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Investment Opportunities & Business Ideas in Saudi Arabia- Identification and Selection of right Project, Thrust areas for Investment, Industry Startup and Entrepreneurship Projects

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.

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We can also prepare project report on any subject as per your requirement.

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Medical College with Hospital - Detailed Project Report, Profile, Business Plan, Trends, Market Research, Survey, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Economics, Working Capital Requirement, Plant Layout, Cost of Project

A medical college is meant to impart education of medical field to students to qualify them as doctors in different specialized disciplines so as to treat patients suffering from various ailments. Doctors with their dedicated spirit serve the nation at large by providing medication and treatment for eradication of diseases, which exchange health and add suffering to humanity. Normally a medical college is associated with a hospital. Hospitals provide the facilities of O.P.D. and admission for seriously ill, seriously injured, seriously burnt and pregnant ladies, causalities etc. Presently, every city or town in India has no. of private hospitals furnished with latest medical facilities available and with more qualified surgeons, physicians and specialist doctors. Even sometimes, they are furnished with more modern machines than those available in the nearby Government Hospital. These hospitals can be seen well crowded as they provide very good service at a smile. As they are run by privates very good medical care is provided by them. A private hospital is a place where one may get treatment from ordinary fever to a major surgery operation. As a matter of fact, no limitation has been made for the facilities available in a hospital. However, generally all private hospitals are provided with latest facilities and ultra modern machines. In a hospital, surgeons, physicians, E.N.T., specialists, children specialist, Eye-surgeon, psychologists and sex-specialist are essential.
Plant capacity: Total Students per Annum:150 Students Admitted/Annum 750 Beded HospitalPlant & machinery: Rs 2047 Lakhs
Working capital: -T.C.I: Cost of Project :Rs 10747 Lakhs
Return: 42.00%Break even: 42.00%
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Reclamation of Used Engine Oil by Alkali Refining Process(Caustic Soda)

Huge amounts of used lubricating oils from automotive sources are disposed of as a harmful waste into the environment. The cost and availability of oil and its products will significantly impact our quality of life, the stability of our environment, the health of national economies and even the relationships between nations. Now-a-days engine oil has become an important factor for automobile and other purposes and since the prices of all petroleum products have gone up, it has become extremely necessary to refine used engine oil which could be reused as original. Engine oil becomes contaminated with foreign material in service. In circulating systems, where a substantial quantity of oil is involved, it is desirable to maintain it as clean as possible to provide maximum working efficiency and to keep wear and damage of lubricated parts to a minimum. Reconditioning of used oil may be accomplished by a continuous by pass or batch methods or combination of these. In the continuous system the entire amount of the oil from main pressure line is continuously filtered. In the bypass system a fraction of the total is continuously filtered. Lubricating oil are used to reduce friction on our engine, protection against wear and tear, dust, carry away heat and prevent contamination. Over a period of time, properties of lubricating oils are adversely affected by contamination that we tend to prevent such as: soot, water, acids, dirt and fuel. The lubricating oil and grease market in India is of the order of about 4.6 mn tonne and is growing at around 4.5% annually. The moderate growth is paradoxically due to the supply of better quality of lubricants which have longer servicing capability. Therefore it is a good project to invest.
Plant capacity: Reclaimed Engine Oil :5000 Litres/DayPlant & machinery: Rs 49 Lakhs
Working capital: -T.C.I: Cost of Project:Rs 161 Lakhs
Return: 26.00%Break even: 57.00%
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Wheat Flour - 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

Wheat is grown in most parts of the world, from near-arctic to near-equatorial latitudes. It is the most important crop among the cereals by area planted and is followed in importance by corn, barley and sorghum. The amount of wheat traded internationally exceeds that of all other grains. Furthermore, the protein and caloric content of wheat is greater than that of any other food crop. Most wheat is consumed in the form of baked goods, mainly bread; therefore, wheat grains must be milled to produce flour prior to consumption. Wheat is also used as an ingredient in compound feedstuffs, starch production and as a feed stock in ethanol production. The purpose of the milling process is to break up the grains of wheat into flour (which comes from the centre of the grain, or endosperm), bran (the skin of the wheat), and pollard (the dusty material created during the grinding process).Whole meal flour is a blend of flour, bran and pollard in the proportions in which they occur in the grain. Wheat flour is a powder made from the grinding of wheat used for human consumption. More wheat flour is produced than any other flour. Wheat varieties are called "clean," "white," or "brown" if they have high gluten content, and they are called "soft" or "weak" flour if gluten content is low. Hard flour, or bread flour, is high in gluten, with 12% to 14% gluten content, and has elastic toughness that holds its shape well once baked. The flour milling industry is growing tremendously with rapid speed and that gives the chance to new entrepreneur to establish their start up unit. Few Indian Major Players are as under • Ambe Agro Inds. Ltd. • Ambuja Flour Mills Ltd. • Anirudh Foods Ltd. • Ankit India Ltd. • Annamallai Industries Ltd. • Aruppukottai Shri Ramalinga Roller Flour Mills Ltd. • Bannari Amman Flour Mill Ltd. • Brindavan Roller Flour Mills Ltd. • Century Flour Mills Ltd. • Delhi Flour Mills Co. Ltd. • Flour & Food Ltd. • Himanshu Flour Mills Ltd. • Jai Mata Foods Ltd. • K L R F Ltd. • Modern Flour Mills Pvt. Ltd. • Parakh Agro Inds. Ltd. • Patiala Flour Mills Co. Ltd. • Puja Food Products Ltd. • S K Roller Flour Mills Ltd. • Sakthi Murugan Agro Foods Ltd. • Shakti Bhog Foods Ltd. • U F M Industries Ltd. • Vrundavan Agro Inds. Ltd. • Zest Gartex Ltd.
Plant capacity: 150 MT/DayPlant & machinery: Rs 385 Lakhs
Working capital: -T.C.I: Cost of Project:Rs 904 Lakhs
Return: 27.00%Break even: 58.00%
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Solar Power Plant - 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

Renewable energy in India comes under the purview of the Ministry of New and Renewable Energy. India was the first country in the world to set up a ministry of non-conventional energy resources, in early 1980s. India's cumulative grid interactive or grid tied renewable energy capacity (excluding large hydro) has reached 33.8 GW, of which 66% comes from wind, while solar PV contributed nearly 4.59% along with biomass and small hydro power of the renewable energy installed capacity in India. Fossil fuel reserves are diminishing rapidly across the world, intensifying the stress on existing reserves day-by-day due to increased demand. Not only that, fossil fuels, presently contributing to 80% of world primary energy, are inflicting enormous impacts on environment. Climatic changes driven by human activities, in particular the production of greenhouse gas emissions, directly impact the environment. Energy sector has a key role in this regard since energy during its production, distribution and consumption is responsible for producing environmentally harmful substances. A secure and accessible supply of energy is thus very crucial for the sustainability of modern societies. There is an urgent need for a quicker switch over of energy systems from conventional to renewable that are sustainable and can meet the present and projected world energy demand. Solar power is one of the most promising renewable. It is reliable and less vulnerable to changes in seasonal weather patterns. Hydrogen, in the capacity of energy vector, is expected to be the optimum solution for intermittency and storage of energy produced by renewable. Thus, coupled with hydrogen as an energy carrier, solar energy has a large potential to become the fuel of the future. The present study is aimed to explore such potential for India in 2025. India is expected to have a high growth rate in energy demand over the coming years due to its huge population and rapid economic development. Few Indian Major Players are as under • Bhagyanagar India Ltd. • C P E C Ltd. • Central Electronics Ltd. • Environ Energy-Tech Services Ltd. • Epic Energy Ltd. • Gujarat Mineral Devp. Corpn. Ltd. • H B L Power Systems Ltd. • Harsha Engineers Ltd. • I T I Ltd. • Indian Metals & Carbide Ltd. • Indosolar Ltd. • J S W Green Energy Ltd. • Jai Bharat Gum & Chemicals Ltd. • Jain Irrigation Systems Ltd. • Moser Baer Solar Ltd. • N E P C India Ltd. • P L G Power Ltd. • Rajasthan Electronics & Instruments Ltd. • Reliance Industries Ltd. • Shurjo Energy Pvt. Ltd. • Star Delta Transformers Ltd. • Surana Solar Ltd. • Surana Telecom & Power Ltd. • Swelect Energy Systems Ltd. • Titan Energy Systems Ltd. • Ujaas Energy Ltd. • Usha (India) Ltd. • Websol Energy System Ltd. • X L Energy Ltd.
Plant capacity: Solar Power 10 MW: 60,000 KWH/ DayPlant & machinery: Rs 5512 Lakhs
Working capital: -T.C.I: Cost of Project : Rs 8447 Lakhs
Return: 5.68%Break even: 53.14%
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Solar Power Plant - 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

Renewable energy in India comes under the purview of the Ministry of New and Renewable Energy. India was the first country in the world to set up a ministry of non-conventional energy resources, in early 1980s. India's cumulative grid interactive or grid tied renewable energy capacity (excluding large hydro) has reached 33.8 GW, of which 66% comes from wind, while solar PV contributed nearly 4.59% along with biomass and small hydro power of the renewable energy installed capacity in India. Fossil fuel reserves are diminishing rapidly across the world, intensifying the stress on existing reserves day-by-day due to increased demand. Not only that, fossil fuels, presently contributing to 80% of world primary energy, are inflicting enormous impacts on environment. Climatic changes driven by human activities, in particular the production of greenhouse gas emissions, directly impact the environment. Energy sector has a key role in this regard since energy during its production, distribution and consumption is responsible for producing environmentally harmful substances. A secure and accessible supply of energy is thus very crucial for the sustainability of modern societies. There is an urgent need for a quicker switch over of energy systems from conventional to renewable that are sustainable and can meet the present and projected world energy demand. Solar power is one of the most promising renewable. It is reliable and less vulnerable to changes in seasonal weather patterns. Hydrogen, in the capacity of energy vector, is expected to be the optimum solution for intermittency and storage of energy produced by renewable. Thus, coupled with hydrogen as an energy carrier, solar energy has a large potential to become the fuel of the future. The present study is aimed to explore such potential for India in 2025. India is expected to have a high growth rate in energy demand over the coming years due to its huge population and rapid economic development. Few Indian Major Players are as under • Bhagyanagar India Ltd. • C P E C Ltd. • Central Electronics Ltd. • Environ Energy-Tech Services Ltd. • Epic Energy Ltd. • Gujarat Mineral Devp. Corpn. Ltd. • H B L Power Systems Ltd. • Harsha Engineers Ltd. • I T I Ltd. • Indian Metals & Carbide Ltd. • Indosolar Ltd. • J S W Green Energy Ltd. • Jai Bharat Gum & Chemicals Ltd. • Jain Irrigation Systems Ltd. • Moser Baer Solar Ltd. • N E P C India Ltd. • P L G Power Ltd. • Rajasthan Electronics & Instruments Ltd. • Reliance Industries Ltd. • Shurjo Energy Pvt. Ltd. • Star Delta Transformers Ltd. • Surana Solar Ltd. • Surana Telecom & Power Ltd. • Swelect Energy Systems Ltd. • Titan Energy Systems Ltd. • Ujaas Energy Ltd. • Usha (India) Ltd. • Websol Energy System Ltd. • X L Energy Ltd.
Plant capacity: Solar Power 10 MW:60,000 KWH/ DayPlant & machinery: Rs 5512 Lakhs
Working capital: -T.C.I: Cost of Project :Rs 8447 Lakhs
Return: 5.68%Break even: 53.14%
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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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Bio-Degradable Plastic Polymer from Corn - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Polymer, that are cheaper and lighter than many materials, are being favored for industrial and commercial applications. Plastics are necessary in daily life experience, using them in household appliances, cars, packages ex. One of three of plastic raw materials being used by package sector. The main environmental problem of conventional plastics are, degrading in nature for centuries and produced by nonrenewal natural sources like petroleum, coal and natural gas. Today, being recycling and environmentally friendly facilities come into prominence for plastics. Biodegradable polymers based on renewable feedstock have started to replace conventional polymers produced from fossil fuel. Plastics, that are cheaper and lighter than many materials, are being favored for industrial and commercial applications. Plastics are necessary in daily life experience. We are using them in household appliances, cars, packages etc. ? Increased consumer preference towards biodegradable materials coupled with the growing environmental concern is expected to boost the overall growth of the biodegradable packaging market. Most of the major packaging companies are now shifting their focus towards biodegradable packaging in order to achieve greater consumer satisfaction. In addition, to differentiate their products from that of the competitors many manufacturers are now shifting towards biodegradable packaging. The biodegradable packaging market is expected to witness the fastest growth than that compared to the plastics packaging market. Few Indian Major Players are as under • B A S F India Ltd. • Lactochem Ltd. • Sangita Bio-Chem Ltd. • Solvay Pharma India Ltd.
Plant capacity: Bio-Degradable Plastic Polymer 33.33 MT/DayPlant & machinery: Rs 5547 Lakhs
Working capital: -T.C.I: Cost of Project : Rs 7170 Lakhs
Return: 22.13%Break even: 42.83%
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Blood Bags - 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

Blood bag is a disposable bio-medical device used for collection, storage, transportation and transfusion of human blood and blood components. The system consists of a single or multiple bag connected with tubings, needle, needle cover, clamp etc. The Blood Bags are made of plastic-material, which are compatible with blood. The introduction of flexible PVC bags for the storage of blood and its components totally replaced the use of glass bottles because of its numerous advantages. Blood bags enable better separation of blood components in a more sterile manner and safer transfusion of components. This has led to increasingly wider use of blood component therapy than whole blood use, thus enabling more effective use of the scarce donor blood that is available. Blood Bags can successfully replace the use of glass bottles for collection storage, transportation and transfusion of blood and blood components since bottles require exhaustive cleaning, rinsing and autoclaving procedures and there are chances of breakage at any stage. Further, use of disposable bags eliminates the possibility of any contamination. Blood bags contain an anticoagulant solution and a red blood cell preservative solution, and are used in blood banks which both collect donor blood and separate blood components. Blood bags are made from imported, medical grade PVC granules & sheets in Class 10000 Clean room environments. Increase in the healthcare facilities will further act as a driver for the growth of medical devices sector in India. The blood bag market is expected to grow further in the coming years owing to continuous developments and rising demand for better blood collection technology. As a whole it is a good project for new entrepreneurs to invest.
Plant capacity: 10000 Nos./DayPlant & machinery: Rs 176 Lakhs
Working capital: -T.C.I: Cost of Project:Rs 1106 Lakhs
Return: 25.24%Break even: 69.15%
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Petroleum Jelly - 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

Petroleum jelly or petrolatum was discovered as a paraffin-like material coating oil rigs. Since then, it has been used in various ointments and as a lubricant. Petroleum jelly is mixture of mineral waxes and oils that together lock moisture in skin, moisturizing it to repair and relieve dryness. They are stabilized in such fashion that the oil appears to form the internal phase, whereas the wax compound forms the external phase. Petroleum jelly is made by the waxy petroleum material that formed on oil rigs and distilling it. The lighter and thinner oil-based products make up petroleum jelly, also known as white petrolatum or simply as petrolatum. Robert Chesebrough is the chemist who devised and patented this process. Basically, the crude material undergoes vacuum distillation. The still residue is then filtered through bone char to yield petroleum jelly. At room temperature, petroleum jelly is an odourless semi-solid which consists of a mixture of hydrocarbons. Petroleum jelly has fibrous or grease like structure and also possess discreet drop point and penetration value . Petroleum jelly may be considered as microcrystalline wax which has absorbed the oil, resulting in an amorphous jelly like mass. It is mostly available in two colours namely white and yellow. Petroleum jelly is hugely versatile, and it’s used all over the world to protect and heal dry skin, from dry, cracked hands to hard skin on heels, as well as for beauty purposes, like softening the lips or highlighting the cheekbones. Application sector Petroleum jelly is an ingredient in many cosmetics and lotions. Originally it was marketed as a burn ointment. Petroleum jelly also may be applied to dry or chapped skin to seal in moisture. A variation known as red veterinary petroleum confers some protection against UV (ultraviolet) exposure and has been used as a sunscreen. • Pharmaceuticals/ Cosmetics industry • Jelly filled cable • Leather industry • Rubber industry • Other miscellaneous application including rust prevention etc. Petroleum jelly white / yellow IP uses are as follows: • Skin ointment / Skin cream • Hair Vaseline • Pain balm • Cold cream and cosmetic preparations • Ophthalmic ointment • Vaporub Ointment Indian demand: Various Cosmetics and pharmaceuticals are used by the large number of people in general for wounds, cuts, burns, skin diseases. In today’s business word, more and cosmetics industries are coming up and thereby increasing the demand for the raw materials like petroleum jelly. Hence it can be assumed that the petroleum jelly is having very good market potential in view of development of cosmetic & pharmaceutical industry in India. Present demand for petroleum jelly including export demand is around 70000 metric tonne per annum Growth rate in demand for 2021: 7% per annum Indian producers include the following: • Eastern Petroleum (P) Ltd., Maharashtra • Mahatha Petroleum (P) Ltd., Tamilnadu • Panama Petrochem Gujarat • Gandhar Oil Refinery Maharashtra • Asian Oil Company Maharashtra • Bhakti Petrochem P Ltd., Maharashtra • Unicorn Petroleum Inds P Ltd., Maharashtra • Kim Chemicals Ltd , Maharashtra Global petroleum jelly market Global supplies of microcrystalline wax and petroleum jelly continue to shrink due to the reduction in API Group I and specifically base oil Group I production capacity. On the other hand, demand for microcrystalline wax and petroleum jelly continues to be strong, helped by the recovery in many parts of the world. The resultant rise in prices has motivated wax de oilers, blenders, specialty wax producers to seek alternatives. The interplay of supply and demand drivers and the penetration of alternate materials will set the future direction of this product market. While natural and organic products account for a small percentage of the total skin care market, their share is growing faster than the general market.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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PE Wax Emulsion - 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

Waxes are among the oldest worked materials used by humans. Their value as versatile construction materials ("man's first plastic") was discovered very early. Today, waxes are used mostly as additives and active substances. The use of waxes is expected to increase in the future because of their generally favourable toxicological and ecological properties. The word "wax" usually refers to a variety of organic substances that are solid at ambient temperature but become free-flowing liquids at slightly higher temperatures. The chemical composition of waxes is complex, but normal alkanes are always present in high proportion and molecular weight profiles tend to be wide. The main commercial source of wax is crude oil but not all crude oil refiners produce wax. "Mineral" wax can also be produced from lignite. Plants, animals and even insects produce materials sold in commerce as "wax." Wax emulsions are now well established and extensively used in aqueous formulations such as coatings, inks and OPVs, textile and leather treatments, polishes, paper and cardboard coatings, etc. These ready-to-use emulsions can be easily incorporated by simple mixing. Their very fine particle size ensures an intimate and homogeneous incorporation within other ingredients of the formulation, maximizing the required effect(s). Wax emulsions can be stabilized by either a steric mechanism (using with non-ionic emulsifiers) or by an electrostatic mechanism (using ionic emulsifiers, most often anionics). Combining anionic and non-ionic emulsifiers gives the emulsion an optimum stability because wax particles are protected through both stabilization mechanisms referred to as the electro-steric stabilization mechanism. In addition to giving more flexibility in formulating, each stabilization mechanism has not only its own advantages and disadvantages but also significantly impacts on the overall formulation. Polyethylene wax is used in many applications to improve processing and end product properties. It is widely used in plastic, rubber and electrical industry, up to in ink, paint, detergent and chemical engineering industry, wax becomes more important product then ever in general industrial field as raw material additive improving its efficiency. As a whole it is a good project for new entrepreneurs to invest.
Plant capacity: 20 MT/DayPlant & machinery: Rs 97 Lakhs
Working capital: -T.C.I: Cost of Project : Rs 343 Lakhs
Return: 26.90%Break even: 58.00%
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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
  • 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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