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Perfumery Chemicals (Synthetic & Natural) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Perfumery chemicals are largely utilized in the production of different type of aromatic product like powder,cream, nail polishes, after shave lotions, toothpaste, soap, detergent, Agarbatti, different variety of perfumes etc.. There are lot of synthetic perfumery compounds of which Isobutyl acetate, Amyl benzoate, Butyl Phenyl Acetate, Ethyl Butyrate etc.. Perfumery chemicals are divided in two parts (1) Natural perfumery compound and (2) Synthetic perfumery compound. Both are largely demanded compound. Natural perfumery compound are basically highly volatile compounds. The demand of these chemicals are increasing day by day. There is good scope for new entrepreneur to invest in this project.
Plant capacity: 100 Kg/DayPlant & machinery: Rs. 7 Lakhs
Working capital: Rs. 14 LakhsT.C.I: Rs. 40 Lakhs
Return: 50.07%Break even: 54.86%
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ANTISCALING/DESCALING FORMING CHEMICALS - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Water has been called the universal solvent, because it dissolves many substances. It never occurs in nature in a pure state, because ground water picks up impurities as it seeps through rock strata. Surface water contains organic matter and insoluble suspended matter such as sand and silt. Even rain picks up oxygen and carbon dioxide as it falls to earth. When water is turned into steam, the minerals previously dissolved in the water are left behind and deposit a scale on the surface equipments like boilers and evaporators. Since water is key ingredient used in a boiler system, it is important to understand just exactly what is in the water you will be using. This scale, mostly calcium and magnesium is an excellent insulator and slows the transfer of heat to the water. Boiler failure occurs when scale is allowed to accumulate steel retains its strength up to 7000 F, and it starts to weaken above that point. At 10000 F it has a hard time supporting its own weight. Start adding insulation such as scale between the metal and water, and the metal temperature increases. With enough scale, the metal will overheat causing blisters, bags and eventually a ruptured pressure part. Scale can also increase the fuel consumption in boilers. Water hardness becomes an issue as soon as heat is applied in the boiler system. The most common problem is that of scale formation, a problem that will rob your system of the efficiency it was designed to deliver. Descaling and antiscaling chemicals provides the safest, most cost effective process to chemically remove scale, sugar, oil and other contaminants from equipment surface. So, in future there is good scope for new entrepreneur. Few Indian Major Players are as under: Chembond Ashland Water Technologies Ltd. Ciba India Ltd. N L C Nalco India Ltd.
Plant capacity: 1000 LITRES/dayPlant & machinery: 36 Lakhs
Working capital: -T.C.I: 174 Lakhs
Return: 42.00%Break even: 43.00%
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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, Plant Layout

Water treatment describes industrial-scale processes that make water more acceptable for an end-use, which may be drinking, industrial, or medical. Water treatment is unlike small-scale water sterilization that campers and other people in wilderness areas practice. Water treatment should remove existing water contaminants or so reduce their concentration that their water becomes fit for its desired end-use, which may be safely returning used water to the environment. Two of the main processes of industrial water treatment are boiler water treatment and cooling water treatment. A lack of proper water treatment can lead to the reaction of solids and bacteria within pipe work and boiler housing. Steam boilers can suffer from scale or corrosion when left untreated leading to weak and dangerous machinery, scale deposits can mean additional fuel is required to heat the same level of water because of the drop in efficiency. Poor quality dirty water can become a breeding ground for bacteria such as Legionella causing a risk to public health. The Indian boiler water treatment chemicals market so far has been fragmented but in recent times it showed sign of consolidation, as about 70% of the market share is being accounted by top 6 players. The Indian boiler water treatment chemicals market will grow at the CAGR of 8.2% till 2018, in terms of revenues. The report also forebodes that Nalco- India is going to maintain its lead till 2018 with over 25% market share. The next major segment in India would be the water chemicals segment with potential for a range of chemicals for conserving this critical resource. The demand for water is likely to grow substantially, putting pressure on supply of water for irrigation, drinking and industrial usage. The need to augment supply of water requires both conservation efforts to minimize wastage as well as greater amount of recycling. This is where water chemicals will play a vital role. Thus, it is a good project for entrepreneurs to invest due to growing demand.
Plant capacity: Boiler Chemical: 600 MT per annum,Cooling Tower Chemical: 300 MT per annum,R.O. Chemical: 300 MT per annumPlant & machinery: Rs. 45 Lakhs
Working capital: -T.C.I: Cost of Project : Rs. 366 Lakhs
Return: 24.00%Break even: 37.00%
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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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Ready Mix Coating Powder Used for Coating of Pharmaceuticals Tablets for Regular fill Coating and Functional Film Coating

In pharmaceutical drug delivery of solid oral dosage forms film coatings are frequently applied. The motivation for coating dosage forms range from cosmetic considerations (colour, gloss), improving the stability (light protection, moisture and gas barrier) and making it easier to swallow the tablet. In addition, functional coatings can be used to modify the drug release behaviour from the dosage form. A film coating is a thin polymer-based coat applied to a solid dosage form such as a tablet. The thickness of such a coating is usually between 20-100 µm. The Indian excipient market is expected to grow at the rate of 10–12 percent until 2020. the excipients are priced at 5–7 percent lesser in India v Which facilitates the development of new technologies and ensure a high quality product. Few Indian major players are as under • A D C L Drugs & Chemicals Ltd. • Anmol Drugs & Pharmaceuticals Ltd. • Avinash Drugs Ltd. • Beryl Drugs Ltd. • Bio-Caps India Ltd. • Bio-Ethicals Pharma Ltd. • Biochem Pharmaceutical Inds. Ltd
Plant capacity: Regular Film Coating Powder: 400 Kgs/Day Functional Fim Coating Powder: 400 Kgs/DayPlant & machinery: 19 lakhs
Working capital: -T.C.I: Cost of Project: Rs 172 lakhs
Return: 28.00%Break even: 59.00%
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Ready Mix Coating Powder Used for Coating of Pharmaceuticals Tablets for Regular fill Coating and Functional Film Coating

In pharmaceutical drug delivery of solid oral dosage forms film coatings are frequently applied. The motivation for coating dosage forms range from cosmetic considerations (colour, gloss), improving the stability (light protection, moisture and gas barrier) and making it easier to swallow the tablet. In addition, functional coatings can be used to modify the drug release behaviour from the dosage form. A film coating is a thin polymer-based coat applied to a solid dosage form such as a tablet. The thickness of such a coating is usually between 20-100 µm. The Indian excipient market is expected to grow at the rate of 10–12 percent until 2020. the excipients are priced at 5–7 percent lesser in India v Which facilitates the development of new technologies and ensure a high quality product. Few Indian major players are as under • A D C L Drugs & Chemicals Ltd. • Anmol Drugs & Pharmaceuticals Ltd. • Avinash Drugs Ltd. • Beryl Drugs Ltd. • Bio-Caps India Ltd. • Bio-Ethicals Pharma Ltd. • Biochem Pharmaceutical Inds. Ltd.
Plant capacity: Regular Film Coating Powder: 400 Kgs/Day Functional Fim Coating Powder: 400 Kgs/DayPlant & machinery: Rs 19 lakhs
Working capital: -T.C.I: Cost of Project: Rs 172 lakhs
Return: 28.00%Break even: 59.00%
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Global Inorganic Chemicals Market to Grow 4.5% by 2022.

Global Inorganic Chemicals Market to Grow 4.5% by 2022. Manufacturing of Sodium and Ammonium Molybdate. Project Opportunities in Production of Inorganic Compound Sodium Molybdate Sodium Molybdate also known as disodium dioxide (dioxo) molybdenum is a chemical compound extensively consumed in fertilizer application. Other uses of sodium molybdate include nutritional supplement in food industry and as corrosion inhibitor in industrial applications. Sodium molybdate is often found as dehydrate and was first synthesized by the method of hydration. Sodium molybdate is an organic salt which is found in dietary supplements and other nutritional supplement. Sodium molybdate is a good source of molybdenum, it is used to for nitrogen fixation to support healthy growth of leguminous plants such as peas & leans, clover & Lucerne. Sodium molybdate is used as corrosion inhibition in industry. In addition, sodium molybdate is also used for reducing nitrite requirement of fluids inhibited with nitrite-amine in chemical plants and improves corrosion protection. Sodium molybdate is a chemically altered form of the mineral element, sodium. Sodium is a natural salt, and sodium molybdate is used in the food industry as a fertilizer and nutritional supplement for health. The agricultural industry uses large quantities of sodium molybdate as fertilizer, particularly on vegetables such as broccoli and cauliflower. It is also fed to some cattle to help treat copper deficiencies. As a result of its use on food products you consume, trace amounts of sodium molybdate may end up in the food supply. Sodium molybdate in your food can have a variety of effects on your body, although its complete effects are not fully understood. Sodium Molybdate is useful as a source of molybdenum. It is often found as the dihydrate, Na2MoO4•2H2O. The molybdate (VI) anion is tetrahedral. Sodium molybdate can help correct a sodium deficiency by adding extra sodium to your body; however, sodium molybdate is ingested in such small amounts its contribution to your overall sodium stores is probably negligible. Once in your body, the molybdenum molecule is cleaved off of the sodium molecule and can have positive effects on your health. Rapid industrialization across the globe is leading to increasing discharge of waste water and associated chemicals in to ecosystem, stringent government regulations on water disposal and environmental safety is leading towards increasing capacities of chemical and water treatment. Sodium molybdate is used for corrosion inhibition and water treatment in these facilities. Such investments in these facilities are expected to drive sodium molybdate consumption across the globe. Sodium molybdate is emerging as possible alternative additive for sodium dichromate in the electrolytic production of sodium chlorate to reduce environmental impact without hampering performance in maintaining high current efficiency. Increasing use of sodium molybdate for aforementioned applications is a growth factor for sodium molybdate consumption in near future. Global Sodium molybdate market can be segmented on the basis application, product type, and region. Applications of sodium molybdate has a wide span, due to low toxicity it is used in wide array of applications such as in inks, dyes and pigments, fertilizers, ingredients in food and water treatment agents. It is also used in pharmaceutical industry as an analytical reagent. On the basis of prominent applications, global sodium molybdate market can be segmented as: • Water treatment • Fertilizer • Pigments & dye • Corrosion inhibition • Others Ammonium Molybdate Ammonium Molybdate is an odorless crystalline compound ranging in color from white to yellow-green. Ammonium Molybdate also called molybdic acid hex ammonium, salt tetrahydrate, ammonium molybdate tetrahydrate, and ammonium heptamolybdate tetrahydrate. Molybdate is an odorless compound containing molybdenum and oxygen ions. Ammonium molybdate is an organic compound, which is manufactured by reacting molybdenum trioxide in the presence of excess ammonia. The compound is available in different physical forms: solid powder, liquid, crystals, and chunks. Uses: • As an analytical reagent • Presence of phosphates, silicates, • Arsenates and lead in pigments • In the production of molybdenum metal • In the preparation of dehydrogenation • In the fixing of metals • In electroplating • In fertilizers for crops. The compound is also used as a catalyst in production of polymers and other commercial chemical processes. Ammonium molybdate is also applied as an intermediate in some industries. Due to bright color of molybdate, the compound is employed in paints, inks, and as an indicator & reagent in different colorimetric chemical experiments. Ammonium molybdate is employed as an analgesic in the medical industry. It is employed as a source of molybdate ion for the production of molybdenum metals and ceramics. Ammonium molybdate is manufactured in different grades such as reagent & technical grade, laboratory grade, food & pharmaceutical grade, and industrial grade. These grades are utilized in different industries. Based on region, the ammonium molybdate market can be divided into Asia Pacific, Europe, Middle East & Africa, North America, and Latin America. The global Ammonium Molybdate Market industry has experienced an astonishing change structure-wise such as enhancements in technology, increasing raw material costs, manufacturing base been channeled to Asian countries, novel promising growth markets, etc. The global ammonium molybdate market can be segmented based on product type, application, end- use industry, and region. In terms of product type, the ammonium molybdate market can be segmented into ammonium orthomolybdate, ammonium molybdate tetrahydrate, ammonium octamolybdate, and others. Ammonium molybdate tetrahydrate is also known as ammonium heptamolybdate. It is manufactured by liberating ammonium upon heating ammonium orthomolybdate. In terms of application, the market can be divided into analytical reagent, fertilizers & micronutrient, catalyst, metals & ceramic, electroplating, corrosion inhibitor, pigment, and others. Ammonium molybdate is used in end-use industries such as chemical manufacturing, molybdate products, life science, research & laboratories, and others. Demand for ammonium molybdate is expected to be higher in the chemical manufacturing segment in the next few years. Increasing cost of raw materials and toxicity of ammonium molybdate are estimated to restrain the ammonium molybdate market. The compound is harmful for eyes, skin, kidneys, blood, and respiratory tract if swallowed or inhaled. Asia Pacific is estimated dominate the market in the near future. Industrial and economic growth in the region, and increase manufacturing capacities are boosting the ammonium molybdate market in Asia Pacific, particularly in China, Japan, and India. The ammonium molybdate market is anticipated to expand at a rapid pace in North America. 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Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Corrosion Controlling Chemicals (Pipe Lines)

Corrosion control solutions protect the lifetime and productivity of your assets by reducing equipment failure, maximizing production time, and reducing leaks and spills. By combining innovative chemistries, knowledgeable experts and continuous monitoring, we ensure the right chemical treatment program is implemented to solve your corrosion challenge. The global corrosion inhibitors market size was USD 5.99 billion in 2015 and is expected to show significant growth over the forecast period owing to rising metal processing, power generation, and construction sector. Corrosion inhibitors have been gaining popularity over the past few years, as it increases the service life of equipment by forming a protective layer on the surface. Increasing application in water treatment, power generation, refining, construction and mining industries will stimulate product demand over the next eight years.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Perfumery Chemicals (Synthetic & Natural)

Perfumeis a mixture of fragrant essential oils or aroma compounds, fixatives and solvents, used to give the human body, animals, food, objects, and living-spaces an agreeable scent. It is usually in liquid form and used to give a pleasant scent to a person's body. Ancient texts and archaeological excavations show the use of perfumes in some of the earliest human civilizations. Modern perfumery began in the late 19th century with the commercial synthesis of aroma compounds such as vanillin or coumarin, which allowed for the composition of perfumes with, smells previously unattainable solely from natural aromatics alone. Aroma chemicals, also known as fragrances and odorants are chemical compounds which consist of odor or smell. These compounds are volatile enough to travel through the olfactory system of the nose and cause odor. Unlike flavors which affect smell and taste, fragrances affect only smell. The nature of fragrances tends to be synthetic. Aroma chemicals can be found in food, wine, spices, essential oils, perfumes and fragrance oils. The Global Aroma Chemicals Market is accounted for $4.08 billion in 2016 and expected to grow at a CAGR of 6.8% to reach $6.48 billion by 2023. Factors like change in consumer preferences, healthy and green sustainability package among the consumers and growth in end user markets are boosting the market growth. High R&D cost and compliance with quality and regulatory standards will impede the market growth. Global market for aroma chemicals is expected to grow considerably owing to growing markets in Asia and South America. Growing demand for foods, cosmetics, personal care and household care products is expected to be the major driving factor for the growth of aroma chemicals market.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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