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BIOMASS GASIFICATION POWER PLANT - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Plant Layout

Bio-gas power plant is one of the sources of non-conventional energy. The biomass fuels are solid carbonaceous materials derived from living plants and animals. There is availability of waste material in our country, producer gas can be easily converted to energy. It can be used for providing electricity in nearer or furthest area. It can also be used to run plant and machineries in the industry. Economic development results in both qualitative and quantitative increase in the use of energy. In India, it is estimated that of the 68.3 million tonnes of carbon released annually due to biomass burning, fuel wood accounts for 82.3%. It will be profitable for any new entrant to invest in this field.
Plant capacity: 1000 KWh or 1 MW.Plant & machinery: 475 Lakhs
Working capital: -T.C.I: 691 Lakhs (W/c. One Month)
Return: 12.00%Break even: 66.00%
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BIOMASS BRIQUETTES FROM BIO WASTE - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Energy is the key factor in economic development of country. Biomass is a natural product of solar energy, and therefore, a renewable source of carbon and hydrogen, which are the basic constituents of energy and chemical products. Biomass should be termed not only as a potential renewable source of energy. Biomass that can be easily shredded and dispersed in water is good for anaerobic digestion whereas solid woody biomass with low moisture content is more suitable for thermo chemical route. Biomass briquettes is an ideal and best ready substitute to coal, fire wood, lignite etc. and easily replace these conventional fuels for heating steam generation etc. Briquettes solid fuel known as biomass can be used by the industrial, commercial and household domestic sectors. It is used in boilers of sugar mills, chemicals plants, paper mills, dying houses, food processing units, oil extraction units, vanaspati units etc. to generate steam and also for heating purpose. Biomass briquettes have calorific value saying/mm 3400-4200 kcal/kg. depending upon the raw materials used. The briquettes can be used in boilers for steam production or in gasifiers. There is very good demand of biomass briquettes. So new entrepreneurs venture into this field will be successful.
Plant capacity: 4800 MT/AnnumPlant & machinery: 36 Lakhs
Working capital: -T.C.I: 172 Lakhs
Return: 47.00%Break even: 37.00%
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FUEL BRIQUETTES FROM BIOMASS (Bio Coal Briquettes from Agricultural Cellulosic Waste) - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials

Energy is the key factor in economic development of country. As we approach the turn of century our requirements of energy will increase rapidly and vastly. Though there are several alternative conventional as well as non-conventional energy sources have been developed, still world is facing energy crisis day by day and it will rise in the coming future with rapid increase in population as well as industrialization. India is one of the big countries in the world having vast energy resources but these are not properly exploited to achieve maximum benefit and to check energy crisis. At present our country is fulfilling its demand by importing the crude petroleum oil from gulf countries. It has been expected that approximately 450 million tons of coal, 80 million tons of crude oil and 150 million tons of firewood will be required at that time to meet the domestic demand in our country. Among the non-conventional forms of energy, Bio-Energy offers vast potential under Indian conditions, due to the wide spectrum of biomass available in different agro-climatic regions of the country. It is estimated that over 120 million tons of agricultural and forest residues are generated annually. The biomass includes agro-industrial bi-products and animal refuse. These constitute tremendous waste problems in spite of their known high energy potential. Currently both storage and disposal only add to costs and hence affects productivity and profitability. At present most of these are not collected at all, or are burnt to reduce fire hazards or used inefficiently. Handling and transportation of these materials is difficult due to their low bulk densities and irregular sizes. These wastes, after processing can be converted into high density, high value solid fuel briquettes, known as "BIOCOAL" which can be efficiently used to replace coal and fire wood. Briquettes solid fuel known as biocoal can be used by the industrial, commercial and household domestic sectors. It has been found that several alternative energy sources has come up, among them, utilization of agricultural residues, forest residues, municipal garbage into valuable solid fuel is one which is one of the modern and latest concept which has come up to meet the growing demand of fuel. It is a cheaper solid fuel with high calorific and heating value. Its demand will definitely rise with rapid industrialization in the coming future. So a new entrepreneur can well venture into this field by fully assessing the fuel requirement by different small, medium and large-scale industries. The new prospective and decisive entrepreneurs can well venture by installing a unit of biocoal manufacturing to satisfy present and future demand.
Plant capacity: 4800 MT/AnnumPlant & machinery: 28 Lakhs
Working capital: -T.C.I: 129 Lakhs
Return: 46.00%Break even: 38.00%
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Biomass Power Generation 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

Biomass is biological material derived from living, or recently living organisms. In the context of biomass for energy this is often used to mean plant based material, but biomass can equally apply to both animal and vegetable derived materials. Biomass is a plant matter used to generate electricity or produce heat, usually by direct incineration. Examples include forest residues (such as dead trees, branches and tree stumps), yard clippings, wood chips and even municipal solid waste. In the second sense, biomass includes plant or animal matter that can be converted into fibers or other industrial chemicals, including biofuels. Industrial biomass can be grown from numerous types of plants including nuscanthus thus, switch grass, hemp, corn, poplar, willow, sorghum, sugarcane and variety of tree species ranging from eucalyptus to oil plam. India’s energy development programme has been put to serve pressure with the ever increasing demand gap and mismatch of resources coupled with nonuniform growth curve. Increase in demand for energy due to rapid industrialization and growing population, constraint of financial resources for enhancing infrastructure use facility, limited reserves of coal and fossil fuels the challenges faced by India in the management and development of the power sector. There are good scope for biomass power plant in India. So new entrepreneur entered in this field will be successful. Few Indian Major Players are as under: Agrawal Oil Extractions Ltd. Ankit Metal & Power Ltd. Davangere Sugar Co. Ltd. H P L Cogeneration Ltd. M S P Steel & Power Ltd. Nava Bharat Ventures Ltd. Parrys Sugar Industries Ltd. S R H H L Industries Ltd. Sree Metaliks Ltd. Sree Rayalaseema Alkalies & Allied Chemicals Ltd. Sunflag Iron & Steel Co. Ltd. T C P Ltd.
Plant capacity: 1 MWPlant & machinery: 373 Lakhs
Working capital: -T.C.I: Cost of Project : 543 Lakhs
Return: 50.00%Break even: 51.00%
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Waste to Wealth-Value Recovery from Agricultural and Industrial Biomass Residues

Waste to Wealth-Value Recovery from Agricultural and Industrial Biomass Residues. Furfural from Lignocellulosic Biomass. Production of Furfural from Sugarcane Bagasse and Corncobs. The concept of waste as a material “which has no use” is changing to that of seeing waste as a resource by converting into secondary material with modification. Wastes can thus be converted into useful resources used at home or even sold for wealth. Waste recycling involves the collection of discarded materials such as Sugarcane Bagasse, Corncobs etc and processing these materials, and turning them into new products. Furfural is a chemical made out of organic matter which is typically produced for industrial purposes. It is primarily composed of agricultural byproducts such as oat husks, bran, corncobs, and sawdust. Some of the products it is used in include weed killer, fungicide, and solvent. It is also a familiar element in the production of transportation fuels and in the process of refining lubricating oils. The chemical is an element in the production of several other industrial agents as well. Bagasse is a waste product from the sugar industry, which is usually used as energy source in factory at present. However, the amount of bagasse left is still high enough for more value-added product for example furfural. Bagasse is a good source of pentosan and containing about 25 to 27%. The main objective of the research was to produce furfural from bagasse. The main raw material for the production furfural was bagasse and some chemicals/ingredients were used (H2SO4, water, NaCl). Furfural is an important chemical because it is a selective solvent for separating saturated and unsaturated compounds in petroleum refining, gas, oil and diesel fuel, and for the high demand of its derivatives, especially furfuryl alcohol, used mainly in the production of furan resins for foundry sand binders, which is considered the major market for furfural. USES Furfural is used as a solvent in petrochemical refining to extract dienes from other hydrocarbons. Furfural, as well as its derivative furfuryl alcohol, can be used together with phenol, acetone, or urea to make solid resins. It is commonly used as a solvent; it is soluble in ethanol and ether and somewhat soluble in water. Furfural is the aldehyde of pyromucic acid; it has properties similar to those of benzaldehyde. A derivative of furan, it is prepared commercially by dehydration of pentose sugars obtained from cornstalks and corncobs, husks of oat and peanut, and other waste products. It is used in the manufacture of pesticides, phenol furfural resins, and tetrahydrofuran. Tetrahydrofuran is used as a commercial solvent and is converted in starting materials for the preparation of nylon. Furfural is used as a solvent in petrochemical refining to extract dienes (which are used to make synthetic rubber) from other hydrocarbons. Few Indian major players are as under • MA CAgro Inds. Ltd. • Mahavir Expochem Ltd. • Southern Agrifurane Inds. Ltd. • Southern Agrosynthese Ltd. • Sri Kusuma Haranadha Agro Fural Ltd. Market Outlook In terms of volume, the global furfural market was valued at 306.3 kilotons in 2015, and should increase to 488.3 kilotons in 2021, reflecting a five-year CAGR of 7.7%. The Strong shift towards the development of bio-based chemicals on account of volatile petrochemical prices and growing environmental concerns is expected to remain a key driver for the growth of global furfural market. A strong push for sustainable chemistry on a political and regulatory level across key regions is expected to play a critical role in furfural market development. Furfural has gained acceptance as a substitute for petrochemicals as a building block for polymers and solid elastomers. In addition, furfural derivatives such as 5-hydroxymethylfurfural (HMF), furan-2,5-dicarboxylic acid (FDCA) and polytetrahydrofuran (poly-THF) have also been gaining importance as potential secondary fuel sources. This trend is expected to drive further furfural demand over the next six years. The overall opportunity in furfural, worldwide, will increase from US$450 mn in 2014 to US$1.35 bn by 2023. Growing global demand for environmentally sustainable biomass-based chemicals has fueled the overall growth of the furfural market, along with the growing application of furfural and its derivatives in the pharmaceutical industry. These factors have triggered demand-side growth of the furfural market. Sugarcane bagasse raw material based furfural is expected to grow at a high CAGR of 12.6% during the forecast period. China is the dominant player in the world furfural market. With 85% of global capacity and 75% of world consumption, China will continue to drive the overall market. Strong annual growth of over 4% globally is expected in the next five years as China's consumption of furfural continues to grow as a result of strong demand for furfuryl alcohol to produce furan resins and increased furfuryl alcohol exports. Tags Production of Furfural, Production of Furfural from Bagasse, Process for Producing Furfural, Production of Furfural from Corncobs, Furfural from Corncobs, Making Furfural from Corn Cobs, Furfural Production from Corn Cobs, Furfural from Sugarcane Bagasse, Sugarcane Bagasse for Production of Furfural, Production of Furfural from Sugarcane Bagasse, Production Process of Furfural, Furfural Production from Corncobs, Preparation of Furfural From Corncobs, Furfural Manufacturing Business, Furfural Manufacturing Project Report, Process for Producing Furfural from Corncobs, Process of Manufacturing Furfural, Furfural Production Process, Wealth from Waste, Waste Biomass as Raw Material for Furfural Production, Value Recovery from Agro Food Processing Wastes Using Biotechnology, Production of Furfural from Agricultural and Industrial Biomass Residues, Recycling Waste Biomass from the Sugar Industry, Lignocellulosic biomass, Lignocellulosic Agriculture Wastes as Biomass Feedstocks, Bio-Based Solvents, Commercial Uses, Cellulosic Ethanol Commercialization, Energy Content of Biofuel, Energy Crop, Energy Forestry, EROEI, Sustainable Biofuel, Furfural Manufacture in India, Manufacturing Furfural from Bagasse, Manufacture of Furfural from Corncobs, Furfural processing project ideas, Projects on Small Scale Industries, Small scale industries projects ideas, Furfural Based Small Scale Industries Projects, Project profile on small scale industries, How to Start Furfural Processing Industry in India, Furfural Processing Projects, New project profile on Furfural processing industries, Project Report on Furfural manufacturing Industry, Detailed Project Report on Furfural Production from Corncobs, Project Report on Furfural Production from Corncobs, Pre-Investment Feasibility Study on Production of Furfural from Sugarcane Bagasse, Techno-Economic feasibility study on Furfural Production from Corncobs, Feasibility report on Production of Furfural from Sugarcane Bagasse, Free Project Profile on Production of Furfural from Sugarcane Bagasse, Project profile on Furfural Production from Corncobs, Download free project profile on Production of Furfural from Sugarcane Bagasse, Industrial Project Report, Project consultant, Project consultancy, NPCS, Niir, Process technology books, Business consultancy, Business consultant, Project identification and selection, Preparation of Project Profiles, Startup, Business guidance, Business guidance to clients, Startup Project for Furfural Production from Corncobs, Startup Project, Startup ideas, Project for startups, Startup project plan, Business start-up, Business Plan for a Startup Business, Great Opportunity for Startup, Small Start-up Business Project, Project report for bank loan, Project report for bank finance, Project report format for bank loan in excel, Excel Format of Project Report and CMA Data, Project Report Bank Loan Excel, Detailed Project Plan Report
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Ramming Mass and Fire Bricks from Magnesite

Ramming Mass is used in the lining of induction furnaces. Quality of Acidic Ramming mass is directly related to the heating performance of the furnaces. Better quality of lining results in the smooth working of furnaces, optimum output and better metallurgical control. It is manufactured under strict supervision of qualified & experienced work force. Ramming Mass that has excellent all round fastness heat properties. Basic Ramming Mass is a magnesia based refractory lining material for induction furnaces. Basic Ramming Mass or Magnesia Ramming Mass is widely used in industries which work with high manganese steel and high chromium steel to make quality products. Basic Ramming Mass has much longer life span compared to acidic ramming mass or neutral ramming mass. The wide range of basic ramming masses are produced using a blend of indigenous Dead Burnt Magnesia and imported fused/sea water magnesia. Basic Ramming Masses find acceptance in coreless induction furnaces, EAF hearth, cold and hot steel launders. Fire brick, firebrick, or refractory brick is a block of refractory ceramic material used in lining furnaces, kilns, fireboxes, and fireplaces. A refractory brick is built primarily to withstand high temperature, but will also usually have a low thermal conductivity for greater energy efficiency. Firebricks are blocks of refractory ceramic materials used to line fireplaces, fire boxes and furnaces. They are different from regular masonry bricks because of their ability to withstand temperatures up to 1,800 degrees Fahrenheit. Usually dense firebricks are used in applications with extreme mechanical, chemical, or thermal stresses, such as the inside of a kiln or a furnace, which is subject to abrasion from wood, fluxing from ash or slag, and high temperatures. A fire brick, also called refractory brick, is a molded block of refractory ceramic material that has been baked and treated to withstand high temperature. Fire brick usually contains aluminum oxide and silicon dioxide. It is used in lining furnaces, kilns, fireboxes, and fireplaces. The global refractory bricks market is bifurcated on the basis of type, material, application and geography. On the basis of type, the market is classified as unshaped and shaped. The global market is bifurcated based on material as alumino-silicates, silicon carbides and ceramic bricks. The global refractory bricks market is also segmented based on application as furnaces, metallurgy, kilns, incinerators and others.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Charcoal from Biomass

Biomass charcoal briquettes are a biofuel substitute. Briquettes are mostly used in the developing world where cooking fuels are not as easily available. Briquettes are used to heat industrial boilers in order to produce electricity from steam. Biomass charcoal briquettes are made from agriculture waste, wood chips, coconut shell waste saw dust, groundnut shell waste etc. are a replacement for fossils fuels such as oil or coal, and can be used to heat boiler in manufacturing plants. Biomass briquettes are a renewable source of energy and avoid adding fossils carbon to the atmosphere. Biomass charcoal briquettes are widely used for any type of Thermal application like steam generation in boilers, heating purpose, drying process & gasification plant to replace existing conventional fuel like coal, wood & costly liquid fuel like FO, Diesel, LDO, Kerosene etc. On the basis of type, the charcoal market, biomass charcoal is estimated to contribute the largest share, of more than 67.0%, to the market in 2017. Biomass charcoal burns quickly and produces a high amount of heat on burning. Owing to these properties, the demand for biomass charcoal is growing for barbecue cooking purposes. The global charcoal market is projected to reach $6,492.8 million by 2023. The global biomass briquettes market is segmented into North America, Latin America, Western Europe, Eastern Europe, the Middle East and Africa, and Asia Pacific. Of these regions, Europe and North America are expected to be key regions for the growth of this market over the forecast tenure. The utilization of the biomass briquettes production technologies is high to convert their biomass into useful energy sources. Entrepreneurs who invest in this project will be successful. Few Indian major players are as under: • Adsorbent Carbons Ltd. • Birla Carbon India Pvt. Ltd. • Carbon & Chemicals India Ltd. • Continental Carbon India Ltd. • Goodluck Carbon Pvt. Ltd. • Murablack India Ltd. • Phillips Carbon Black Ltd. • Sun Petrochemicals Pvt. Ltd. • Surendra Mining Inds. Pvt. Ltd. • Utkal Moulders Ltd.
Plant capacity: 4,500 MT per annumPlant & machinery: 144 Lakhs
Working capital: -T.C.I: Cost of Project:271 Lakhs
Return: 29.00%Break even: 74.00%
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Herbal Cosmetics (Shampoo, Conditioner, Face Wash, Body Wash, Massage Oil, Hair Oil, Face Cream, Massage Cream, Lip Balm)

Herbal Cosmetics, referred as Products, are formulated, using various permissible cosmetic ingredients to form the base in which one or more herbal ingredients are used to provide defined cosmetic benefits only, shall be called as “Herbal Cosmetics”. Herbal cosmetics are formulated, using different cosmetic ingredients to form the base in which one or more herbal ingredients are used to cure various skin ailments. The name itself suggests that herbal cosmetics are natural and free from all the harmful synthetic chemicals which otherwise may prove to be toxic to the skin. The most common reasons for using traditional cosmetics are that it is more affordable, more closely corresponds to the patient’s ideology, allays concerns about the adverse effects of chemical (synthetic) chemicals, satisfies a desire for more personalized health care, and allows greater public access to health information. The major use of herbal cosmetics is for health promotion and therapy for chronic, as opposed to life-threatening, conditions. Furthermore, traditional cosmetics are widely perceived as natural and safe, that is, not toxic. This is not necessarily true, especially when herbs are taken with prescription drugs, over-the-counter medications, or other herbs, as is very common. Indian consumers are increasingly transitioning towards herbal and natural offerings, especially in analgesics, cold, cough and allergy (hay fever) remedies and dermatologicals. More consumers are becoming health and hygiene conscious due to the prevailing health and wellness trend in the country. This is likely to hamper the herbal cosmetics market during the forecast period. Presently, herbal cosmetics are used for the treatment of skin and hair problems. These cosmetics have less side effects and are cost-efficient. Increase in trend of using herbal cosmetics with natural ingredients is projected to create opportunities in the herbal cosmetics market during the forecast period. The Herbal Cosmetic industry in India has been developing in a faster pace. It is observing influx of many national and international brands. The demand for herbal cosmetic products is provoked by changing lifestyles of the consumers, growing awareness among them regarding the harm caused to their bodies after usage of chemical-based cosmetics products, and increasing concern among the population to look good. Further, it is anticipated that the Indian Herbal Cosmetic industry is expected to reach INR 316 Billion by 2022, growing at a CAGR of 19% over the forecasted period of 2017-2022. Entrepreneurs who invest in this project will be successful. Few Indian major players are as under: • Abdos Oils Pvt. Ltd. • Absolute Aromatics Ltd. • Anchor Health & Beauty Care Pvt. Ltd. • Associated Industries Consumer Products Pvt. Ltd. • Avon Beauty Products India Pvt. Ltd. • Ayur Herbals Pvt. Ltd. (Transferred From Nct Of Delhi Andharyana) • Bajaj Consumer Care Ltd. • Cholayil Pvt. Ltd. • Dabur India Ltd. • Dey'S Medical Stores Pvt. Ltd. • Gayatri Herbals Pvt. Ltd. • J G Spices Ltd.
Plant capacity: Herbal Shampoo 250 ml Size Pack:2,400,000 Packs per annum Herbal Conditioner 250 ml Size Pack:1,200,000 Packs per annum Herbal Face Wash 250 gm Size Pack:300,000 Packs per annum Herbal Bady Wash 250 gm Size Pack:300,000 Packs per annum Herbal Plant & machinery: 52 Lakhs
Working capital: -T.C.I: Cost of Project:5327 Lakhs
Return: 35.00%Break even: 33.00%
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Biomass Briquettes from Bio Waste

Among the non-conventional forms of energy, Bio-Energy offers vast potential under Indian conditions, due to the wide spectrum of BIOMASS available in different agro-climatic regions of the country. Worldwide, the energy stored in biomass through photosynthesis is approximately 3x1021? (90% in trees) every year, which is nearly 10 times the world’s annual energy use. Even through the total renewable biomass resource for energy far exceeds the world’s total energy requirement, its volume exploitation remains limited because of the present low cost of fossil fuels, the heterogeneous nature of biomass, and the area over which the biomass must be collected for large-scale applications. Biomass feed, especially agro-residues, is available in different forms, such as husks, straw, and stalks of various and numerous crops. Due to this heterogeneous nature, the utility of these materials for energy becomes limited, and energy conversion processes tend to become biomass specific. Biomass briquettes are a proven way of generating energy from bio-waste. Different types of waste have been utilized in order to develop biomass briquettes. Biomass briquettes derived from Mustard, Cotton, Guar, Saw Dust and Peanut shell Agro waste could result in feasible on-site fuel production. Biomass briquettes can typically provide between 3-15 per cent of the input energy into the power plant. The objective behind the move, is to reduce air pollution caused due to burning of surplus biomass residue in fields by creating an alternate market for its large-scale utilisation in power plants as well as reduce carbon emission from coal-fired power plants. The global Biomass Briquette market is valued at 320 million US$ in 2017 and will reach 570 million US$ by the end of 2025, growing at a CAGR of 7.3% during 2018-2025. The global biomass briquettes market is segmented into North America, Latin America, Western Europe, Eastern Europe, the Middle East and Africa, and Asia Pacific. Of these regions, Europe and North America are expected to be key regions for the growth of this market over the forecast tenure. The utilization of the biomass briquettes production technologies is high to convert their biomass into useful energy sources.
Plant capacity: 20 MT per dayPlant & machinery: 52 Lakh
Working capital: -T.C.I: Cost of Project:94 Lakh
Return: 20.00%Break even: 73.00%
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Manufacturing of Biomass Briquettes from Biowaste.

Manufacturing of Biomass Briquettes from Biowaste. Profitable Investment in Agro Waste Briquette Industry. Turning Waste into Energy Biomass briquettes are a biofuel substitute to coal and charcoal. Briquettes are mostly used in the developing world, where cooking fuels are not as easily available. There has been a move to the use of briquettes in the developed world, where they are used to heat industrial boilers in order to produce electricity from steam. The briquettes are cofired with coal in order to create the heat supplied to the boiler. Biomass feed, especially agro-residues, is available in different forms, such as husks, straw, and stalks of various and numerous crops. Due to this heterogeneous nature, the utility of these materials for energy becomes limited, and energy conversion processes tend to become biomass specific. Biomass briquettes are a proven way of generating energy from bio-waste. Type of Biomass Briquette:- Sawdust Briquettes Agro waste Briquettes Wood Briquettes Different types of waste have been utilized in order to develop biomass briquettes. Biomass briquettes derived from Mustard, Cotton, Guar, Saw Dust and Peanut shell Agro waste could result in feasible on-site fuel production. Biomass briquettes can typically provide between 3-15 per cent of the input energy into the power plant. The objective behind the move, is to reduce air pollution caused due to burning of surplus biomass residue in fields by creating an alternate market for its large-scale utilization in power plants as well as reduce carbon emission from coal fired power plants. Developing economies is the key sources for generating air pollution, as most of its population is reliant on wood and other fossil fuel such as kerosene and charcoal to meet their domestic energy needs. In addition, the growing percentage of carbon monoxide, carbon dioxide, and other harmful gases in the environment is the chief reason for global warming. Growing air pollution and environmental protection has grown concerns across the globe. Thus, growing environmental concerns have pushed the need for biomass briquettes. Biomass briquette production is developed recently. It is a kind of technology to obtain clean coal, as per the use of bio waste to create usable and effective briquettes to replace traditional firewood and charcoal in various domestic activities Uses:- Biomass briquettes are mostly used in the developing world, where cooking fuels are not as easily available. There has been a move to the use of briquettes in the developed world, where they are used to heat industrial boilers in order to produce electricity from steam. The briquettes are cofired with coal in order to create the heat supplied to the boiler. Biomass briquettes, mostly made of green waste and other organic materials, are commonly used for electricity generation, heat, and cooking fuel. These compressed compounds contain various organic materials, including rice husk, bagasse, ground nut shells, agricultural waste. The composition of the briquettes varies by area due to the availability of raw materials. The raw materials are gathered and compressed into briquette in order to burn longer and make transportation of the goods easier. The Benefits of Biomass Briquettes:- Nowadays, everyone is thinking about how to make their homes greener and how to save energy. Everyone is now aware of the problems presented by global warming and we are all thinking of ways to change our lifestyles in order to help stop this phenomenon and keep our world safe. This is why biomass briquettes are important. The main source of energy for most areas of the world is fossil fuel, which usually is makes use of coal in order to power boilers to make steam for energy. Briquettes made from biomass are a great substitute for coal, since they are made of natural materials and do not add to the pollution in the world. Because of the production of briquettes, many companies use biomass briquettes since they found out about its benefits and how it can lower their carbon footprint while being affordable. These briquettes are cheaper than coal in the long run, and can be used for a long time. Coal is one of the most dangerous ways to produce energy nowadays because of its pollution to our environment. This is why it is necessary for us to limit our use of charcoal and find another way to get energy. Biomass is a great way to do this since it is easy to get and use. Usually, the briquettes are made from plants and natural waste from animals. It recycles them and turns them into an energy source, so they are an ideal material. They do not have any of the disadvantages of fossil fuel energy, and it is easily renewable. It does not emit greenhouse gases or any toxic chemicals. The biomass materials are compressed into briquettes so that they can be used by energy producing companies to replace charcoal. These burn just like charcoal but they do not produce any harmful effects to the environment. They can be used to boil water and power turbines to generate electricity. In the modern world, everyone needs electricity. It is a very much sought-after utility, since we rely on technology that runs on electricity to live our lives. Because of this need, people resorted to using fossil fuels to power cities. But briquettes from biomass can change all of this. Biomass also gets rid of the need to have fossil fuels exported and imported around the world, since it can be made domestically from plants and animal waste. This will lower the price of electricity for many countries that do not have oil or coal reserves. It will mean affordable and safe energy for everyone. Briquettes are better than loose biomass since they are compressed. This compression allows them to burn for a lot longer than if it was loose. Also, it does not take too much money to compress these so it will be inexpensive for people to attain. Related Projects: - Waste Management and Recycling, Industrial Waste Management, Agro Waste Market Outlook Biomass briquette is commonly made of green waste and other natural materials. These are generally used to create power, heat, cooking fuel, and work industrial boilers with a specific end goal to make power from steam. The most recognized usage of briquettes is in emerging economies, where energy sources are not as generally accessible. These compacted or strong compounds contain different organic materials, including rice husk, bagasse, ground nutshells, city strong waste, rural waste, or other wastes with high nitrogen content. The demand for fuel in emerging economies and improved renewable energy source appeal drive the biomass briquette market. However, low energy output when compared to others industrial fuels and limited awareness hamper the market growth. Currently, various trends seen in the global market that has risen the demand for biomass briquettes are its advantages over other fuels, low ash content as compared to charcoal and coal, cost-effective, and is sulfur free. Moreover, low environmental effect, uniformity in combustion, higher boiler efficiency due to low moisture content and high density has increased its demand across the globe. The popularity of piston or ram press and screw extrusion machines are the most preferred technologies used for producing high-pressure biomass briquettes. Biomass briquettes have a high potential to substitute coal in most boiler and power applications and have a high combustion rate that has increased its demand on a large scale. At present, in developed countries the Biomass Fuel industry is generally at a more advanced level. The world's large enterprises are mainly concentrated in EU. Meanwhile, foreign companies have more advanced equipment, strong R & D capability, and leading technical level. With the development of Chinese Biomass Fuel industry production technology, their share in the international market is increasing, and competitiveness in the international market gradually increases. The global Biomass Briquette market is valued at 320 million US$ in 2017 and will reach 570 million US$ by the end of 2025, growing at a CAGR of 7.3% during 2018-2025. The global biomass briquettes market is segmented into North America, Latin America, Western Europe, Eastern Europe, the Middle East and Africa, and Asia Pacific. Of these regions, Europe and North America are expected to be key regions for the growth of this market. The utilization of the biomass briquettes production technologies is high to convert their biomass into useful energy sources. Biomass molding fuel is made of agricultural and forestry residues such as rice stalk, straw, cotton stalk, bamboo sawdust, wood flour, ramie stalk, peanut husk, etc. It is produced by pellet machines or briquetting machines, after going through several processing procedures, such as crushing, drying, mixing, molding or compressing, etc. And the final products are pellets and briquettes, which are used as a replacement for coal, gasoline gas and other traditional fossil fuels. Compared to fossil fuels, biomass molding fuel produce low net total greenhouse gas emissions because the materials used are already a part of the carbon cycle. Biomass pellet fuel are biofuels made from compressed organic matter or biomass. Wood pellets are the most common type of pellet fuel and are generally made from compacted sawdust and related industrial wastes from the milling of lumber, manufacture of wood products and furniture, and construction. Other industrial waste sources include empty fruit bunches, palm kernel shells, coconut shells, and tree tops and branches discarded during logging operations. Biomass pellets are usually utilized in home pellet stove, central heating boiler, industrial boiler, or in power plants to replace coal. They can also be used as horse bedding and cat litter. However, biomass briquettes are sticks or blocks with large diameter and different shapes (hexagon, cylinder, cuboid, etc.) made by biomass briquette machines. They are primarily for industrial use for heating. Related Books: - Waste Management, Waste Disposal and Recycling Industry Key Players:- ? Enviva ? Pacific BioEnergy ? German Pellets ? RWE Innogy ? Drax Biomass ? General Biofuels ? Pfeifer Group ? Biomass Secure Power ? Energex ? Westervelt Tags:- #projectreport #DetailedProjectReport #businessconsultant #businessfeasibilityreport #BusinessPlan #BiomassBriquettes #biofuel #waste #recycling #biowaste #agriculturewaste #WasteManagement #ewaste #SolidWaste #WasteWater #IndustrialWaste #foodwaste #bioproducts #NPCS
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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