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Chemicals, Biotechnology, Enzymes, Bio Fertilizer, Vermiculture, Vermicompost Chemical & Allied Industries and Alcohol Projects

 

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This report helps you understand the viability of the project by disclosing details like machinery required, project costs and snapshot of other project financials

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Our research reports broadly cover Indian markets, present analysis, outlook and forecast for a period of five years.

The market forecasts are developed on the basis of secondary research and are cross-validated through interactions with the industry players

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We can provide you detailed project reports on the following topics. Please select the projects of your interests.

Each detailed project reports cover all the aspects of business, from analysing the market, confirming availability of various necessities such as plant & machinery, raw materials to forecasting the financial requirements. The scope of the report includes assessing market potential, negotiating with collaborators, investment decision making, corporate diversification planning etc. in a very planned manner by formulating detailed manufacturing techniques and forecasting financial aspects by estimating the cost of raw material, formulating the cash flow statement, projecting the balance sheet etc.

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Stearic Acid - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Economics

Stearic acid is a saturated fatty acid with an 18-carbon chain and has the IUPAC name octadecanoic acid. It is a waxy solid, and its chemical formula is CH3(CH2)16CO2H. Its name comes from the Greek word ????? "stéar", which means tallow. The salts and esters of stearic acid are called stearates. Stearic acid is one of the most common saturated fatty acids found in nature following palmitic acid. It occurs in many animal and vegetable fats and oils, but it is more abundant in animal fat (up to 30%) than vegetable fat (typically <5%). The important exceptions are cocoa butter and Shea butter, where the stearic acid content (as a triglyceride) is 28–45%. Stearic acid is prepared by treating these fats and oils with water at a high pressure and temperature (above 200°C), leading to the hydrolysis of triglycerides. The resulting mixture is then distilled. Commercial stearic acid is often a mixture of stearic and palmitic acids, although purified stearic acid is available. In terms of its biosynthesis, stearic acid is produced from carbohydrates via the fatty acid synthesis machinery via acetyl-CoA. Uses & Applications: • Soaps, cosmetics, detergents • Lubricants, softening and release agents • Niche uses • Fatty acids are classic components of candle-making Finding its use in various fields stearic acid has a high market demand and good future scope. It is mainly used in the production of detergents, soaps, and cosmetics such as shampoos and shaving cream products which automatically increases the demand of Stearic acid. As a whole establishing Stearic Acid plant is one of the project which has good prospect for the entrepreneurs to invest.
Plant capacity: Stearic Acid: 24 MT/ Day•Oleic Acid (by product):35 MT/ Day•Methyl Alcohol (recovered): 150 MT/ DayPlant & machinery: Rs. 524 Lakhs
Working capital: -T.C.I: Cost of Project : Rs. 2730 Lakhs
Return: 26.00%Break even: 45.00%
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Sodium Silicate from Rice Husk/Hull - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Rice husk a major by-product of the rice milling industry, is one of the most commonly available lignocellulosic materials that can be converted to different types of fuels and chemical feedstocks through a variety of thermo chemical conversion processes. During milling of paddy about 78 % of weight is received as rice, broken rice and bran. Rest 22 % of the weight of paddy is received as husk. This husk is used as fuel in the rice mills to generate steam for the parboiling process. This husk contains about 75 % organic volatile matter and the balance 25 % of the weight of this husk is converted into ash during the firing process, is known as rice husk ash. The silicates are used as a fire-resisting binder for asbestos and other similar insulating materials, as a binding cement. They are also employed in the preparation of cores and moulds for casting molten metals. Sodium silicates are used in the composition of acid resisting and refractory cements. Other uses of the silicate are as follows: as a suspension agent in are purification processes, from industrial wastes, for water proofing stone products, as a coating material in the packing materials, such as wooden panels, paper or cardboard boxes, for the insulation of electric copper wires, in the preservation of eggs. The Midwest U.S. market for sodium silicate is highly concentrated, with only four competitors. The competitors are PQ Corporation, Occidental Chemical Corporation, INEOS Group Limited, and W.R. Grace & Company. PQ Corporation is a leading global producer of silicate, zeolite, and other performance materials serving the detergent, pulp and paper, chemical, petroleum, catalyst, water treatment, construction, and beverage markets. The future demand for sodium silicate is a function of growth of the end-user industries, mainly soap and detergent factories, pulp and paper mills, paint, pigment and adhesive factories. Information obtained from Ethiopian Investment Authority give strong indication that private investment in the aforementioned industries is bound to grow. Due to demand growth, it is a good project for entrepreneurs to invest. Any entrepreneurs venture into this field will be successful. Few Indian Major Players are as under:- Abhiraami Chemicals Ltd. Balls & Cylpebs Ltd. Shri Aster Silicates Ltd.
Plant capacity: 6000 MT/ AnnumPlant & machinery: Rs. 144 Lakhs
Working capital: -T.C.I: Cost of Project : Rs. 374 Lakhs
Return: 28.00%Break even: 58.00%
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Water Treatment Chemicals (R.O., Boiler and Cooling Tower) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study

Water is the universal solvent and is invariably used for a wide variety of domestic and industrial purposes. The major industrial uses of water are steam generation, cooling, washing, and conveying of materials etc., Above all, it is the major raw material which will become an ingredient in the finished product. Of the many uses of water, steam production is considered as the most important as it is a means of power generation and of several industrial uses. Steam is used to drive turbines and for heating, and to operate pumps, compressors and reciprocating engines. Most chemical process industries require an uninterrupted supply of steam to be used for varied purposes. Water and its impurities are responsible for the corrosion of metals and formation of deposits on heat-transfer surfaces, which in turn reduce efficiency and waste energy. Having seen the effects of corrosion and deposits, let us see how this can be prevented. The path to their prevention can best be approached through understanding their basic causes, why and how they occur. Traditional processes for water treatment will thus consist of a coagulating process including a separation step in the form of flotation and precipitation and sedimentation including a filtering step, and in addition a step of water treatment for corrosion control purposes. Such traditional processes are, however, comprehensive and expensive with respect to processing of lime to so as achieve supply of the lime without leading to operation problems. The addition of lime usually takes place by dosage from a raw material container in the form of a lime silo via a worm conveyor to a slurry tank to dissolve the lime in water, and is then subjected to a post- treatment step in a lime water processing unit, prior to supply to the crude water to be treated.
Plant capacity: 4000 Kgs/DayPlant & machinery: Rs 86 Lakhs
Working capital: -T.C.I: Cost of Project : Rs 495 Lakhs
Return: 30.00%Break even: 51.00%
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Water Treatment Chemicals (Antiscalants and Membrane Cleaners) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study

There has been a dramatic increase in the number of reverse osmosis and nano-filtration plant over the past ten years. There has also been a proliferation in the variety of feed sources used, including seawater, surface waters and, increasingly, effluents of varying qualities. Not surprisingly, therefore, is the parallel increase in the degree of scaling and fouling, resulting in the need for not only novel preventative antiscalant products in the field, but also new and improved cleaners where deposition has occurred. An essential part of the ability to correctly select and apply the most appropriate products lies in the development of laboratory analysis and predictive tools. Fouling potential is an inherent characteristic of membrane module design. The high membrane packing density required for good production rates results in low voidage for feed water flow. However, this need not result in detrimental performance. Fouling has been widely documented and researched since the first commercial use of membrane separations. It is important that this subject is addressed because membrane replacement is a considerable expense in the operation of an RO plant. In the case of large municipal and industrial systems, this cost can be prohibitive. Pre-treatment systems for RO plants are designed to produce a feedwater with a reduced fouling potential by removing potential fouling species prior to membrane treatment. Common foulants include: Calcium carbonate and calcium sulphate scales, Organic matter, Iron, Colloidal material, Bio-film and microorganisms, Silica, Natural humic and fulvic acids. Fumaric Acid Polymers are used as Antiscalants. The synthesis of the fumaric acid polymers follows a novel process that avoids the insolubility and low reactivity of fumaric acid in free radical reactions and that produces the polymer in high yield.
Plant capacity: Capacity Antiscalants: 5MT/Day, Membrane Cleaners: 5 MT/DayPlant & machinery: Rs 88 Lakhs
Working capital: -T.C.I: Cost of Project: Rs 613 Lakhs
Return: 27.82%Break even: 63.96%
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Grey Oxide (used in Automotive & Tubular Battery) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunity

Grey Oxide, The chemical name of Lead Suboxide is called as 2PbO.Pb and is available in grey colored powder. Lead Suboxide is also called as Battery oxide or Grey Oxide. Lead Sub-Oxide (2PbO.Pb.H2O), also known as Grey/Lead Oxide. Grey Oxide is used on an extensive scale for preparation of plates in Lead Acid Batteries which requires production to strict specifications. Refined Lead (99.97% purity) ingots are the required input for our LSO manufacturing plant, which uses the ball mill process. It comprises of a small Lead Melting Furnace, operating in line with a hemispherical ball-casting machine, which feeds the balls to the ball mill .In the ball mill, Lead is converted to Lead Sub Oxide in an exothermic process, in conditions of a maintained temperature range of 135-145 degrees centigrade and constant airflow. The Grey Oxide is harvested through a high efficiency cyclone, bag-house filtration unit and induction draft fan arrangement. It is in a grey powder form. The desired particle size and free Lead content is ensured through proper plant configuration and precise control of ID Fan suction. Lead battery demand in India to remain strong despite the new types of batteries being develop. The market for lead-acid batteries is expected to exhibit strong growth in the next five years. The battery market in India is experiencing growing demand from various sectors, thereby providing immense opportunities to manufacturers. The steadily growing automobile sector and the increasing need for back-up power is driving growth in the lead-acid battery market. As a whole it is a good project for entrepreneurs to invest. Few Indian Major Players are as under • Associated Pigments Ltd. • Bajoria Enterprises Ltd. • Dravya Industrial Chemicals Ltd. • Gillanders Arbuthnot & Co. Ltd. • Gravita Exim Ltd. • Gravita India Ltd. • Waldies Ltd.
Plant capacity: 48 MT/DayPlant & machinery: Rs 250 Lakhs
Working capital: -T.C.I: Cost of Project: Rs 878 Lakhs
Return: 27.72%Break even: 55.05%
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Silica from Rice Husk - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

Rice husk is an agricultural residue easily available in rice producing countries. India is a major rice producing country, and the husk generated during milling is mostly used as a fuel in the boilers for processing paddy, producing energy through direct combustion & or by gasification. The rice husk contains about 75% organic volatile matter & the balance 25% of the weight of this husk is converted into ash during the firing process, is known as rice husk ash (RHA). This RHA in turn contains around 85%–92% amorphous silica. Silica is one of the valuable inorganic chemical compounds. It can exist in gel, crystalline and amorphous forms. It is the most abundant material in the earth’s crust. Silica is the major constituent of rice husk ash. With such a large ash content & silica content in the ash it becomes economical to extract silica from the ash, which has wide market & also takes care of ash disposal. Precipitated Silica (also called particulate silica) is composed of aggregates of ultimate particles of colloidal size that have not become linked in massive gel network during the preparation process. Precipitated Silica soluble silicate solutions are of fine controlled particle size & porous in nature. Precipitated silica powders have a more open structure with higher volume than dried pulverized gels. Precipitated silica is used as filler for paper & rubber as a carrier & diluents for agricultural chemicals, as an anti caking agent, to control viscosity & thickness and as a cleansing agent in toothpastes & in cosmetics. Precipitated silica also finds its applications as anti caking agents in food industry & as thermal insulators. Precipitated silica is perhaps the best not black filler and reinforcing agent used in rubber industry especially for the production of silicon rubber. Precipitated silica market is fragmented and major portion of the global market share is constituted by regional players. Therefore, precipitated silica market has high price sensitivity. Moreover low capital investment has increased the threat of new entrants in the market mainly in the developing economies. There has been surge in investment by major players in the emerging economies. Thus, Precipitated Silica from Rice Husk Ash as an entrepreneur offers an exciting opportunity to you.
Plant capacity: Precipitated Silica:10MT/Day •CaCO3 (by product):20.6MT/DayPlant & machinery: Rs 864 Lakhs
Working capital: -T.C.I: Cost of Project:Rs 1255 Lakhs
Return: 25.00%Break even: 50.00%
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Citric Acid - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Economics

Citric acid is described as “nature's acidulant”, occurring in a wide variety of plants, citrus fruits, animal tissues, micro-organisms and fluids, holding an important role in metabolism. Citric acid is in great demand as acidifying agent with great solubility nature that hardly could be substituted. It is widely used to impart tartness, pH adjustment, sourness, and also for enhancing flavors. Citric acid is widely used in food and beverage industry. Apart from this it also used in pharmaceutical products, personal care, cleaners & detergent and others. Moreover, citric acid is used for food safety and preservation, preparation of ready-to-made processed beverages and food products. In pharmaceutical industry citric acid is used as stabilizing & flavoring agent and in medical products such as soluble aspirin, antacid and also in dentifrices. Also, it is used in shampoos and conditioners, toiletries and detergents considering the personal care market. The main consumer is the food industry, where citric acid is particularly used as an acidifying agent, pH buffer and, in combination with other compounds, as a preservation agent. In the detergent industry it is the sequestration characteristics of citric acid and its biodegradability which make it an ideal substitute for phosphate. Because of the growing worldwide significance of environmental concern and the consequences of this for the composition of domestic and industrial chemicals, it can be assumed that there will be a disproportionate growth in this range of applications over the next few years. Any entrepreneur venture into this field will be successful. Few Indian Major Players are as under • Anil Bioplus Ltd. • Bharat Starch Inds. Ltd. • Citurgia Biochemicals Ltd. • Diviya Chemicals Ltd. • Parry & Co. Ltd. • Parry Enterprises India Ltd. • Vantech Industry Ltd.
Plant capacity: 100 MT/DayPlant & machinery: Rs 14950 Lakhs
Working capital: -T.C.I: Cost of Project :Rs 18350 Lakhs
Return: 12.04%Break even: 44.33%
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ENZYME (Alkaline Protease ,Amylase ,Cellulase, Laccase) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Plant Layout

Enzymes are macromolecular biological catalysts. Enzymes accelerate, or catalyze, chemical reactions. The molecules at the beginning of the process are called substrates and the enzyme converts these into different molecules, called products. Almost all metabolic processes in the cell need enzymes in order to occur at rates fast enough to sustain life. The set of enzymes made in a cell determines which metabolic pathways occur in that cell. Enzymes are known to catalyze more than 5,000 biochemical reaction types. Most enzymes are proteins, although a few are catalytic RNA molecules. Enzymes' specificity comes from their unique three-dimensional structures. Like all catalysts, enzymes increase the rate of a reaction by lowering its activation energy. Some enzymes can make their conversion of substrate to product occur many millions of times faster. Some enzymes are used commercially, for example, in the synthesis of antibiotics. Some household products use enzymes to speed up chemical reactions: enzymes in biological washing powders break down protein, starch or fat stains on clothes, and enzymes in meat tenderizer break down proteins into smaller molecules, making the meat easier to chew. Enzymes are generally globular proteins, acting alone or in larger complexes. Like all proteins, enzymes are linear chains of amino acids that fold to produce a three-dimensional structure. The sequence of the amino acids specifies the structure which in turn determines the catalytic activity of the enzyme. Although structure determines function, a novel enzyme's activity cannot yet be predicted from its structure alone. Enzymes are used in the chemical industry and other industrial applications when extremely specific catalysts are required. Enzymes in general are limited in the number of reactions they have evolved to catalyze and also by their lack of stability in organic solvents and at high temperatures. Thus, due to demand it is a good project for entrepreneurs to invest.
Plant capacity: Alkaline Protease 1MT/Day •Amylase 1MT/Day •Cellulase 1MT/Day •Laccase 1MT/DayPlant & machinery: Rs 5693 Lakhs
Working capital: -T.C.I: Cost of Project : Rs 14825 Lakhs
Return: 27.00%Break even: 56.32%
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Cyanoacetic Acid - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Layout

Cyanoacetic acid is an organic compound. It is a white, hygroscopic solid. The compound contains two functional groups, a nitrile and a carboxylic acid. It is a precursor to cyanoacrylates, components of adhesives. The largest scale reaction is its esterification to give ethyl cyanoacrylate. Cyanoacetic acid is a versatile intermediate in the preparation of chemicals. it is a precursor to synthetic caffeine via the intermediacy of theophylline. It is a building block for many drugs, including dextromethorphan, amiloride, sulfadimethoxine, and allopurinol. Synthesis of cyanoacetic acid by carbon dioxide and electrogenerated acetonitrile anion in undivided cells equipped with sacrificial anodes: The electrochemical synthesis of cyanoacetic acid was performed by cathodic reduction of tetra alkyl ammonium salts (R4NX) in acetonitrile in undivided cells equipped with sacrificial anodes with concomitant or subsequent addition of carbon dioxide. These syntheses avoid the use of dangerous reagents, yield cyanoacetic acid in moderate faradic yields and confirm that the cathodic reduction of tetra alkyl ammonium salts in the presence of acetonitrile leads to the formation of the anion CNCH2-. As a whole it is a good project for entrepreneurs to invest.
Plant capacity: 2.4 MT/DayPlant & machinery: Rs 58 Lakhs
Working capital: -T.C.I: Cost of Project :Rs 268 Lakhs
Return: 27.49%Break even: 48.41%
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Naphthalene Balls - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

Naphthalene is the single most abundant component of coal tar. Although the composition of coal tar varies with the coal from which it is produced, typically coal tar is about 10% naphthalene by weight. Naphthalene balls or moth balls are widely used as an effective household preservative of woollen clothes and as a deodorant tablet for improving the cleanliness of toilets. Naphthalene balls work as toilet air fresheners, to control odors from toilets; as well as protects and preserves woollen clothes without any damage from moths or moth larvae. Naphthalene C10H8, sometimes called 'TARCAMPHOR' is a colourless crystalline flaked solid with the familiar odour of moth balls. Naphthalene C10H8 is an aromatic hydrocarbon with two condensed ring aromatic compounds. A good commercial grade of naphthalene (called 78° Naphthalene, referring to the melting point) is approximately 96% pure. Refined naphthalene is available in flakes, pellets, and balls. Use of Naphthalene as an insect repellent has dwindled in recent years as other materials, e.g. p-dichlorobenzene, have displaced it. As a whole it is a good project for entrepreneurs to invest. Few Indian Major Players are as under • Bengal Chemicals & Pharmaceuticals Ltd. • Himadri Chemicals & Inds. Ltd. • Nagreeka Exports Ltd. • Shree Hari Chemicals Export Ltd.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Information
  • One Lac / Lakh / Lakhs is equivalent to one hundred thousand (100,000)
  • One Crore is equivalent to ten million (10,000,000)
  • T.C.I is Total Capital Investment
  • We can modify the project capacity and project cost as per your requirement.
  • We can also prepare project report on any subject as per your requirement.
  • Caution: The project's cost, capacity and return are subject to change without any notice. Future projects may have different values of project cost, capacity or return.

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