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Best Business Opportunities in Liberia, Africa- Identification and Selection of right Project, Thrust areas for Investment, Industry Startup and Entrepreneurship

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Bioplastic Film

Plastic materials have made entry in every sphere of human life because of its superior characteristics such as durability, strengths, shape and moldable property, since these plastics have high molecular weight & tightly bonded together these are non-degradable, rendering their disposal difficult, which inversely leads to negative impact on the environment. Thus the concept of biodegradable plastic came as a solution which could be produced and degraded by microorganism in the environment when proper condition such as sunlight, moisture, oxygen etc. are available. Biodegradable plastics are the type of plastics that undergo decomposition over a period of time under composting conditions. The global biodegradable plastics market accounts for less than 1% of the overall plastics market, however, it is expected to grow at a fast pace over the next 5 years. The market growth is driven by continuous R&D activities, increased environmental awareness, and implementation of stringent environmental regulations. Bio based biodegradable plastics find their application in a variety of sectors, including fibres, medical, packaging, and agriculture. The demand for bio based biodegradable plastics is massive in the packaging sector, and it is anticipated that status quo will be maintained in the next five years as well. Other prominent sectors which will create robust demand for bio based biodegradable market include agriculture and medical. Biodegradable plastics have found their end-use in a variety of commercial applications. It is estimated that packaging and disposable house wares drive the biodegradable market. Foam packaging continues to represent significant market share for biodegradable plastics. Compostable bags, as well as single-use carrier plastic bags, follow foam packaging in terms of volume. Another developing use for biodegradable plastics is in the shale gas industry, where they are used during hydrofracking as more environmentally friendly proppants to “prop open” fractures in rock layers so oil and gas can be released.
Plant capacity: Bioplastic Film 25 Micron: 1,500,000 Kgs per AnnumPlant & machinery: 185 Lakhs
Working capital: -T.C.I: Cost of Project: 617 Lakhs
Return: 28.00%Break even: 60.00%
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Production of Bioplastic Film using Biodegradable Resin, PLA (Polylactic Acid)

Production of Bioplastic Film using Biodegradable Resin, PLA (Polylactic Acid). Biodegradable Film Manufacturing Business - Sustainable Alternative to Plastics Bioplastic is a biodegradable material that come from renewable sources and can be used to reduce the problem of plastic waste that is suffocating the planet and polluting the environment. These are 100% degradable, equally resistant and versatile, already used in agriculture, textile industry, medicine and, over all, in the container and packaging market, and biopolymers are already becoming popular in cities throughout Europe and the United States for ecological reasons: they are known as PHA. Advantages of Bioplastics: • They reduce carbon footprint • They providing energy savings in production • They do not involve the consumption of non-renewable raw materials • Their production reduces non-biodegradable waste that contaminates the environment • They do not contain additives that are harmful to health, such as phthalates or Bisphenol A • They do not change the flavor or scent of the food contained Growth of Bioplastics The predicted growth in the production of bioplastics is being driven by a number of factors, including: • The fluctuating cost of petroleum and the drive for independence from fossil fuels • increasing availability of bioplastics and decreasing cost as greater volumes are produced • Environmental and social impacts of petrochemical-based plastics including carbon footprint, sustainability, pollution involved in end-of-life disposal and health concerns such as leaching of chemicals from plastic packaging into food products • Branding and product differentiation as manufacturers perceive a marketing advantage • Waste minimization regulations • The fact that plastic products are useful and we’ve become used to using them. Biodegradable Plastic Film are known for being biodegradable and eco-friendly. PLA and PLA blends generally come in the form of granulates with various properties, and are used in the plastic processing industry for the production of films, fibers, plastic containers, cups and bottles. PLA is also the most common type of plastic filament used for home fused deposition modeling. Market Outlook With increasing concerns over the use of plastics, sustainable alternatives to plastics are increasingly in demand. Biopolymers in general and bioplastics in particular, present one such sustainable alternative. The global biodegradable plastics market is expected to reach ~16.8 billion by 2022 with CAGR ~8.4% between 2016-2022. Rising consumer awareness about global warming and government legislation such as banned on plastic bags will increase the demand for biodegradable plastics across the globe. Plastics that decompose to carbon dioxide and water under the actions of microorganisms is known as biodegradable plastics. Biodegradable plastics are produced by fermentation of sugar or canola oil to produce polylactic acid (PLA) or polyhydroxyalkanoates (PHA) which in turn converted into biodegradable plastics. A sustainable alternative to traditional plastics, bioplastics are plastics that are fully or partially biobased, and/or biodegradable or compostable. In other words, they are plastics that are made from renewable resources such as corn, tapioca, potatoes, sugar and algae and breaks down faster than traditional plastics, which are typically made from petroleum, and other fossil resources such as natural gas. Bioplastics have numerous applications like packaging, bottles, utensils, furniture etc. Globally, the production capacity of bioplastics is highest in Asia followed by South America and Europe. As Asia and South America are closer to where feedstock is grown, the production capacity of bioplastics is higher in these regions. Growing sensitivity to climate change and increasing prices of oil have together contributed to rise in demand of bioplastics products. New high performance bioplastics is being introduced in the market that can withstand higher temperatures. Many companies are also planning to substitute feedstock with some other biobased material or nonfood alternative feedstock from biomass, so as to reduce their dependency on feedstock availability. Polylactic acid-based biodegradable plastics dominate the biodegradable plastics market. This is due to large scale application in packaging industry owing to superior properties such as high mechanical strength and low toxicity. Polylactic acid is fermented by action of wheat starch and corn starch which provide a good appearance to various products across the end user industries. Starch based biodegradable plastics are expected to overtake polylactic acid based biodegradable plastics over the forecasted period owing to high tensile strength and impact resistance in packaging and consumer goods. Bio based biodegradable plastics find their application in a variety of sectors, including fibres, medical, packaging, and agriculture. The demand for bio based biodegradable plastics is massive in the packaging sector, and it is anticipated that status quo will be maintained in the next five years as well. Other prominent sectors which will create robust demand for bio based biodegradable market include agriculture and medical. The adoption of bioplastics in rigid packaging was the highest in 2017 and is expected to grow at the same pace throughout 2024. For instance, the commercialization of co-extruded double or multiple layer film products has gained momentum in the recent years. It is also finds applications in various end-use industries such as flexible packaging, textile, agriculture, and horticulture, consumer goods, automotive, electronics, building and construction, and others. Biodegradable Packaging The biodegradable packaging market is expected to witness the fastest growth than that compared to the plastics packaging market. The biodegradable packaging market is a relatively new market however; it is expected to capture the existing market share of the non-biodegradable plastic packaging market. The food packaging and beverage packaging market is expected to play a crucial role in driving the overall global biodegradable packaging market. However, lack of government support especially in the developed countries is expected to curb the growth of the market. The presence of huge price difference between the biodegradable packaging and other conventional packaging is further expected to hamper the growth of the market. Tags Production of Biodegradable Plastic Films, Production of Biodegradable Plastic Packaging Film, Production of Bioplastic Products, Bioplastic Production, Bioplastic Film for Food Packaging, Production of Bioplastic, Bioplastic Manufacturing Process Pdf, Bioplastic Production Process, Bioplastic Production PPT, Bioplastic Manufacturing Plant, Biodegradable Plastic Manufacturing Process, Film Production from Bioplastics, Bioplastic Film Production, Bio Plastic Films, 100% Recyclable & Biodegradable Plastic Film, Bioplastics Film, Bioplastics Industry, Bioplastics Industry, How to Start a Biodegradable Plastic Manufacturing Company? Applications of Bioplastics, Compostable Bioplastic Manufacturing, Biodegradable and Compostable Alternatives to Conventional Plastics, Biodegradable Plastic, Bioplastic Production, Project Report on Compostable Bioplastic Manufacturing Industry, Detailed Project Report on Compostable Bioplastic Manufacturing, Project Report on Bioplastic Film Production, Pre-Investment Feasibility Study on Bioplastic Film Production, Techno-Economic feasibility study on Bioplastic Film Production, Feasibility report on Compostable Bioplastic Manufacturing, Free Project Profile on Bioplastic Film Production, Project profile on Bio plastic Film Production, Download free project profile on Compostable Bioplastic Manufacturing, Corn Starch Bioplastic Film, Bioplastic film compounds, Bioplastic Films Replacing Conventional Plastic Films, Compostable and Renewable Flexible Packaging Films
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Bioplastic Film

Biodegradable plastics are the type of plastics that undergo decomposition over a period of time under composting conditions.A bioplastic is a plastic that is made partly or wholly from materials derived from biological sources, such as sugarcane, potato starch or the cellulose from trees and straw.Bioplastic film compounds are used for products like shopping bags, fruit and vegetable bags as well as for labels, agricultural applications and a lot more. The biopolymer films market is slated to cross USD 6 billion by 2024. In 2018, global demand for these polymers is 360,000 metric tons, but total consumption of biodegradable polymers is expected to increase to almost 550,000 metric tons by 2023. This facilitates the development of new technologies and ensures a high quality product.
Plant capacity: Bioplastic Film 25 Micron: 5000Kgs/DayPlant & machinery: Rs. 184 lakhs
Working capital: -T.C.I: Cost of Project: Rs. 616 lakhs
Return: 28.00%Break even: 60.00%
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Bioplastic Carry Bags and Garbage Bags

BioPlastic shopping bags, carrier bags, or plastic grocery bags are a type of bioplastic bag used as shopping bags and made from various kinds of bioplastic.A bioplastic carrier bag also looks exactly like a traditional carrier bag. Additionally, the bioplastic carrier bag is just as strong and sturdy with the same capacity and tensile strength. The big difference is the environmentally friendly degradation of the waste and CO2 neutral impact of the biomass used.The bags offered by us are 100% compostable. The packaging applications are expected to experience significant growth with biodegradable mulch films, compostable waste bags, catering products, film packaging, and rigid packaging. The analysts forecast global bioplastics market to grow at a CAGR of 29.3% during the period 2016-2020.Entrepreneurs who invest in this project will be successful. Few Indian major players are as under • Arihant Industries Ltd. • Baroda Polyplast Ltd. • Jain Plastics & Chemicals Ltd. • Karwa Consolidated Mktg. Ltd. • Paradise Plastics Enterprise Ltd. • Shakun Polymers Ltd.
Plant capacity: Bioplastic Carry Bags (8"x16") Size: 3500 Kgs/Day Bioplastic Garbage Bags (950x810 mm) Size: 1500 Kgs/DayPlant & machinery: Rs. 62lakhs
Working capital: -T.C.I: Cost of Project: Rs 396 lakhs
Return: 30.00%Break even: 60.00%
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Matchbox Manufacturing Business

Matchbox Manufacturing Business. Start a Match Box, Matchstick Factory. Safety Matches Production Matchsticks are a very handy tool used in starting a fire. They are used in the kitchen to light ovens, kerosene stoves and cookers. Other application involves starting a fireplace, industrial burners, camp fire or to light candles. Matchsticks are made from plastic material, wood or cardboard strips. Matchsticks are used to start fire under controlled conditions. They are used in many homes for starting fire for cooking. They are also used industrially for starting fire when heat energy is needed and for burning waste materials. Matches are sold in quantity. There’s the wooden type, which are packaged in boxes. And there are paper matches, which are clustered in rows stapled into matchbooks. Because matches are used in almost every home and in almost every industrial establishment, the demand for matches is always high. This means there is huge profit potential in the matchstick production business. Market Outlook India makes four crore matchboxes per day and these are the cheapest in the world. Every third matchbox used in the world is Indian. The industry produces 90 million bundles a year; each bundle has 600 matchboxes and each box has between 40 and 50 sticks. Wooden match production in India is split into three sectoral categories: the mechanized large-scale sector; the handmade small-scale sector; and the cottage sector. 82% of total match production is in the handmade small-scale (67%) and cottage (15%) sectors, where technology has remained relatively simple. These two non-mechanized sectors of the match industry are distinguished primarily by output size. Officially, the cottage industry in match making is defined as any manual production unit producing less than 75,000 cases of match boxes per year. As matchsticks are consumer durable product it demands branding activity to get the market share. Matchsticks are sold in volume. The success of this business depends on the strong channel network. Billions of matchboxes are used all over the world in a day for different purposes like to light the cooking gas, fireplace, incense sticks or cigarette etc. This gives a huge demand for the matchstick manufacturing business. The production of wooden matchsticks is a great option to select. There is a huge demand for matchsticks and billions of matchboxes are used on daily basis. The matchsticks come to great purpose as it creates fire and fire has a great need in daily life like to cook, light candles, cigarettes and others. Any individual can initiate the matchstick manufacturing business on a small scale with maintaining safety measures strictly. Matchsticks are consumer durable product and the demand is growing day-by-day. An entrepreneur having knowledge in channel distribution can start matchstick manufacturing business with moderate capital investment. FMCG Market in India FMCG product touches every aspects of human life. These products are frequently consumed by all sections of the society and a considerable portion of their income is spent on these goods. Apart from this, the sector is one of the important contributors of the Indian economy. This sector has shown an extraordinary growth over past few years, in fact it has registered growth during recession period also. The future for FMCG sector is very promising due to its inherent capacity and favorable changes in the environment. Fast-moving consumer goods (FMCG) sector is the 4th largest sector in the Indian economy with Household and Personal Care accounting for 50 per cent of FMCG sales in India. Growing awareness, easier access and changing lifestyles have been the key growth drivers for the sector. The urban segment (accounts for a revenue share of around 55 per cent) is the largest contributor to the overall revenue generated by the FMCG sector in India However, in the last few years, the FMCG market has grown at a faster pace in rural India compared with urban India. Semi-urban and rural segments are growing at a rapid pace and FMCG products account for 50 per cent of total rural spending. The FMCG sector has grown from US$ 31.6 billion in 2011 to US$ 52.75 billion in 2017-18. The sector is further expected to grow at a Compound Annual Growth Rate (CAGR) of 27.86 per cent to reach US$ 103.7 billion by 2020. Growing awareness, easier access, and changing lifestyles have been the key growth drivers for the sector. The phenomenal growth of the FMCG industry especially in the tier II and tire III cities in India is mostly due to the improvement in the standard of living of the people of such cities and the rise in the level of disposable income Both the organized and the unorganized sectors are largely responsible for the success of the Indian FMCG industry. The Indian FMCG market also has a well-defined and established distribution network that makes products available even in the most urban areas of the country. Tags #Match_Box_Making_Plant, #Matchbox_Making_Business, #Match_Box_Production, #Manufacturing_of_Match_Box, #Production_and_Manufacturing_of_Match_Box, #Safety_Matches_Manufacturing_Process, How Matches are Made? What are Matches Made of? Match Box Manufacturing Plant, Match Box Manufacturing Plant Cost, How to Start a Match Box Factory, Matchbox Industry, Match Industry in India, Safety Matches Production Business, Safety Matches Production, Safety Match Making Business, Profile on Production of Matchbox, Small Manufacturing Business, Project Report on Match Box Industry, Small Matchbox Unit, Wooden Match Manufacturing Process, Match Box Production Plant, Cost of Making a Matchbox, Project Report on Match Box Manufacturing Industry, Detailed Project Report on Match Box Manufacturing, Match Box (Automatic Plant), #Project_Report_on_Match_Box_Production, #Pre_Investment_Feasibility_Study_on_Safety_Matches_Production, #Techno_Economic_feasibility_study_on_Safety_Matches_Production, Feasibility report on Match Box Production, #Free_Project_Profile_on_Match_Box_Production, Project profile on Match Box Production, Download free project profile on Safety Matches Production, Starting a Match Stick Production, Match Box Making Project Report, Match Making Factory, Matches Box Manufacture, I want to start a match box factory, I want to start a manufacturing or packing business, matchstick manufacturing business, Safety Matches Manufacture, Matchstick Manufacturing, Starting a Match Stick Production, Matchstick Production, Profile on the Production of Match stick, Matchstick Production business, Matchstick Factory, Matchstick Manufacturing Business, How to Start a Match Stick Manufacturing Business, Matchsticks Manufacture
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Disposable Plastic Syringes

Disposable Syringes are being used by doctors to inject medicines through intravenous or intramuscular ways for the treatment of diseases & also by research & development personnel. Disposable syringes are made of plastic material and are used in the field of medical and veterinary science. The manufacture of plastic syringes has been developed to such a degree that the products now satisfy the requirements and standards set by Hospital and physicians. Disposable syringes are the dominating market with a CAGR of around 6% over the forecast period i.e. 2016-2024 because disposable syringes are used only once ensuring the safety of patients. On the basis of material, glass syringe is dominating the segment and is expected to reach a value of USD 15 million by 2024 because they can be sterilized and reused. The syringes market is expected to reach USD 15.99 Billion by 2021 from USD 10.56 Billion in 2016, at a CAGR of 8.7% during the forecast period. Thus, due to demand it is best to invest in this project. Few Indian major players are as under • Albert David Ltd. • Disposable Medi-Aids Ltd. • Hindustan Syringes & Medical Devices Ltd. • Lifeline Injects Ltd. • Lifelong Meditech Ltd. • Oyster Medisafe Pvt. Ltd. • Peekay Mediequip Ltd.
Plant capacity: Disposable Plastic Syringes 2 ml Size: 60 Boxes/Day Disposable Plastic Syringes 5 ml Size: 60 Boxes/Day Disposable Plastic Syringes 10 ml Size: 40 Boxes/DayPlant & machinery: Rs. 137 lakhs
Working capital: -T.C.I: Cost of Project: Rs 307 lakhs
Return: 13.00%Break even: 61.00%
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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 batteries are those that can be recharged. As an example, laptop or cell phone is likely to have a lithium ion battery. 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 India lithium-ion battery market is expected to grow at a robust CAGR of 29.26% during the forecast period, 2018-2023. 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 90 lakhs
Working capital: -T.C.I: Cost of Project: Rs 1076 lakhs
Return: 34.00%Break even: 55.00%
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Bicycle Tyre & Tubes Production from Natural Rubber

Bicycle Tyre & Tubes Production from Natural Rubber. How to Start a Tire and Tubes Manufacturing Business Tyres are one of the most important components of a bicycle build. Bicycle tires perform an important function of eliminating the shock transferred through the front and rear wheels as they travel on uneven and rough surfaces; effectively gaining traction on the road so that the bicycle can travel properly and doesn’t slip. It is also used for hand cycles and specially designed wheelchairs for racing purposes. The complete tire system provides ideal suspension, produces the longitudinal force essential for propulsion and braking, and creates the lateral force required for turning and balancing. A bicycle tire is a tire that fits on the wheel of a bicycle, unicycle, tricycle, quadracycle, bicycle trailer, or trailer bike. They may also be used on wheelchairs and handcycles, especially for racing. Bicycle tires provide an important source of suspension, generate the lateral forces necessary for balancing and turning, and generate the longitudinal forces necessary for propulsion and braking. They are the second largest source, after air drag, of power consumption on a level road. The modern detachable pneumatic bicycle tire contributed to the popularity and eventual dominance of the safety bicycle. There are various grips offered in the market, which enhance traction between the wheels and the road and increase performance at high speeds and on uneven and rough terrains. The recent removable pneumatic bicycle tire contributed to the acceptance and enhanced safety operation of bicycle. Over the years, with bicycles becoming more advanced and efficient, advanced bicycle tires have been developed to improve riding performance and capability. Over the several years manufacturers were keen on reducing the bicycle’s body weight and enhancing strength, so it may travel at a desirable speeds. Tube Bicycle tubes are the backbone of the bicycle industries. Few numbers of companies in organized sector are engaged in the quality grade cycles tyres and tubes and few unorganized sector also engaged to manufacturing bicycle tyre and tubes. An inner tube is basically a doughnut-shaped balloon, with a valve for inflation. The only requirement for an inner tube is that it should not leak. Being rubber, they have no rigid structure. If an inner tube is inflated outside of a tyre, it will expand to 2 or 3 times its nominal size, if it doesn't explode first. Without being surrounded by a tyre, an inner tube can't withstand any significant air pressure. Market Outlook The bicycle tires market possesses a lot of potential for growth in the research and development division. Also, the market for bicycle tires has increased due to development in the overall bicycle market, as consumers are more attracted towards safety and riding comfort. In a bicycle, tires are the most important component and the replacement rate of the tires is high, owing to the high rate of friction between the tire and road. The aftermarket for replacement and services is projected to remain healthy over the forecast period as consumers will try to keep their bikes up to the mark. Moreover, in developed nations, the ability to ride at faster speeds with comfort is estimated to drive growth of the bicycle tires market in the near future. Furthermore, growth in racing and adventure sports, such as dirt biking and off-road riding will fuel growth of the overall bicycle tires market in the coming future. Events, such as the Tour de France, Olympics and other bicycle professional races will propel growth in the bicycle tires market and force manufacturers to come up with new product and goods, which are more capable for ideal riding. The emergence of eco-friendly bicycle tires is one of the major trends being witnessed in the global bicycle tires market 2019-2023. The products used in manufacturing rubber compounds are polluting the environment. The increasing air pollution is pushing manufacturers to reduce the emission from the manufacturing process. Thus, such environmental concerns have paved the way for innovation in terms of eco-friendly tires that are manufactured using pure rubber compounds and low-aromatic oils. Low-aromatic oils have low levels of harmful compounds, which makes them highly durable and non-carcinogenic. The bicycle tires market has been majorly driven by increasing users of bicycles in the recent years. Various factors such as environmental concerns, health and fitness, among others have compelled pedestrians to make use of bicycles for their regular commute. Thereby, the market has witnessed an increasing demand for new bicycles for various applications such as regular on-road use, off-road biking and sports. As a result, the bicycle tire market has been witnessing an increased demand for various types of on-road and off-road tires. Moreover, with ongoing product innovation in the tubeless and airless tires segments, the market is expected to witness significant growth during the forecast period. The Growing popularity of premium bicycles around the world is attributable to the increasing acceptance of premium bicycle that provide better riding and safety features. These bicycles are built using advanced technologies and modern designs by incorporating high- end materials to offer comfort and durability. The major reason for the growth of premium bicycle is increasing average disposable income and increasing dual household income. The increasing demand for premium bicycles is increasing the demand for the high- quality components and uniqueness in the bicycle tire. Such factors increase the revenue of the bicycle tire manufactures. Therefore, the growing demand for premium bicycles is expected to drive the demand for the market. Indian Tyre Industry The Indian Tyre industry is expected to show a healthy growth rate of 9-10% over the next five years. The domestic tyre industry is expected to post volumes growth of 7-8 per cent to 1,805 lakh tyres during FY2018. Indian tyre industry has been reporting good growth figures over the past few years, spurred by the growing passenger vehicle and two-wheeler market. It has emerged as one of the most competitive markets in the world and with the emergence of new technology, ultra-modern production facilities and availability of raw materials, the sector is poised to grow further. Tyre Inner Tubes Tyre inner tubes are the internal components of the primary tyre which are designed to sustain air pressure. Majority of the tyres which are used in motorcycles, bicycle and large vehicles such as tractors, heavy trucks, cars, and buses are designed for their application with inner tubes. These are made from impermeable materials such as synthetic, elastic, soft rubber for the purpose of avoiding air leakge and are torus shaped in nature. In addition, inner tubes which are larger in size possess the ability to be re used for other applications such as rafting and swimming. These tubes are large inflatable toruses which are manufactured for these applications while also offering a choice of decks, handles, fabric covering, colors and other various accessories, eliminating the protruding valve stem. The global inner tube industry is dependent on raw materials such as rubber suppliers as well as the buyers which mainly include automotive manufacturers. More than half of the global rubber production goes into the manufacturing of automotive tyres. In addition, the inner tube and tyre industry serve as the largest application segment in the overall rubber industry. Tags #Bicycle_Tires, #How_are_Bicycle_Tires_made, #Tyre_Manufacturing_Process_Pdf, #Tyre_Manufacturing_Process_PPT, #Bicycle_Tires_Production, Tyre Manufacturing Process Flow Chart, #Bicycle_Tyres_&_Tubes_from_Natural_Rubber, How are Bicycle Tyres Made, Tyre Manufacturing, Tyres Manufacturing Plant, Bicycle Tube Production, Bicycle Natural Rubber Tube, Profile on Production of Inner Tubes and Tires, Inner Tube Manufacturing Process Pdf, Rubber Tube Manufacturing Process, Bicycle Tyre & Tubes Production, Cycle Tubes Manufacture, Natural Rubber Tube Manufacture, Manufacturing of Tyres and Tubes, How to Start a Bicycle Tyres Manufacturing Business, Bicycle Tyres Manufacturing Plant, Bicycle or Cycle Tyre and Tube Manufacturing Industry, #Project_Report_on_Bicycle_Tyre_&_Tubes_Production_Industry, Detailed Project Report on Bicycle Tyre & Tubes Production, Project Report on Bicycle Tires, #Pre_Investment_Feasibility_Study_on_Rubber_Tube_Manufacturing, Techno-Economic feasibility study on Bicycle Tyre & Tubes Production, #Feasibility_report_on_Bicycle_Tyre_&_Tubes_Production, #Free_Project_Profile_on_Bicycle_Tires, Project profile on Bicycle Tyre & Tubes Production, Download free project profile on Bicycle Tires, Production of Bicycle Tyre & Tubes
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Biomedical Waste Recycling Industry

Biomedical Waste Recycling Industry. Start a Medical or Hospital Waste Management Business Biomedical waste (BMW) is any waste produced during the diagnosis, treatment, or immunization of human or animal research activities pertaining thereto or in the production or testing of biological or in health camps. It follows the cradle to grave approach which is characterization, quantification, segregation, storage, transport, and treatment of BMW. Biomedical waste is classified as a biohazard because of the disease that it might contain. Medical waste contains materials that have been contaminated by body fluids and may contain viruses, bacteria and even harmful drugs such as chemotherapy and radiation drugs. The importance of biomedical waste management should be high on any medical facility’s training and safety procedures. Bio Medical waste consists of • Human anatomical waste like tissues, organs and body parts • Animal wastes generated during research from veterinary hospitals • Microbiology and biotechnology wastes • Waste sharps like hypodermic needles, syringes, scalpels and broken glass • Discarded medicines and cytotoxic drugs • Soiled waste such as dressing, bandages, plaster casts, material contaminated with blood, tubes and catheters • Liquid waste from any of the infected areas • Incineration ash and other chemical wastes Biomedical waste can be disposed of through incineration or decontamination by heating with steam under pressure in an autoclave. Trash chutes must not be used for the transfer or disposal of biomedical waste. Classification of Biomedical Waste Approximately 75-90% of the biomedical waste is non-hazardous and as harmless as any other municipal waste. The remaining 10-25% is hazardous and can be injurious to humans or animals and deleterious to environment. It is important to realize that if both these types are mixed together then the whole waste becomes harmful. • Non Hazardous Waste This constitutes about 85% of the waste generated in most healthcare set-ups. This includes waste comprising of food remnants, fruit peels, wash water, paper cartons, packaging material etc. • Hazardous Waste Biohazard: Biological hazards, also known as biohazards, refer to biological substances that pose a threat to the health of living organisms, primarily that of humans. This can include medical waste or samples of a microorganism, virus or toxin (from a biological source) that can impact human health. It can also include substances harmful to animals. The term and its associated symbol is generally used as a warning, so that those potentially exposed to the substances will know to take precautions. Market Outlook India is likely to generate about 775.5 tonnes of medical waste per day by 2022 from the current level of 550.9 tonnes daily. Bio-medical waste in India is projected to grow at a rate higher than the overall healthcare services market driven by the expansion of the increasing awareness, improving efficiencies in the system, medical tourism, number of clinics, hospitals, rising of the ageing population and new BMW guidelines. Medical waste is the waste generated from hospitals, clinics, dental hospitals, veterinary hospitals, blood banks, and medical research institutes, laboratories. The waste may be generated during various treatments and surgeries, it may be generated during test, production or any biological research. Medical waste does not confine to used syringes and other surgical instruments but all the processes, testing and production of various biological operations. Global Medical Waste Management Market is estimated to reach $26.9 Billion by 2025; growing at a CAGR of 5.6% from 2017 to 2025. Medical waste management states to the suitable processing of waste materials produced by the healthcare institutions. These waste materials are generated at, hospitals, research institutions, health care teaching institutes, clinics, laboratories, blood banks, animal houses and veterinary institutes. Health-care waste comprises all the wastes produced by medical activities. It holds activities of diagnosis, curative and palliative, preventive treatments in the field of veterinary medicine and human. In addition, it includes the same types of waste originating from minor and scattered sources, including waste produced in the course of health care undertaken in the home (e.g. home dialysis, self-administration of insulin, recuperative care). The development of innovative manufacturing techniques for drugs and medical devices in the pharmaceuticals industry is growing rapidly. Furthermore, the growth of market is also reflected by the efficient supply of inventories required in day-to-day functioning of hospitals, clinics, and diagnostic centers. This results in generation of more waste. These by products and residues need a proper system or service for collection, transportation, disposal, and recycling of specific materials or byproducts, if required. Given the growing amount of all types of medical wastes, globally, and increasing regulatory pressure to properly dispose these wastes in a non-hazardous way, the global medical waste management market is expected to grow at a steady pace in the coming years. Medical waste refers to the waste originated within medical amenities, such as hospitals, clinics, veterinary hospitals/clinics, dental practices, physician's offices, laboratories, pharmaceutical industry, and blood banks. There are several types of medical wastes including hazardous (such as infectious, radioactive, or toxic), universal, bio hazardous (such as, red bag medical waste and sharps containers), and solid. The process of medical waste management includes transportation, treatment or destruction, disposal, and documentation of waste generated from the facility. Growing volume of medical waste, increasing focus on the management of medical waste, and stringent regulatory framework to manage these wastes safely and in an ecofriendly way are some of the factors driving the medical waste management industry. There are numerous factors driving, restraining and generating opportunities for the world medical waste management market. Rising concerns over employing eco-friendly and safe waste management and treatment process is likely to drive the market in years to come. In addition, the growing healthcare industry would generate more medical waste thereby, generating opportunity for the market. However, lack of awareness about the health hazards associated with medical waste, lack of training for proper disposal coupled with inadequate funds have hindered market growth of world medical waste management. The market is segmented in terms of disposal or treatment site, type of waste, service, treatment and geography. The treatment site for medical waste disposal can either be offsite or onsite. On the other hand, waste materials are classified as hazardous and non-hazardous waste. The market is also bifurcated in terms of waste treatment services which include collection storage, recycling & transportation, recycling and disposal of the waste. These waste could be treated by chemical treatment, incineration & autoclaving and others. On the basis of geography, the report segments the world medical waste management market into North America, Europe, Asia Pacific and LAMEA. Growing geriatric population requiring health care products and services, increasing incidence and prevalence of infectious and lifestyle diseases, expanding health care infrastructure, changing lifestyles, enforcement of various regulations for the management of biomedical waste, and increasing awareness about safety and security against the hazards caused by biomedical wastes are some factors driving the global biomedical waste management market. However, high cost of services provided by biomedical waste management players, lack of education to workers handling the waste and health care workers about importance of biomedical waste treatment and disposal are factors restraining the market. Some of the major players operating in global medical waste management industry include, BioMedical Waste Solutions LLC, Clean Harbors Inc., Daniels Sharpsmart Inc., Hawaii Bio-Waste Systems Inc. (HBW), Healthcare Environmental Services Group, Medclean Technologies Inc., Medasend Biomedical Inc., Miller Group, Republic Services Inc., REMONDIS SE & Co. KG, Suez Environnement S.A., Sharps Compliance Inc., Waste Management Inc., Stericycle Inc., and Gamma Waste Systems. Tags #Biomedical_Waste, #Medical_Waste_Disposal, #Biomedical_Waste_Management_in_India, #Biomedical_Waste_Disposal, #Bio_Medical_Waste_Management_Pdf, Bio Medical Waste Management PPT, Medical Waste Recycling, Solid Medical Waste and Recycling, Biomedical Waste Management, Industrial Waste, Hospital Waste Management, #Biomedical_Waste_and_Collection, Medical Waste Treatment, Medical & Biomedical Waste Disposal, Bio-Medical Waste Management, Biomedical Waste Treatment and Disposal, Biomedical Waste and Solid Waste Management, Hazardous and Biomedical Waste Management, Disposal of Medical Waste, Biomedical Waste Recycling, Hospital Bio-Waste Management, Hazardous Waste Management, How to Dispose of or Recycle Bio-Medical Waste, Project Report on Biomedical Waste Management Industry, #Detailed_Project_Report_on_Biomedical_Waste_Management, Project Report on Biomedical Waste Management, #Pre_Investment_Feasibility_Study_on_Biomedical_Waste_Management, Techno-Economic feasibility study on Biomedical Waste Management, #Feasibility_report_on_Biomedical_Waste_Management, Free Project Profile on Biomedical Waste Management, Project profile on Biomedical Waste Management, #Download_free_project_profile_on_Biomedical_Waste_Management, How to Start a Medical Waste Business, Starting a Medical Waste Disposal, Starting Your Own Medical Waste Disposal, How to Start a Waste Management Business, Medical Waste Disposal Cost, How to Start a Hazardous Waste Disposal Business, How to Start a Waste Disposal Business, How to Start Waste Management Business in India, Waste Management Business Plan, Commercial Medical Waste Disposal, How to Start a Biomedical Recycling Business, Managing and Disposing of Medical Waste, Medical Waste Recycling, Biomedical Waste Recycling Business
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Return: 1.00%Break even: N/A
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Bicycle Rim

A bicycle wheel is a wheel, most commonly a wire wheel, designed for a bicycle. A pair is often called a wheel set, especially in the context of ready built "off the shelf" performance-oriented wheels. Bicycle wheels are typically designed to fit into the frame and fork via dropouts, and hold bicycle tires. The first bicycle wheels followed the traditions of carriage building: a wooden hub, a fixed steel axle (the bearings were located in the fork ends), wooden spokes and a shrink fitted iron tire. A typical modern wheel has a metal hub, wire tension spokes and a metal or carbon fiber rim which holds a pneumatic rubber tire. The rim is the "outer edge of a wheel, holding the tire". It makes up the outer circular design of the wheel on which the inside edge of the tire is mounted on vehicles such as automobiles. For example, on a bicycle wheel the rim is a large hoop attached to the outer ends of the spokes of the wheel that holds the tire and tube. In cross-section, the rim is deep in the center and shallow at the outer edges, thus forming a "U" shape that supports for the bead of the tire casing. The regional demand dynamics of bicycle rims is directly correlated with the overall production and fleet of the bicycles. China is projected to dominate in terms of sales and is estimated to remain dominant in terms of demand for bicycle rims owing to increasing sales of bicycles. North America is expected to grow at significant CAGR during the forecast period in the bicycle rim market owing to increasing government regulations to support green transportation in the region.
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Return: 1.00%Break even: N/A
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