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

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E-Waste Recycling Plant

E-WASTE is a collective name for discarded electronic devices that enter the waste stream from various sources. It includes electronic appliances such as televisions, personal computers, telephones, air conditioners, cell phones, electronic toys, etc. The Electronics Recycling operates to the WEEE directive for efficient electronics disposal. The WEEE Directive aims to reduce the quantity of waste from electrical and electronic equipment and increase it’s re-use, recovery and recycling. India’s ‘production’ of e-waste is likely to increase by nearly three times, from the existing 18 lakh metric tons (MT) to 52 lakh MT) per annum by 2020 at a compound annual growth rate (CAGR) of about 30%. A mere 1.5% of India's total e-waste gets recycled. This facilitates the development of new technologies and ensures a high quality product.
Plant capacity: Plastic Granules: 400000 Kgs./Annum Glass Scrap: 300000 Kgs./Annum Copper Scrap: 250000 Kgs./Annum Precious Metals (Nickel, Tin & Zinc): 49996 Kgs./Annum Gold: 1.3200 Kgs./Annum Silver: 2.6400 Kgs./Annum Palladium: 0Plant & machinery: 85 lakhs
Working capital: -T.C.I: Cost of Project: Rs 829 lakhs
Return: 26.00%Break even: 38.00%
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Alumina from Bauxite

Alumina is properly called aluminium oxide, which is a chemical compound comprised of aluminium and oxygen molecules (Al2O3). When refined from bauxite, alumina generally looks like a white powder similar to table salt or granular sugar. Aluminium is the most abundant metal in the earth’s crust and is a constituent of many minerals. Alumina is widely used in a variety of industrial abrasive materials. India's share in world aluminium market is estimated at around 3%. The Aluminium Market was valued at $133,564 million in 2015, and is expected to reach $167,277 million by 2022, registering a CAGR of 3.3% from 2016 to 2022. Entrepreneurs who invest in this project will be successful. Few Indian major players are as under • Aluminium Powder Co. Ltd. • Aravali Infrapower Ltd. • Bharat Aluminium Co. Ltd. • Bothra Metals & Alloys Ltd. • Gujarat Bauxite Ltd. • Hindalco Industries Ltd. • J S K Inds. Pvt. Ltd.
Plant capacity: 100000 MT/AnnumPlant & machinery: 890 lakhs
Working capital: -T.C.I: Cost of Project: Rs 6009 lakhs
Return: 29.00%Break even: 75.00%
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E-Waste Recycling for Extraction of Precious Metals (Nickel, Tin & Zinc), Gold, Silver, Palladium, Plastic, Glass and Copper

E-WASTE is a collective name for discarded electronic devices that enter the waste stream from various sources. It includes electronic appliances such as televisions, personal computers, telephones, air conditioners, cell phones, electronic toys, etc. The Electronics Recycling operates to the WEEE directive for efficient electronics disposal. The WEEE Directive aims to reduce the quantity of waste from electrical and electronic equipment and increase it’s re-use, recovery and recycling. India’s ‘production’ of e-waste is likely to increase by nearly three times, from the existing 18 lakh metric tons (MT) to 52 lakh MT) per annum by 2020 at a compound annual growth rate (CAGR) of about 30%. A mere 1.5% of India's total e-waste gets recycled. This facilitates the development of new technologies and ensures a high quality product.
Plant capacity: Plastic Granules: 141000 Kgs./Annum Glass Scrap: 105900 Kgs./Annum Copper Scrap: 88200 Kgs./Annum Precious Metals (Nickel, Tin & Zinc): 18000 Kgs./Annum Gold: 5.760 Kgs./Annum Silver: 11.520 Kgs./Annum Palladium: 0.2Plant & machinery: 106 lakhs
Working capital: -T.C.I: Cost of Project: Rs 190 lakhs
Return: 26.00%Break even: 72.00%
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Alumina from Bauxite

Alumina from Bauxite. Extraction and Production of Alumina from Bauxite Alumina is the common name given to aluminum oxide (Al2O3). Alumina is produced from bauxite, an ore that is mined from topsoil in various tropical and subtropical regions. The Bayer process, discovered in 1887, is the primary process by which alumina is extracted from bauxite. Bauxite is the general name given to the hydrated oxides of aluminium. It contains varying amounts of combined water and several impurities of which ferric oxide and silica are usually predominant. It is essential that the Al2O3 (alumina) be obtained substantially free from these impurities as otherwise the iron oxide and silica would be reduced and contaminate the metallic aluminium produced in the Hall (or Heroult) Process. Uses & Applications: The superior characteristics alumina can offer make it ideal for use in many applications. Some of the most common applications outside of aluminium production are listed below. • Abrasives: Alumina is widely used in a variety of industrial abrasive materials, owing to its superior hardness and strength. Similarly, alumina can be used as a coating to protect against abrasion. • Refractories: Alumina is also widely used in refractory products, due to its high melting point. It is especially suited to demanding applications where the strength of the refractory must be retained at high temperatures. • Glass: Alumina is often used in the production of glass products, lending improved strength; it has even been studied for its potential in creating an unbreakable glass. • Engineered Ceramics: Alumina is also widely used in engineered ceramics, also called advanced or technical ceramics. These engineered ceramic materials are formulated for especially harsh applications that require increased wear resistance, thermal and chemical stability, and many of the other characteristics alumina possesses. Engineered ceramics have applications in industries from chemical and medical, to industrial, electrical, and more. • Other Applications: laser tubes, Wear pads, Seal rings High temperature electrical insulators, High voltage insulators, Furnace liner tubes, Thread and wire guides, Electronic substrates, Ballistic armor, Abrasion resistant tube and elbow liners, Thermometry sensors, Laboratory instrument tubes and sample holders, Instrumentation parts for thermal property test machines, Grinding media. Market Outlook High Purity Alumina Market is expected to garner $5,293 million by 2023, registering a CAGR of 17.0% during the forecast period 2017-2023. The market for high purity alumina has witnessed tremendous growth during the past few years and is expected to grow at a CAGR of 20.7% in terms of volume, during the analysis period. The bauxite and alumina market can be segmented as metallurgical and non-metallurgical products. A metallurgical segment includes the bauxite and alumina used for extraction of aluminum and is the largest product segment. The major trend being witnessed in the global high-purity alumina market is the growing investments by market players in new plants for product manufacturing. Besides, investments are being focused upon the expansion of existing production units and the modernization and upgradation of aging facilities. This increase in investments for enhancing the production of alumina is expected to result in the greater availability of the product to meet the growing demand in the market. Based on region, the market is categorized into Europe, North America, Asia-Pacific (APAC), Latin America, and the Middle East and Africa. Among all these regions, APAC held a significant share in the high-purity alumina market during the historical period. This can be majorly attributed to the growth in the construction industry of the region, particularly in infrastructure projects such as highways and roadways in China and India. The project developers across these nations are increasingly focusing on the adoption of LED lighting solutions for installation purposes in these structures, which, in turn, is boosting the growth of the high-purity alumina industry. High purity alumina market is witnessing steady growth in the semiconductor industry, as the product is a fairly new industrial-use material employed in the process of fabrication of semiconductor device. It is also used in wafer processing equipment owing to its high resistance to plasma corrosion and improved blending strength. Demand for semiconductor is influenced by several underlying applications such as data processing, communication and consumer electronics that accounts for the prominent share of applicability in personal computers, tablets, gaming consoles, television, iPods and servers. Hence, growing demand for high definition display screens is expected to augment the high purity alumina market demand in the forecast timespan. The global market for high purity alumina is also driven by sapphire’s use in semiconductor applications. High purity alumina is used as separators in Li-ion batteries that are used in electronic devices and electric vehicles. The other applications of high purity alumina are abrasives, alumina ceramic, translucent cosmetics, and separation membrane. Altech Chemicals Limited, Baikowski SAS, Polar Sapphire Limited, Nippon Light Metal Company Limited, Alcoa Corporation, Orbite Technologies, Sasol, Sumitomo Chemical, Rio Tinto Alcan, UC RUSAL, Norsk hydro are some of the prominent players operating in the global high purity alumina market. Alcoa Corporation is among the top producers of aluminium. In 2016, Alcoa Inc. got split into two entities namely Alcoa Corporation and Arconic with former engaged in mining and manufacturing of raw alumina and the latter engaged in processing of alumina and other metals. Alumina Industry in India: Alumina is produced from bauxite. About one tonne of alumina is produced from three tonnes of bauxite and about one tonne of aluminium from two tonnes of alumina. The production of alumina at 36.10 lakh tonnes in 2012-13 decreased by about 8% as compared to the previous year. Tags #Alumina_from_Bauxite, #Extraction_Process_of_Alumina_from_Bauxite, #How_is_Alumina_Extracted_from_Bauxite? #Extract_Alumina_from_Bauxite, Manufacturing of Alumina, Making of Alumina, #Extraction_of_Aluminium_from_Bauxite_Pdf, #Extraction_of_Alumina, Extraction of Alumina from Bauxite, Manufacturing Process of Alumina, #Production of Alumina, Manufacturing of Alumina, How is Alumina Produced? #Alumina_Production, Process for Production of Alumina, Production of Alumina from Bauxite, Alumina Plant in India, Alumina Manufacturing Process, #Project_Report_on_Alumina_manufacturing_Industry, Detailed Project Report on Extraction of Alumina, Project Report on Production of Alumina from Bauxite, Pre-Investment Feasibility Study on Production of Alumina from Bauxite, Techno-Economic feasibility study on Production of Alumina from Bauxite, #Feasibility_report_on_Extraction_of_Alumina, Free Project Profile on Extraction of Alumina, Project profile on Production of Alumina from Bauxite, Download free project profile on Production of Alumina from Bauxite, Alumina Business
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Bamboo Charcoal Manufacturing Business

Bamboo Charcoal Manufacturing Business. Production of Activated Charcoal from Bamboo Bamboo charcoal powder consists of pieces of bamboo plants, which are harvested after a minimum of five years. It is manufactured using the pyrolysis or carbonization process, which usually consists of heat treatment at the temperature of 800°C to 1200°C. The process imparts high adsorption properties to the bamboo charcoal powder, thus making it useful for a wide range of applications. Bamboo charcoal powder can attract and hold a variety of materials, minerals, chemicals, humidity, radio waves, odors, and other substances. Thus, it provides these materials with healing and detoxification characteristics. The use of bamboo charcoal powder is also popular because it is an environmentally-friendly product. Bamboo charcoal can be used as household fuel for heating and cooking, as well as in a range of purification and absorption applications, such as purifying drinking water, in air filters, in mattresses and pillows as a deodorizer, and for certain industrial purification uses. Bamboo vinegar, a by-product of the manufacturing process, is also used as an ingredient in health products. Bamboo is an excellent resource for charcoal because of its high surface area (up to 385 m2/g) and the ability to reach high temperatures (the surface temperature of bamboo charcoal can reach 700°C). Bamboo grows naturally because of the country’s largely undisturbed forests and the limited agriculture practiced in areas where bamboo proliferates. Four dzongkhags have a significant production of bamboos. These are Samtse, Samdrup Jongkhar, Tsirang and Zemgang. Bamboo charcoal can be used for a wide range of different purification and absorption application. Reduce Indoor Air Pollution - Bamboo charcoal absorbs harmful chemicals in the air. It is especially useful for absorbing formaldehyde, ammonia, benzene from paints and strong adhesives, or when antifreeze is kept indoors. It also reduces smog a it absorbs carbonic oxide, ammonia, formaldehyde, benzopyrene, nicotine, and tar. Purifying Drinking Water - As bamboo is naturally anti-bacterial and anti-fungal, bamboo charcoal also possesses similar properties. Bamboo charcoal also absorbs 2, 4-dichloro-hydroxybenzene, a major harmful pollutant in drinking water. Bamboo charcoal also eliminates harmful substances such as surplus chlorine, chloroform, and contains rich natural mineral, like, potassium, magnesium, sodium, calcium etc. Water quality is improved when bamboo charcoal is used in cooking and boiling. Adjusting Humidity - Bamboo charcoal is both an effective natural humidifier and dehumidifier, a result of the pores present in its substructure which can trap and release moisture. Promote Metabolism and Blood Circulation - As bamboo charcoal absorbs and emit far infrared rays, it promotes blood circulation. Bamboo charcoal in mattresses, cushions and comforters help to warm the body faster. Due to its absorbent properties, bamboo charcoal is often used in refrigerators, trash cans, shoe insoles, etc. to absorb odor. Bamboo charcoal products are not only functionally sound, but also good for protecting the environment. Market Outlook Based on the raw material required for manufacturing bamboo charcoal, bamboo charcoal market is categorized into raw bamboo charcoal and bamboo briquette charcoal. Raw bamboo charcoal and bamboo briquette charcoal are prepared from branches, roots, and culms of bamboo plants. Different manufacturing method for preparation of bamboo charcoal powder include the brick kiln process and mechanical process. The bamboo charcoal market is broadly categorized into three major segments based on the application type such as food industry, textile industry and cosmetics industry. Cosmetics industry segment is growing rapidly in the bamboo charcoal market with substantial revenue generation in the last few years. Growing popularity of bamboo charcoal in cosmetics industry segment is attributed to the increasing product penetration in newer market and increasing use in household applications. The global charcoal market is estimated to value $5,813.2 million in 2017 and is projected to grow at a CAGR of 2.0% during the forecast period. The growing demand for charcoal as a metallurgical fuel in the metal and mining industries is driving the growth of the market. On the basis of type, the charcoal market is segmented into lump charcoal, charcoal briquettes, Japanese charcoal, sugar charcoal, and others. Others include various forms of activated charcoal. In terms of value, lump charcoal is estimated to contribute the largest share, of more than 67.0%, to the market in 2017. Lump charcoal burns quickly and produces a high amount of heat on burning. Owing to these properties, the demand for lump charcoal is growing for barbecue cooking purposes. Charcoal is increasingly being used in the production of steel, ferroalloys, aluminum, lead, cast iron, tin, copper, lanthanides, nickel, and some rare metals. It is also employed in the smelting of certain types of brass and bronze. The demand for charcoal is increasing due to technological developments and growing inclination toward the use of clean and renewable resources. Charcoal briquettes compressed from biomass materials produce less ash and reduce greenhouse gas emissions. They are therefore more preferred than traditional fuels. Such environmental sustainability benefits are fueling their demand among users, which, in turn, is driving the growth of the charcoal market. Asia-Pacific region is estimated to hold a major share in the bamboo charcoal market with massive growth in forecast period. Countries such as India, China and Singapore are leading the Asia-Pacific market with strong economic growth, rapid industrialization, rising demand form end-use industries, and significant investment by leading industry players considering potential growth opportunities in the region. The key players in the bamboo charcoal market are Hangzhou Fuyang Motor Carbon Ltd., Guilin Hsinchu Nature Biomaterials, Apex Biotechnology Corp., Jiangshan City Green, The Charcoal House, Japan Daisentakezumi Corp., Quzhou Modern Carbon Industry, Shanghai Hainuo Carbon Industry, and the Suichang Bamboo Charcoal Factory. Tags #ABC_(Activated_Bamboo_Charcoal), #Bamboo_Charcoal, #Bamboo_Charcoal_and_Activated, Activated Charcoal, How to Make Activated Charcoal, How to Make Activated Bamboo Charcoal, #Production_of_Activated_Charcoal_from_Bamboo_Wastes, #Production_of_Activated_Charcoal, Production of Activated Charcoal, #Bamboo_Based_Activated_Charcoal_Manufacturing Business, Bamboo Charcoal, Bamboo Charcoal Making, #Bamboo_Charcoal_Production, Bamboo Charcoal Making Business, Bamboo Charcoal Production Process, How to Make Bamboo Charcoal, Bamboo Charcoal Uses, Bamboo Charcoal Making Unit, Bamboo Charcoal Production Business, Bamboo Charcoal Business, Charcoal Making Business, Charcoal Manufacturing Plant, Production of Activated Carbon from Industrial Bamboo Wastes, Production of Activated Carbon from Bamboo, Preparation of Activated Carbon from Bamboo, Activated Bamboo, Activated Carbons Prepared from Bamboo, Preparation of Activated Carbon, Producing Activated Carbon from Bamboo, Activated Carbon and Its Application, Production of Activated Carbon Pdf, Activated Carbon Production Process, Activated Carbon Production Plant, Bamboo Charcoal Powder, Preparation of Activated Carbon from Bamboo, Preparation of Bamboo-Based Activated Carbon, Charcoal Manufacturing Plant Business, #Project_Report_on_Charcoal_Manufacturing_Industry, Detailed Project Report on ABC (Activated Bamboo Charcoal) Manufacturing Business, Project Report on Charcoal Manufacturing Plant, #ABC_(Activated_Bamboo_Charcoal)_Production, Pre-Investment Feasibility Study on Bamboo-Based Activated Charcoal Manufacturing, #Techno_Economic_feasibility_study_on_Bamboo_Charcoal_Production, Feasibility report on Charcoal Manufacturing Plant, Free Project Profile on ABC (Activated Bamboo Charcoal) Production, Project profile on Bamboo Charcoal Production, Download free project profile on Bamboo Charcoal Production, Bamboo Charcoal Manufacture, Production of Activated Charcoal from Natural Sources
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Biodegradable Disposable Cups and Plates Using Sugarcane Bagasse

Sugarcane bagasse products are perfect solution for biodegradable food packaging which are environment friendly. These eco-friendly food containers are very easy for food takeaways which why is they are called as green food packaging or biodegradable disposable takeaways. These no plastic food containers not help nature but also our health too. The packaging industry in India is expected to reachUS$73 billion in 2020 from US$32 billion in FY15growing at a CAGR of 18%. Around US$ 3.6 Bn is the global disposable plates and cups market standing in 2017 and it is estimated to reach an evaluation of about US$ 6.4 Bn by 2027. This facilitates the development of new technologies and ensures a high quality product.
Plant capacity: 2800 Kgs/DayPlant & machinery: Rs 940 lakhs
Working capital: -T.C.I: Cost of Project: Rs 1369 lakhs
Return: 26.00%Break even: 44.00%
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Gold Salt

Gold salts are ionic chemical compounds of gold. The term, "gold salts" is a misnomer, and is the term for the gold compounds used in medicine. "Chrysotherapy" and "aurotherapy" are the applications of gold compounds to medicine. Contemporary research on the effect of gold salts treatment began in 1935, primarily to reduce inflammation and to slow disease progression in patients with rheumatoid arthritis. The use of gold compounds has decreased since the 1980s because of numerous side effects and monitoring requirements, limited efficacy, and very slow onset of action. Most chemical compounds of gold, including some of the drugs discussed below, are not salts, but are examples of metal thiolate complexes. The use of injected gold salts is indicated for rheumatoid arthritis. Its uses have diminished with the advent of newer compounds such as methotrexate and because of numerous side effects. The efficacy of orally administered gold is more limited than injecting the gold compounds.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Assaying Gold

Gold assaying is essential in determining the amount of gold in a mineral deposit. There are various gold assaying processes used today, each specific gold assay choice will depend on the type of gold item being checked for purity. Because purity is essential for gold coin or gold bullion bar values, assaying gold contents is therefore critical. The main reason for assaying gold bullion products is to make sure they meet the standards claimed by their respective issuing mint, meeting the minimum purity requirement for a particular gold coin or gold bar stamping.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Lithium Ion Battery (Battery Assembly)

Lithium batteries are now powering a wide range of electrical and electronical devices, including laptop computers, mobile phones, power tools, telecommunication systems and new generations of electric cars and vehicles. Lithium-ion (Li-ion) batteries, also known as secondary batteries, are rechargeable batteries in which lithium ions move from the negative electrode, usually made of carbon, to the positive electrode made of a metal oxide (nickel, manganese and cobalt) during discharge, and back when charging. The electrolyte is typically a mixture of organic solvents, such as ethylene carbonate, dimethyl carbonate or diethyl carbonate, containing complexes of lithium ions, such as lithium hexafluorophosphate (LiPF6), The India lithium-ion battery market is expected to grow at a robust CAGR of 29.26% during the forecast period, 2018-2023. The Indian automobile sector is one of the most prominent sectors of the country, accounting for nearly 7.1% of the national GDP. The industry produced a total of 25.31 million vehicles, including commercial, passenger, two, and three vehicles and commercial quadricycle in April-March 2017, as against 24.01 million in April-March 2016. However, India has set itself an ambitious target of having only electric vehicles (EV) by 2030, which is expected to increase the demand for lithium-ion batteries in India, significantly.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Lithium Ion Battery (Battery Assembly)

Lithium ion batteries are those that can be recharged. Lithium batteries are now powering a wide range of electrical and electronical devices, including laptop computers, mobile phones, power tools, telecommunication systems and new generations of electric cars and vehicles. The India lithium-ion battery market is expected to grow at a robust CAGR of 29.26% during the forecast period, 2018-2023. India has set itself an ambitious target of having only electric vehicles (EV) by 2030, which is expected to increase the demand for lithium-ion batteries in India, significantly. The high cost, associated with batteries that are used in the electric vehicles, is considered to be critical for India's ambitious target. To counter this, the Government of India is planning to set up lithium-ion battery manufacturing units in India, aggressively. This facilitates the development of new technologies and ensures a high quality product.
Plant capacity: 90 Volt, 180 AH Lithium Ion Battery Pack: 56 Nos./DayPlant & machinery: Rs 503 lakhs
Working capital: -T.C.I: Cost of Project: Rs 1382 lakhs
Return: 31.00%Break even: 56.00%
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  • 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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