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Chemicals (Organic, Inorganic, Industrial) Projects

The chemical industry is a highly versatile segment in the overall industrial economy of India. It is one of the oldest domestic industries in India, contributing significantly to both the industrial and economic growth. Over the past ten years, there have been breath-taking changes in the chemical industry, especially in India.

The chemical industry has been linked with almost every other industrial activities starting from food processing to rubber, leather, and textile processing.  There is, in fact, hardly any segment where chemicals do not feature. 

The industry is broadly segmented into four major categories-Inorganic Chemicals, Organic Chemicals, petrochemicals based specialities, and agro oriented chemicals and a feasibility study of chemical industrial projects.

The chemical industry currently produces nearly 70,000 commercial products, ranging from cosmetics and toiletries, to plastics and pesticides.Indian chemical companies have prominence in the global market. Global chemical companies present in India have benefited from many opportunities as a result of favorable factors such as skilled workers, low manufacturing cost and strong domestic demand.

The Agro-oriented chemicals like guar gum, starch, citric acid, sorbitol, yeast and others, valued at over Rs 1450 billion, apart from contributing 14% of the industrial sector’s contribution to GDP, industrial chemicals have a 10% share in the overall exports of India. It is spread over some 2000 units, mostly in the small scale sector. Nonetheless, over a third of the market is controlled by top 10 players.

Petrochemicals, pharmaceuticals, synthetic fibres, fertilizers and pesticide, paints and dyestuffs constitute over 85% of the market. The remaining 15% comprises a wide range of chemical intermediate and industrial or speciality chemicals which have a market of over Rs 230 billion (including imports of about Rs 15 billion).

The chemical industry remains concentrated in the western region, with a near 48% share of investment. In the western region, Gujarat makes the largest contribution to the chemical industry’s production activity. The Indian market for petrochemicals will increase four times in the next ten years. It will witness a sustained double-digit growth rate in the coming years.

India’s speciality chemicals market represents around 24% of the total chemical industry Exports of speciality chemicals from India and are poised to grow from US$4 billion in 2007 to US$13 billion in 2013, representing a growth rate of 22%.The speciality chemicals industry in India is expected to grow at a growth rate of 15%, almost double the growth of the global speciality chemicals industry.

With India being an emerging economy with high growth rates and a strong domestic demand the chemical industry in India will be one of the most booming industries in the coming years.

How to determine Feasibility Study for Industrial Projects?

The feasibility study is the study of the market’s pivotal point to determine the viability of an industrial project. It explains industrial based projects, external influencers such as legal obligations, and required investment and expected returns. The study helps in the collection of information related to the industrial plan and economy in general to determine the probable performance of the project.

Here are the primary points in determining the feasibility of chemical plant projects.

1. Target Market Research

Project reports on the market are the key factors to consider before entering into any project. The project owners have to conduct a detailed survey about the target market to determine the potential profit he is likely to get from the project.

Also, market research helps in identifying the availability of raw material, perfect product design, and product prices through understanding consumer behaviors. On market research, the project owner tends to conduct surveys pertain the product, supply and demand, product price, competition, and market distribution.

2. Technical and Procedural details

A technical study regards defining industry concerns and economies of scale and the sources of technology. The study covers the target location of the project, machinery and other assets required to run the industry, waste treatment, sources of raw materials, and participation agreement, which is licensing, taxation and other legal contracts.

3. Costs and Financial Preparedness

It regards the collection of financial requirements, analysis, and estimation of investment and operation cost of a project.

Feasibility study for a chemical industrial project influences the creation of a business plan for a chemical company, which is vital in the implementation ofchemical business ideas.

Products used in Inorganic Chemicals Manufacturing Process

The chemicals produced in the Inorganic Chemicals Manufacturing Process are intermediate products that are used as inputs in industrial and manufacturing processes. They are those that are not carbon-based; that is, they are minerals that lack carbon atoms, unlike organic compounds.

The inorganic chemicals industry consists of two segments–basic inorganic chemicals such as potassium, nitrogen and phosphorus products, sulfates, alkalis, among others, and specialty chemicals such as catalysts, pigments, and fuels.

1. Basic Inorganic Chemicals

They are chemicals that manufacture inorganic products such as plastics and fertilizers such as potassium nitrates. They are produced in large quantities. The basic inorganic compound industry is characterized by its high degree of fragmentation across areas with a large volume of production.

They also have a high energy cost, low import tariffs, and infrastructural impediments, which significantly affects their competitiveness.

2. Specialty Inorganic Chemicals (SIC)

They are chemicals with diverse and complex production processes. They are manufactured through a combination of simple process steps such as chemical reaction processes, and equipment, which are modified to create the desired specialty product.

Specialty inorganic chemicals are characterized by the quality and purity of raw materials. The characteristics are the key factors influencing the environmental impacts of products produced as there are opportunities to reuse or recycle these products.

 

 

Reasons for buying our reports:

This report helps you to identify a profitable project for investing or diversifying into by throwing light to crucial areas like industry size, market potential of the product and reasons for investing in the product

This report provides vital information on the product like its characteristics and segmentation

This report helps you market and place the product correctly by identifying the target customer group of the product 

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

The report provides a glimpse of government regulations applicable on the industry

The report provides forecasts of key parameters which helps to anticipate the industry performance and make sound business decisions.

 

Our Approach:

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

We use reliable sources of information and databases. And information from such sources is processed by us and included in the report


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.

We also offer self-contained Pre-Investment and Pre-Feasibility Studies, Market Surveys and Studies, Preparation of Techno-Economic Feasibility Reports, Identification and Selection of Plant and Machinery, Manufacturing Process and or Equipment required, General Guidance, Technical and Commercial Counseling for setting up new industrial projects on the following topics.

Many of the engineers, project consultant & industrial consultancy firms in India and worldwide use our project reports as one of the input in doing their analysis.

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.

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Acid Slurry (From Linear Alkyl Benzene)

Acid slurry or alkyl benzene sulphonate is prepared by sulphonation of Linear Slkyl Benzene (LAB) with a suitable sulphonating agent. Batch sulphonation with either diluted SO2 gas or concentrated sulphuric acid or a mixture of 20% oleum and 98% sulphuric acid or oleum alone. Linear alkyl benzene is the raw material used to manufacture linear alkyl benzene sulfonate (LABSA), an active ingredient in the formulation of detergents. LABSA eliminates dirt by its physicochemical mechanism and it is one of the surfactants most widely used in liquid cleaners and in powder. LABSA has been used for more than 45 years in the manufacture of detergents and it is known for its excellent quality/price ratio. The global linear alkyl benzene (LAB) market is expected to register a CAGR of 3.15% during the forecast period, 2018 - 2023. Linear alkyl benzene, an organic compound, is an intermediary in the production of surfactants, which is mainly used in detergents. LAB removes oil and fatty soil absorbed into the fabric, textile or any other material. LAB is mostly used to manufacture LAS to produce detergents, house cleaners, fabric softeners, and soap bars. Linear alkylbenzene sulfonic acid (LABSA) is the largest-volume synthetic surfactant because of its relatively low cost, good performance. LAB is straight chained and can be dried to a stable powder, which are biodegradable. LAB is also required for the manufacturing of LABSA and linear alkylbenzene sulfonate (LAS), which comprises the largest global share in synthetic surfactant sector. About 83-87% of LAS is being used in household detergents, dishwashing liquids, laundry liquids, laundry powders, and other household cleaners. Heavy-duty laundry liquids are used for blankets, carpets, and bed-sheets while light-duty laundry liquids are used for regular clothes. Industrial, institutional, and commercial cleaners account for most of the other applications.
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Return: 1.00%Break even: N/A
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Acetic Anhydride

Acetic anhydride, or ethanoic anhydride, is the chemical compound with the formula (CH3CO) 2O. Commonly abbreviated Ac2O, it is the simplest isolable anhydride of a carboxylic acid and is widely used as a reagent in organic synthesis. It is a colorless liquid that smells strongly of acetic acid, which is formed by its reaction with moisture in the air. Acetic anhydride is manufactured by carbonylation of acetate. It is also manufactured by reaction of ketene with acetic acid. Acetic anhydride is also manufactured via recovered acetic acid from processes related to cellulose acetate. Acetic anhydride is colorless and has a pungent odor similar to acetic acid. Acetic anhydride is majorly consumed in cellulose acetates. The market for acetic anhydride is mainly driven by huge demand from cigarette tow market. Cellulose acetate is mainly consumed in cigarettes. Acetic anhydride is also used in fragrances & flavors, dyes and textile industry. Acetate cellulose in mainly used in acetate textile fibers thus driving the demand for acetic anhydride. The global acetic anhydride market is expected to witness a CAGR of approximately 4.2% during the forecasted period.
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Return: 1.00%Break even: N/A
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Chromic Acid

The term chromic acid is usually used for a mixture made by adding concentrated sulfuric acid to a dichromate, which may contain a variety of compounds, including solid chromium trioxide. This kind of chromic acid may be used as a cleaning mixture for glass. Chromic acid may also refer to the molecular species, H2CrO4 of which the trioxide is the anhydride. Chromic acid features chromium in an oxidation state of +6 (or VI). It is a strong and corrosive oxidising agent. The global chromium market size is expected to reach USD 16.55 billion by 2025, registering a 2.7% CAGR during the forecast period. Increasing demand from the stainless steel industry has been a key factor driving market growth globally. Robust growth of various end-use industries in Asia Pacific is fueling stainless steel demand and, in turn, demand for chromium.
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Return: 1.00%Break even: N/A
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Chromic Acid

The term chromic acid is usually used for a mixture made by adding concentrated sulfuric acid to a dichromate, which may contain a variety of compounds, including solid chromium trioxide. This kind of chromic acid may be used as a cleaning mixture for glass. Chromic acid may also refer to the molecular species, H2CrO4 of which the trioxide is the anhydride. Chromic acid features chromium in an oxidation state of +6 (or VI). It is a strong and corrosive oxidising agent. The global chromium market size is expected to reach USD 16.55 billion by 2025, registering a 2.7% CAGR during the forecast period. Increasing demand from the stainless steel industry has been a key factor driving market growth globally. Robust growth of various end-use industries in Asia Pacific is fueling stainless steel demand and, in turn, demand for chromium.
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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.
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Return: 1.00%Break even: N/A
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Ferrous Sulphate

Ferrous sulfate is mainly used as a precursor to other iron compounds. It is a reducing agent, and as such is useful for the reduction of chromate in cement to less toxic Cr(III) compounds. Historically ferrous sulfate was used in the textile industry for centuries as a dye fixative. It is used historically to blacken leather and as a constituent of ink. The preparation of sulfuric acid ('oil of vitriol') by the distillation of green vitriol (Iron(II) sulfate) has been known for at least 700 years. Ferrous Sulphate Market is predicted to grow at a CAGR of 10-15% from 2018 to 2023.
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Return: 1.00%Break even: N/A
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Manufacturing of Sodium and Ammonium Molybdate

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. Tags Sodium Molybdate, Molybdenum Compounds, Sodium Molybdate Food Grade, Molybdate Manufacturing Company, Sodium Molybdate Production, Sodium Molybdate Dihydrate Production, Sodium Molybdate Production Process, Sodium Molybdate Dihydrate (Smc), Manufacture Process for Ammonium Molybdate and Sodium Molybdate, Ammonium Molybdate, Chemical Compound, Sodium Molybdate (Na2moo4), Sodium Molybdate Solution, Molybdenum Industry, Sodium Molybdate (Vi), Preparation of Ammonium Molybdate Solution, Ammonium Orthomolybdate, Ammonium Heptamolybdate, Process for Producing Ammonium Molybdate, Ammonium Molybdate Production Technology, Ammonium Molybdate Production, Method for Producing Ammonium Heptamolybdate, Ammonium Molybdate(Vi), Ammonium Molybdate Solution Formula, Ammonium Molybdate Uses, Production of Ammonium Molybdate, Ammonium Molybdate, Preparation of Industrial Ammonium Molybdate, Ammonium Molybdate Solution, Ammonium Molybdate Manufacture, Ammonium Molybdate Production project ideas, Projects on Small Scale Industries, Small scale industries projects ideas, Project Report on Ammonium Molybdate Production Industry, Detailed Project Report on Sodium Molybdate Production, Project Report on Sodium Molybdate Production, Pre-Investment Feasibility Study on Sodium Molybdate Production, Techno-Economic feasibility study on Ammonium Molybdate Production, Feasibility report on Ammonium Molybdate Production, Free Project Profile on Sodium Molybdate Production, Project profile on Sodium Molybdate Production, Download free project profile on Ammonium Molybdate Production
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Profitable Project Investment Opportunity in Production of Polyanionic Cellulose (PAC)

Profitable Project Investment Opportunity in Production of Polyanionic Cellulose (PAC) The market is expected to expand at 3.52% CAGR over the period between 2016 and 2022. Polyanionic cellulose, or (PAC), is a safe thickening agent. PAC, a water soluble anionic polymer derived from cellulose, is comprised of the woody parts and cell walls of plants. It is chemically modified from natural cellulose and obtained water soluble cellulose ethers. PAC is used for many different technical applications. These uses are based mainly on its reaction with water content in the finished product. It is used alone or in conjunction with other components in the system to create thickening, water-binding, suspension, stabilizing and emulsifying characteristics. Widely used in Oil drilling fluid control additives, especially in salt water wells and offshore drilling applications. It is a combined filtration controller and minimal viscosifier in fresh and salt water base drilling systems. It is ideal in low solid mud, designed for fast penetration. Uses: • Polyanionic Cellulose in Food Production Polyanionic Cellulose is widely used as stabilizer, thickener in food production. As stabilizer, thickener: in Jelly, ice cream, canned to stabilize. • Polyanionic Cellulose in Beverage Polyanionic Cellulose is widely used as stabilizer, thickener in beverage. As stabilizer, thickener: in Juice, gravy, vegetable juice to stabilize. • Polyanionic Cellulose in Pharmaceutical Polyanionic Cellulose is widely used as emulsifier, stabilizer in Pharmaceutical. As emulsifier, stabilizer: in injections and tablets to bond and become a mask. • Polyanionic Cellulose in Cosmetics • Polyanionic Cellulose in Agriculture/Animal Feed • Polyanionic Cellulose in Other Industries Polyanionic Cellulose is widely used as Flocculants, chelating agents, emulsifiers, thickeners, water retention agents, sizing agents and film-forming material in various other industries. As Flocculants, chelating agents, emulsifiers, thickeners, water retention agents, sizing agents and film-forming material: In electronics, pesticides, leather, plastics, printing, ceramics and household chemical industry. PAC, short for polyanionic cellulose, is a kind of water-soluble cellulose ether derivative made from natural cellulose by chemical modification, and an important kind of water-soluble cellulose ether. Usually the sodium salt of Polyanionic Cellulose is in application and widely used in petroleum drilling, especially in salt well and offshore oil drilling. Polyanionic Cellulose is soluble into water to form thick liquid, and it widely used in water-base drilling fluid so as to enhance the drilling fluid viscosity and control the fluid loss. Usually the sodium salt of Polyanionic Cellulose is in application and widely used in petroleum drilling, especially in salt well and offshore oil drilling. Polyanionic Cellulose used in the fracturing fluid, Polyanionic Cellulose can efficiently carry ‘the filler’ into the cracks of well, establish the permeability pathway, which can effectively control the fluid into the well structure, reduce the fluid loss, and reduce the pressure drop. Ultra-high viscosity products can replace guar gum, reducing production costs. In the shape of white to light yellow powder or particles, Polyanionic Cellulose is tasteless, nontoxic, strong in hygroscopicity, and freely soluble in cold and hot water. Polyanionic Cellulose polymer has excellent heat-resistant stability, salt tolerance and strong antibacterial activity. The slurry or fluid prepared from the product has better fluid loss reducing capability, rejection capability and higher temperature tolerance. Polyanionic Cellulose is widely used in petroleum drilling, especially in salt well and offshore oil drilling. PAC is an indispensable product for drilling mud making. It is high purity product; the water solution of this white powder is transparent and viscid. As water-soluble polymer, PAC dissolves immediately in cold/hot water and can be used as a thickening agent, rheology controller, bond, stabilizer, colloid protector, suspending agent, and filtrate reducer. PAC is a good drilling mud additive and also an important material for confecting well liquid, a high mud volume product that featured high acid-resistance and salt-resistance ability. PAC is a good filtrate reducer with the capacity of increasing viscosity and anti-high temperature (150°C) in the freshwater, seawater, or even saturated brine well-completion liquid. PAC is suitable for confecting the completion fluid with these 3 kinds of water above. Polyanionic cellulose (PAC) is a type of water-soluble cellulose ether derivative manufactured by the chemical modification of natural cellulose. It is a vital type of water-soluble cellulose ether. Polyanionic cellulose finds important applications in offshore exploration & production, drilling & salt well operations in the upstream oil & gas industry. It is a white or yellowish, odorless powder, which is hygroscopic, tasteless, & non-toxic. It is water-soluble at both low as well as high temperatures, and forms a thick liquid when dissolved in water. PAC displays high stability in high temperature applications and exhibits high resistance to salty environments as well. It has also been found to possess anti-bacterial properties. Polyanionic cellulose slurry displays superior fluid loss reducing capability, rejection capability and higher temperature tolerance in various applications. Furthermore, polyanionic cellulose finds applications across a diverse range of industries for a wide range of uses apart from the oil & gas industry. For instance, food & beverage, pharmaceutical, chemical, plastic and polymer are some of the end use industries worth noting. In recent times, there has been a rise in the demand for polyanionic cellulose from the fast growing food & beverage industry. This is so because polyanionic cellulose has demonstrated to be more safe vis-à-vis other chemicals, as a food additive, thereby gaining preferential use. Polyanionic cellulose has also been finding increased usage in water purification processes in the food & beverage industry. It is also being widely used as a stabilizer & thickener in food production. For instance, jelly products & ice creams are stabilized & thickened to a large extent with the use of polyanionic cellulose (PAC). PAC is also advantageous due to its compatibility to be canned & stored for extended periods of time, thereby becoming a popular choice as a food stabilizer. It is also being increasingly used to stabilize gravies and fruit & vegetable juices. The rapid growth of the food & beverages industry has also been contributing to the market growth of polyanionic cellulose at a global level. In the pharmaceutical industry, polyanionic cellulose has been gaining importance as an emulsifier & a stabilizer in the manufacture of injectable medicines & tablets due to its effective bonding properties. The PAC is having good demand in the domestic & international markets. The present domestic market size is about Rs. 300 crores annually & likely to grow at 9% per annum. Most of the current domestic demand is met by import mainly from China & to some extent from Europe. The proposed facility will reduce the import demand from the other countries. On the basis of product type, the polyanionic cellulose market can be segmented as follows: Low viscosity polyanionic cellulose, Regular viscosity polyanionic cellulose, High viscosity polyanionic cellulose, extra high viscosity polyanionic cellulose. On the basis of end use, the polyanionic cellulose market can be segmented as follows: Oil & gas, Food & beverage, Pharmaceutical, Agrochemical, Electronics, Leather processing, Chemical, Printing, Plastic & polymer, Ceramic, Others. The market is expected to expand at 3.52% CAGR over the period between 2016 and 2022. Tags Polyanionic cellulose, Polyanionic Cellulose Manufacture, PAC Manufacturing, Polyanionic Cellulose (PAC), Polyanionic Cellulose Production Process, Manufacturing Process of Polyanionic cellulose, Polyanionic Cellulose Chemical, Applications and Uses of Polyanionic Cellulose, Polyanionic Cellulose Manufacturing Process, Polyanionic Cellulose Industry, Polyanionic Cellulose Low Viscosity, PAC Low Viscosity, Polyanionic Cellulose (PAC) Drilling Additive, Polyanionic Cellulose Manufacture in India, Polyanionic Cellulose (PAC) Industry, Polyanionic Cellulose UL –PAC HV for Drilling Fluid, polyanionic cellulose uses, PAC (Polyanionic Cellulose), Drilling Fluids and Mud Chemicals Manufacture, Project Report on Polyanionic Cellulose Manufacturing Industry, Detailed Project Report on Polyanionic Cellulose Production, Project Report on Polyanionic Cellulose Production, Pre-Investment Feasibility Study on Polyanionic Cellulose Production, Techno-Economic feasibility study on Polyanionic Cellulose Production, Feasibility report on Polyanionic Cellulose Production, Free Project Profile on Polyanionic Cellulose Production ,Project profile on Polyanionic Cellulose Production, Download free project profile on Polyanionic Cellulose Production
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Production of Gallic Acid from Tannic Acid

Production of Gallic Acid from Tannic Acid Gallic acid is an organic acid found in a variety of foods and herbs that are well known as powerful antioxidants. Foods and herbs such as blueberries, walnuts, apples, flaxseeds, tea leaves, oak bark, watercress, flax seed and tea all contain Gallic acid. Gallic acid is also found in gall nuts, sumac, witch hazel, watercress, oak bark, and a variety of other plants and herbs. Gallic acid is also found as part of tannins, which are astringent, bitter plant polyphenols. Its supplements are available as capsules, ointments and liquid extracts, and have been used traditionally to treat a variety of ailments. The form and dosage depend on the age of the patient and condition being treated. Gallic acid supplements are generally safe to use, although they may interfere with certain blood pressure medications. It is important to consult a doctor before using them to avoid possible adverse reaction and drug interaction. Gallic acid can be bought as a supplement as well, specifically as capsules, liquid extracts, and even ointments. The supplement form of Gallic is not known to have any harmful side effects, though they can negatively interact with anti-hypertensive medications when taken in excess. It is used in the pharmaceutical industry as a standard for determining the phenol content (a large group of several hundred chemical substances) of various analytes by the Folin-Ciocalteau assay. Gallic acid, a product of tannin degradation, finds application in various fields including biological activities such as antibacterial, antiviral and analgesic. The work was undertaken to produce gallic acid from banana flower stalk and coir pith using fungal system isolated from soil of different places. Optimization of incubaton period for maximum fungal biomass was found to be 6 days and 9 days in banana flower stalk and coir pith amended broth respectively. Five fungal strains were chosen for Gallic acid production and the results reveal that banana flower stalk was found to be the better substrate than coir pith in producing gallic acid and fungal strains C 1 and I2 were found to be better producers than I3, T1 and T3. Therefore it is suggested that agricultural wastes containing tannin could be considered as alternative substrates for Gallic acid production. Gallic acid has always been a molecule of industrial importance because of its applications in different sectors from healthcare and food to dyes, inks, paints and photography. It was used in preparation of high grade leather tannins, in the manufacture of inks, paints and colour developers and as a photosensitive resin in the semiconductor production. It is also used in testing of free mineral acids, dihydroxy-acetone and alkaloids. Gallic acid has emerged as a potential drug molecule of therapeutic value as antimicrobial, antioxidant; anticancer, antiviral, antitumor and as a radio protective agent. The major application of Gallic acid was a precursor for synthesis of broad spectrum antibacterial agent, trimethoprim. Gallic acid is used as a starting material for production of food additives like gallic acid esters and derivatives such as propyl gallate, octyl gallate, lauryl gallate and dodecyl gallate which reduce rancidity and work as preservatives. Propyl gallate, an antioxidant and antimicrobial agent is being used in hair products, adhesives and lubricants. Gallic acid is obtained by the hydrolysis of tannic acid with sulfuric acid. When heated above 220°C, gallic acid loses carbon dioxide to form pyrogallol, or 1, 2, 3-trihydroxybenzene, C6H3 (OH) 3, which is used in the production of azo dyes and photographic developers and in laboratories for absorbing oxygen. The Gallic Acid Market is highly competitive due to the presence of well-established key vendors. The availability RD facilities and investments by the market leaders ensure that product innovation is always given top priority. The vendors compete based on price, quality, branding, and customer service. Since there is little differentiation between the products offered in Gallic Acid Market, vendors are focusing on launching new technologies. Tags Gallic Acid Production, Production of Gallic Acid, Gallic Acid Production from Tannic Acid, Gallic Acid Uses, Gallic Acid Benefits, Gallic Acid, Gallic Acid Formation, Process for Preparation of Gallic Acid, Phenolic Acids (Gallic and Tannic Acids), Tannic and Gallic Acids, Gallic Acid from Tannic Acid, Tannic Acid, Preparation of Gallic Acid from Tannic Acid, Gallic Acid Production from Tannic Acid, Gallic Acid Industry, Production of Gallic Acid from Tannic Acid, Gallic Acid Manufacture, Gallic Acid Manufacturing, Project Report on Gallic Acid Production Industry, Detailed Project Report on Production of Gallic Acid from Tannic Acid, Project Report on Gallic Acid Production, Pre-Investment Feasibility Study on Production of Gallic Acid from Tannic Acid, Techno-Economic feasibility study on Production of Gallic Acid from Tannic Acid, Feasibility report on Production of Gallic Acid from Tannic Acid, Free Project Profile on Production of Gallic Acid from Tannic Acid, Project profile on Gallic Acid Production, Download free project profile on Production of Gallic Acid from Tannic Acid
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Sodium and Ammonium Molybdate

Ammonium heptamolybdate is the inorganic compound whose chemical formula is (NH4)6Mo7O24, normally encountered as the tetrahydrate. It is a colorless solid, often referred to as ammonium paramolybdate or simply as ammonium molybdate, although "ammonium molybdate" can also refer to ammonium orthomolybdate, (NH4)2MoO4, and several other compounds. Sodium molybdate is white diamond crystal. The production processes are as following: to roast molybdenum concentrate can obtain molybdenum trioxide, to use alkali liquor for sodium molybdate leaching, after filtration, concentrated, cooled, centrifuged and dried to obtain the finished product. Increasing use of sodium molybdate for afore mentioned applications is a growth factor for sodium molybdate consumption in near future. Sodium molybdate Market: Segmentation Global Sodium molybdate market can be segmented on the basis application, product type, and region. Global Sodium molybdate market is divided into the main region, Asia-Pacific, Western Europe, Eastern Europe region, Middle East Africa, Japan, and North America & Latin America. Thus, due to demand it is best to invest in this project. Few Indian major players are as under • Anand Agrochem India Ltd. • Associated Chemicals & Intermediates Ltd. • Indian Platinum Pvt. Ltd. • Multichem Specialities Pvt. Ltd. • Rubamin Ltd. • Tirupati Industries (India) Ltd. • Universal Chemicals & Inds. Pvt. Ltd.
Plant capacity: Ammonium Molybdate : 20 MT/Day Sodium Molybdate : 20 MT/DayPlant & machinery: 265 lakhs
Working capital: -T.C.I: Cost of Project : Rs 1985 lakhs
Return: 33.00%Break even: 57.00%
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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
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  • 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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