha phase. Calcined alumina is made by firing a source alumina at various temperatures, depending upon desired level of calcination (burn), into alpha alumina varying from 5 – 100% moving it to its densest and most stable form. The calcined alumina particles appear as crystalline agglomerates which are larger when the degree of calcination is higher. Calcined alumina is generally used in the manufacture of refractories, glass and enamel, tile and porcelains and ceramics, including electronic ceramics, etc. Calcined alumina is produced through the calcination (“heating”) of alumina to various temperatures. By controlling the calcination temperatures and time, the properties of the alumina can be controlled. Calcined alumina is therefore utilized in a variety of industrial applications including Structural ceramics, Technical ceramics, Polishing compounds for plastic, metal, and glass, Fillers for Rubber and Plastics, Friction - anti slip, Refractories, Paint & Coatings and Thermal Spray Powders. Calcined alumina powder is produced by calcination of alumina. The manufacturing process is carried out at various temperatures, which control hardness and abrasive properties of calcined alumina powder, such as polishing and grinding. At temperature of 1200-1300ºC, calcined alumina is easily converted into pure Aluminum Oxide (Al2O3). Demand for calcined alumina is driven by a number of factors. The major applications of calcined alumina include refractory & ceramics. The rising market penetration of high-quality steel accounts for the largest share in terms of application for refractories, in emerging economies, which drives the demand for high-end refractories, which are made from calcined alumina. The growing building & construction industry further substantiates the growth. Activated Alumina Activated alumina is manufactured from aluminium hydroxide by dehydroxylating it in a way that produces a highly porous material; this material can have a surface area significantly over 200 m²/g. The compound is used as a desiccant (to keep things dry by absorbing water from the air) and as a filter of fluoride, arsenic and selenium in drinking water. It is made of aluminium oxide (alumina; Al2O3). It has a very high surface-area-to-weight ratio, due to the many "tunnel like" pores that it has. Activated alumina in its phase composition can be represented only by metastable forms (gamma-Al2O3 etc.). Activated alumina is an excellent desiccant for drying a wide variety of liquids and gases. Activated alumina is a porous, solid form of aluminum oxide, otherwise known as Al2O3 or alumina. This is the same mineral that makes up the precious gems ruby and sapphire, with impurities being the source of the stones’ bright colors. After activated alumina has been evacuated of existing moisture by heating it, the high surface area and many pores of the material allow for the uptake of water and other molecules through adsorption. The U.S. activated alumina market was estimated at USD 217.0 million in 2016 and is anticipated to grow at a CAGR of 4.8% from 2017 to 2025. The increasing research being conducted in the field of activated alumina has helped in increasing the application scope of activated alumina over the years. Activated alumina is a dry, granular chemical substance produced by de-hydroxylation i.e., the removal of hydroxyl group ion from aluminum hydroxide. This compound is treated as a desiccant, catalyst and used for filtering fluoride, arsenic and selenium in drinking water. Activated alumina has a high surface area to weight ratio due to its extensive pore structure, which is resistant to thermal shock and abrasion, and will not shrink, swell or soften when placed in water. Activated alumina is prominently used as a reaction catalyst, in the oil and gas sector, and for the treatment of water. Growing investments in water treatment infrastructure and the ever-rising demand for oil and gas have been fueling the demand for activated alumina over the past few years. These trends are expected to continue during the forecast period, driving the market to expand at a CAGR of 4.2% between 2016 and 2024. The sales of activated alumina amounted to US$770.6 mn in 2015 and are projected to be worth US$1,108.9 mn by 2024.
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Return: 1.00%Break even: N/A
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Fire Extinguishers (Different Types)

A fire extinguisher is an active fire protection device used to extinguish or control small fires, often in emergency situations. It is not intended for use on an out-of-control fire, such as one which has reached the ceiling, endangers the user (i.e., no escape route, smoke, explosion hazard, etc.), or otherwise requires the expertise of a fire brigade. Typically, a fire extinguisher consists of a hand-held cylindrical pressure vessel containing an agent which can be discharged to extinguish a fire. Fire extinguishers are portable devices used to extinguish small fires or reduce their destruction before firefighters arrive at the scene. These are kept handy at places, namely fire points, in buildings, factories, public paces or transportation. The types and numbers of extinguishers legally required for an area are governed by the safety regulations in force in that particular area. Fire is one of humankind's oldest discoveries; it's also one of our biggest threats. A fire can destroy in a matter of minutes a home or business that has taken decades to establish. That's why methods of putting out fires are so important. Many buildings are equipped with fire extinguishers, but why are there so many different kinds. Fire extinguishers are classified by fire type. The A, B, C rating system defines the kinds of burning materials each fire extinguisher is designed to fight. The number in front of the A, B, or C indicates the rating size of fire the unit can extinguish. The global fire extinguishers market is estimated to value $6,452.3 million in 2017 and is projected to witness a CAGR of 6.2% during 2017–2023. Growing construction activities for the development of new industrial plants, commercial centers, and housing projects, and implementation of stringent fire safety norms for public safety are two key factors driving the market growth. It is safety equipment which comprises of a cylinder, nozzle, pressure gauge and a handle. Fire extinguishers cannot cease a large-scale fire and may require the expertise or guidance of the fire department. The global fire extinguisher market reached a value of more than US$ 4.4 Billion in 2017.
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Return: 1.00%Break even: N/A
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