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

Nepal encourages foreign investment both as joint venture operations with Nepalese investors or as 100 per cent foreign-owned enterprises. The few sectors that are not open to foreign investment are either reserved for national entrepreneurs in order to promote small local enterprises and protect indigenous skills and expertise or are restricted for national security reasons. Nepal is close to India and China which will have the largest surge in the middle class population in the history of the world. As families become smaller and wealthier, they will start eating well. Meat consumption will rise. It will take more agricultural resources to produce more meat. Buying shares in tourism-related stocks such as hotels, airlines or restaurants is a passive way to tap this potential. You can also open a resort or travel agency in anticipation of the boom. Nepal's exports of mainly carpets, clothing, hemp, leather goods, jute goods and grain

For the past few decades, the major investment opportunities have emerged sure to give us a proper financial result (i.e, collection of the investment and generation of profit from the invested capital) are Hydro-electricity generation, Tourism and Agriculture. Even though there are other sectors and opportunities to invest time, capital and labour in, these three are the most effective and productive in the long run.

 

Business Sectors

Agriculture Industry

Agriculture employs 76% of the workforce, services 18% and manufacturing and craft-based industry 6%. Agricultural produce – mostly grown in the Terai region bordering India – includes tea, rice, corn, wheat, sugarcane, root crops, milk, and water buffalo meat. Industry mainly involves the processing of agricultural produce, including jute, sugarcane, tobacco, and grain. In trying to increase agricultural production and diversify the agricultural base, the government focused on irrigation, the use of fertilizers and insecticides, the introduction of new implements and new seeds of high-yield varieties, and the provision of credit. Although new agricultural technologies helped increase food production, there still was room for further growth. Past experience indicated bottlenecks, however, in using modern technology to achieve a healthy growth.

Government efforts to boost the agricultural economy have focused on easing dependence on weather conditions, increasing productivity, and diversifying the range of crops for local consumption, export, and industrial inputs. Solutions have included the deployment of irrigation, chemical fertilizers, and improved seed varieties, together with credit provision, technical advice, and limited mechanization.

Agriculture provides agricultural raw materials to the industries and industries produce manufactured or finished products from those raw materials. Thus, we have seen that without agricultural raw materials, agro-based industries cannot run. The development of agro-based industries depends upon the availability of agricultural raw materials.

There may be investment opportunities in:

  • Dall Mill (Split Dalls/ Pulses for Chhilke-wali Moong, Urad, Arhar, Channa, Masoor)
  • Poha (Rice Flakes)
  • Atta, Maida Suji & Wheat Bran (Wheat Flour Plant) Roller Flour Mill
  • Rice Powder, Puttu and Wheat Powder
  • Biscuits & Candy
  • Rice Mill(Parboiled Rice)
  • Bakery industry, etc.

 

Hydropower Sector

The perennial nature of rivers and the steep gradient of the country's topography provide ideal conditions for the development of hydropower. Most of the power plants are run-of-river type with energy available in excess of the in-country demand during the monsoon season and deficit during the dry season. Nepal has a huge hydropower potential. Nepal's electricity generation is dominated by hydropower, though in the entire scenario of energy use of the country, the electricity is a tiny fraction, only 1% energy need is fulfilled by electricity. The bulk of the energy need is dominated by fuel wood (68%), agricultural waste (15%), animal dung (8%) and imported fossil fuel (8%). The other fact is that only about 40% of Nepal's population has access to electricity. With this scenario and having immense potential of hydropower development, it is important for Nepal to increase its energy dependency on electricity with hydropower development.

Much of the new hydropower capacity in Nepal will be built with a view to export electricity to meet growing demand for electricity in northern India, offsetting greenhouse-gas emissions by reducing the proportion of coal-burning stations in the electricity portfolio.

 

Mine and Mineral Industry

Minerals are the nonrenewable natural resources. Sustainable development of such resources helps to strengthen the national economy. Nepal is an underdeveloped country with vast natural resources such as water, minerals, forest, varieties of agricultural products and medical herbs. For the economic development of the country exploitation and proper use of such valuable resources, especially mineral resources, is extremely important. Small scale historical iron, copper, lead, zinc, cobalt, nickel mines and placer gold panning in the major rivers and many slate, quartzite, dolomite and limestone quarries were operational in many districts. Old working pits, audits, smelting places, scattered slag and remnant of mine materials stand as solid proofs of such mining activities in the past.

Limestone is by far the most important mineral resource in Nepal, followed by magnesite, lead and zinc, and marble. Limestone was mined for the production of cement and lime, as well as for construction materials. The mining sector, comprising numerous small-scale industrial minerals mining companies, was the smallest sector of Nepal’s economy.

All these indicate that Nepal is potential for metallic minerals but most of them are sub-economic to none economic prospect/ deposits.

There may be investment opportunities in:

  • Artificial Marble Tiles
  • Granite (Marble) Polishing Batti (Bar)
  • Granite Marble Cutting and Polishing Unit
  • Calcium Carbonate from Marble Chips
  • Coal Washing Unit
  • Ferro Silicon Manufacturing
  • Gypsum plaster boards
  • Beneficiation of chromium, nickel and manganese ore
  • Integrated production unit of gypsum powder, gypsum board
  • P.V.C. laminated gypsum ceiling tiles, etc.

 

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

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

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

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

 

Our Approach:

• Our research reports broadly cover Indian markets, present analysis, outlook and forecast for a period of five years.

• The market forecasts are developed on the basis of secondary research and are cross-validated through interactions with the industry players.

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

 

 

We can provide you detailed project reports on the following topics. Please select the projects of your interests.

Each detailed project reports cover all the aspects of business, from analysing the market, confirming availability of various necessities such as plant & machinery, raw materials to forecasting the financial requirements. The scope of the report includes assessing market potential, negotiating with collaborators, investment decision making, corporate diversification planning etc. in a very planned manner by formulating detailed manufacturing techniques and forecasting financial aspects by estimating the cost of raw material, formulating the cash flow statement, projecting the balance sheet etc.

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

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

We can modify the project capacity and project cost as per your requirement.
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Lithium Battery & E-Waste (Electronic Waste) Recycling Industry

Lithium Battery & E-Waste (Electronic Waste) Recycling Industry. Battery Recycling as a Business. Electronic Waste Management, Disposal and Recycling E-Waste Electronic waste, or e-waste, is a term for electronic products that have become unwanted, non-working or obsolete, and have essentially reached the end of their useful life. Because technology advances at such a high rate, many electronic devices become “trash” after a few short years of use. In fact, whole categories of old electronic items contribute to e-waste such as VCRs being replaced by DVD players, and DVD players being replaced by Blu-ray players. E-waste is created from anything electronic: computers, TVs, monitors, cell phones, PDAs, VCRs, CD players, fax machines, printers, etc. Electronics (E-waste) Recycling Electronics waste, commonly known as e-scrap and e-waste, is the trash we generate from surplus, broken and obsolete electronic devices. E-waste or electronics recycling is the process of recovering material from old devices to use in new products. Some of the benefits of e-waste recycling include: • Conservation of natural resources: E-waste has a lot of recoverable and valuable resources like plastics, gold, copper, aluminum, and iron. To preserve our natural resources, all e-waste should be recycled and reused instead of dumped into landfills. • Preventing soil contamination by toxic chemicals: E-waste can be loaded with hazardous materials like lead, chromium, mercury, chemical flame retardants, and beryllium, which can be harmful to our water and soil. Computers and servers can contain cadmium, mercury, and chromium. Flat-panel TVs and LCD screens can contain lead. • Buy-back offers for customers: Many computer and phone manufacturers provide buy-back offers for consumers who return their e-waste. By recycling this e-waste manufacturers are able to obtain a continuous supply of raw materials without the need for mining or further exploitation of natural resources. Consumers also enjoy the benefit of reduced pricing by committing to recycle cell phones, computers, and other common e-waste products. • Creating new jobs: Recycling e-waste can create jobs for people involved in professional refurbishing and recycling. It can create new markets for materials and components. Other financial benefits due to e-waste recycling include minimization of transportation costs involved in movement of raw materials from one place to another and associated labor costs. • Energy efficiency: One of the biggest advantages of recycling e-waste is considerable reduction of energy requirements. The energy cost involved in e-waste recycling is comparatively less than the cost involved in mining and processing of new materials from soil. For example, recycling of aluminum will take ninety-five percent less energy than production of fresh aluminum from raw materials. Recycling of plastics can save up to 70% energy, recycling of glass up to 40% energy, while recycling of steel can save up to 60% energy. E-waste recycling also helps reduce air pollution, greenhouse gas emissions, and dependence on oil. Lithium Battery Lithium batteries are disposable (primary) batteries that have lithium metal or lithium compounds as an anode. Depending on the design and chemical compounds used, lithium cells can produce voltages from 1.5 V to about 3.7 V, over twice the voltage of an ordinary zinc-carbon battery or alkaline cell battery. Lithium batteries are commonly used as power sources for portable electronics and implanted medical devices. Lithium batteries are used in many devices present in the workplace. They include pretty much all computers, cell phones, cordless tools, watches, cameras, flashlights, some medical devices, and vehicles ranging from golf carts, electric cars, airplanes and many others. Cell Phone Lithium Battery Batteries of all types are useful because they allow us to store energy for use whenever it is needed. Lithium Ion (Li-Ion) battery is a rechargeable battery with twice the energy capacity of a Nickel-Cadmium battery and greater stability and safety. LiIon batteries use a liquid lithium-based material for one of their electrodes. Lithium-ion batteries are used in applications that require lightweight and high-energy density solutions. These batteries provide the highest energy density per weight and are mostly used in cellular phones, notebook computers, and hybrid automobiles. Lithium Ion Battery Advantages There are many advantages to using a li-ion cell of battery. These li-ion battery advantages include: • High Energy Density: The much greater energy density is one of the chief advantages of a lithium ion battery or cell. With electronic equipment such as mobile phones needing to operate longer between charges while still consuming more power, there is always a need to batteries with a much higher energy density. In addition to this, there are many power applications from power tools to electric vehicles. The much higher power density offered by lithium ion batteries is a distinct advantage. • Self-Discharge: One issue with batteries and ells is that they lose their charge over time. This self-discharge can be a major issue. One advantage of lithium ion cells is that their rate of self-discharge is much lower than that of other rechargeable cells such as Ni-Cad and NiMH forms. • No Requirement for Priming: Some rechargeable cells need to be primed when they receive their first charge. There is no requirement for this with lithium ion cells and batteries. • Low Maintenance: One major lithium ion battery advantage is that they do not require and maintenance to ensure their performance. Ni-Cad cells required a periodic discharge to ensure that they did not exhibit the memory effect. As this does not affect lithium ion cells, this process or other similar maintenance procedures are not required. • Variety of Types Available: There are several types of lithium ion cell available. This advantage of lithium ion batteries can mean that the right technology can be used for the particular application needed. Some forms of lithium ion battery provide a high current density and are ideal for consumer mobile electronic equipment. Others are able to provide much higher current levels and are ideal for power tools and electric vehicles. Market Outlook E-Waste Recycling In India as well as other developing countries, majority of the electronic products are not recycled, which poses a serious environment and health risk. In India, E-Waste management and recycling market faces major challenges due to lack of proper regulatory interface and supporting infrastructure. E-Waste in the country is primarily generated from large household appliances and Information Technology and Telecommunications sectors. In the coming years, as the technology advances, lifespan of products would become shorter, resulting in replacement of existing products with the new ones, which would result in further increasing generation of E-Waste. Presently, the market size of e-waste in India is of 3.2 million MT and expected to touch to 20 million MT by 2020. In terms of value, it is presently of Rs 25,000 crore industry which is expected to touch Rs 125,000 crores by 2020. Fortunately, the entire industry is presently untapped by the formal sector as required under the E-waste management rules of India. India’s E-Waste market has been divided into various segments including IT and Telecom, Large Household Appliances and Consumer Electronics. Some of the key products generating most of the E-Waste in the country includePCs, mobile phones, refrigerators, washing machines, laptops, televisions, etc. Attero, Ecoreco, SIMS Recycling, Earth Sense Recycle, and TSS-AMM are the major E-Waste recycling and management players operating in the country. These players are focusing on increasing consumer awareness, while also working towards bridging the gap between the organized and unorganized E-Waste management market in India. Recycling of electronic waste includes two methods as the traditional manual disassembly method and automated process. The automated process is majorly preferred, it consists of 6 steps which are- picking shed, disassembly, first size reduction process, second size reduction process, over band magnet, non-metallic and metallic components separation and water separation. Global E-Waste Management Market is expected to garner $49.4 billion by 2020, registering a CAGR of 23.5% during the forecast period 2014 - 2020. It is one of the fastest growing waste streams in emerging as well as developed regions. The reduced life spans of electrical, electronic and consumer electronic devices are generating large E-Waste, which is growing rapidly every year. The growth of E-Waste market is supplemented by the growing need for upgrading to the latest technologies. A desire towards the adoption of new technologically advanced devices leads to generation of millions of tons of E-Waste across various regions. The high consumption of electronic goods has also resulted in Asia being the largest e-waste generators in the world. Some of the largest Asian countries that generated the most number of e-waste in terms of quantity are China, Hong Kong, Japan, and India. The awareness on the impact of e-waste has grown over the years. This has resulted in the imposition of strong legislative laws as well as the development of e-waste treatment standards and recycling technologies. Standards have been put in place to recycle waste responsibly, which will lead to the growth of the e-waste management market in India and APAC. Lithium Battery The India lithium-ion battery market is expected to grow at a robust CAGR of 29.26% during the forecast period, 2018-2023. Lithium-Ion batteries are primary batteries in which lithium compound acts as an anode. A lithium cell can produce voltage from 1.5 V to about 3 V based on the types of materials used. These batteries have a potential to achieve very high energy and power densities in high-density battery applications such as electronics, automotive and standby power. Lithium-ion batteries are now widely implemented as the power or energy source for everything from portable electronics to electric vehicles and energy & natural resources. Increasing adoption of smartphones, tablets, wearable’s, toys, power tools, personal care devices, payment devices and digital cameras among users have led to an improved demand for lithium-ion batteries in India. Increase in disposable income has led to rise in demand for electronic devices such as smartphones and tablets fueling the growth of lithium-Ion batteries in the India. Moreover, rise in government initiative to reduce pollution level are the major factors driving the Indian lithium-ion battery market. Growth in automotive sector has led to surge in demand for electric vehicles which has also supplemented the growth of lithium-Ion batteries. However, high cost and risk of fire in electronic devices may hinder the market growth in the coming years. Growth in automobile industry and growing trend of electronic devices among youth consumers would increase the demand for lithium-Ion batteries in the near future. The India lithium-ion battery market has been segmented on the basis of material type and industry vertical. By material type, the market is further segmented into cathode, electrolytic solution, anode, and other materials includes (binders, separators, and others). By industry vertical, the market is bifurcated into electronics (UPS, smart phones, laptops/tablets, and others), automotive (car, buses, and trucks, scooters and bikes, train and aircraft), industrial (mining equipment, construction equipment, smart grid), and other industry verticals. 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. The Global Lithium-Ion Battery Market size is expected reach $46.21 billion by 2022, with a CAGR of 10.8% during the forecast period (2016-2022). Lithium-ion (Li-ion) batteries are rechargeable batteries with high energy density and are mainly used in portable equipment. The market for these batteries is expected to witness a significant growth owing to their increasing use in smartphones, tablets/PCs, digital cameras, and power tools. Moreover, the demand for Li-ion batteries in the automobile industry is expected to increase with the increasing demand for electric vehicles. These batteries have gained popularity among the automobile manufacturers as they offer an alternative to nickel metal batteries used in electric vehicles, due to their small size and light weight. Tags E Waste Recycling Plant, E-Waste Recycling, E Waste Management, e Waste Recycling Plant in India, e-Waste Recycling Plant Cost, E-Waste Recycling Plant Project Report, Starting an E-Waste Recycling Plant, E-Waste Recycling Business, Electronic Waste, Business Setup for E-Waste Recycling, Electronics (E-Waste) Recycling, E-Waste or E-Scrap Recycling, Electronic Waste Management, E Waste Recycling and Recovery, Environment Friendly Electronic Waste Management, Electronic Waste Recycling, E-Waste Management, Electronic Waste (E-Waste) Recycling & Disposal, Disposal of Electronic Waste (E-Waste), Electronic Waste Disposal, E-Waste (Electronic Waste) Recycling and Management, Battery Recycling, Recycling of Automotive Lithium-Ion (Li-Ion) Batteries, Lithium-Ion Battery Recycling, Battery Recycling Plant, E – Waste Management Project, e-Waste Management Project Report Pdf, Cost of Setting up E-Waste Recycling Plant in India, E-Waste Project Ideas, e-Waste Management Project in India, Lithium Battery Recycling Process, How to Recycle Batteries, Lithium-Ion Battery Recycling Industry, Recycling the Hazardous Waste of Lithium Ion Batteries, Li-Ion Batteries Recycling, Battery Scrap Recycling, Project Report on Battery Recycling Industry, Detailed Project Report on E-Waste (Electronic Waste) Recycling, Project Report on Li-Ion Batteries Recycling, Pre-Investment Feasibility Study on E-Waste (Electronic Waste) Recycling, Techno-Economic feasibility study on Lithium-Ion Battery Recycling, Feasibility report on e-Waste Management, Free Project Profile on Lithium-Ion Battery Recycling, Project profile on Li-Ion Batteries Recycling, Download free project profile on E-Waste (Electronic Waste) Recycling, E-Waste & Lithium Battery Recycling, Recycling the Hazardous Waste of Lithium Ion Batteries, Lithium Battery Disposal & Recycling, Batteries & Electronic Waste, Electric, Electronic Waste and Batteries Recycling Business, Disposal of Batteries, Battery Recycling Industry
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Return: 1.00%Break even: N/A
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Production and Processing of Turpentine Oil

Production and Processing of Turpentine Oil. Fractionation of Turpentine Oil Turpentine (also called spirit of turpentine, oil of turpentine, wood turpentine and colloquially turps) is a fluid obtained by the distillation of resin obtained from live trees, mainly pines. It is mainly used as a solvent and as a source of materials for organic synthesis. Turpentine is composed of terpenes, mainly the monoterpenes alpha-pinene and beta-pinene with lesser amounts of carene, camphene, dipentene, and terpinolene. Turpentine oil is made from the resin of certain pine trees. It is used as medicine. Turpentine oil is a multicomponent mixture of turpene hydrocarbons, and its composition depends to a great extent on the nature of the raw material. Turpentine oil is widely used in industry as a solvent for varnishes and paints and as a raw material in the production of camphor, terpin hydrate, Flotation Oil, lubricating oils, insecticides, and perfumes. In medicine, turpentine oil is used in a preparation that acts as a local stimulant, anesthetic, and antiseptic. It is used externally in ointments for neuralgia and myositis. Turpentine oil works as a feedstock chemical in the manufacture of flavorings, pinenes, pine oil, polymer additives and fragrances. It is also used as a commercial source of fuel and as an alternative of fossil fuels in a broad range of applications such as furnaces, rocket fuels and industrial boilers. Turpentine oil has a low healing coefficient ranging between 16,000 & 18,000 Btu/lb as compared to other fossil fuels such as gasoline, diesel, butane and propane. Turpentine oil is one of the major product that exported from India. The global turpentine oil market is foreseeing maximum growth potential due to rapid increase in the demand for environment friendly products coupled with increase in consumption of household and personal care products. In addition, rise in manufacture of several chemical products which are widely used as fragrance agents, flavoring agents and solvents are some other major factors driving the growth of global turpentine oil market. However, factors such as decrease in production of paper, easy availability of cheaper petroleum products as well as low recovery of turpentine from Kraft wood process are some of the major aspects hindering the growth of turpentine oil market. Turpentine oil market is classified based on product type, application and geography. Different product types of turpentine oil market include camphene, limonene, alpha-pinene, beta-pinene and others. On the basis of application, turpentine oil market is segmented as paints & inks, camphor, aromatic chemicals, adhesives and others. Based on geography, market is divided into North America, Latin America, Europe, Asia-Pacific and Middle East & Africa. Tags Fractionation of Turpentine Oil, Turpentine Oil, Turpentine Oil Production and Processing, Turpentine Oil from Pine Resin, Essential Oil of Turpentine, Turpentine Oil Uses, Turpentine Oil Formula, Composition of Turpentine Oils, Turpentine Essential Oil, Turpentine Oil Refinery and Fractionation Plant, Pine Resin Processing and Production of Turpentine Oil, Turpentine Oil Industry, Turpentine Oil Manufacturing, Turpentine Oil Manufacture, Project Report on Turpentine Oil Industry, Detailed Project Report on Turpentine Oil Production, Project Report on Turpentine Oil Production, Pre-Investment Feasibility Study on Fractionation of Turpentine Oil, Techno-Economic feasibility study on Fractionation of Turpentine Oil, Feasibility report on Fractionation of Turpentine Oil, Free Project Profile on Fractionation of Turpentine Oil, Project profile on Turpentine Oil Production, Download free project profile on Turpentine Oil Production, Turpentine Oil Production, Turpentine Industry, Turpentine Oil Manufacturing Process, Turpentine Oil Fractionation
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Return: 1.00%Break even: N/A
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Tennis-Ball Factory. Cricket Tennis Ball Manufacturing Business

A tennis ball consists of a pressurized rubber core covered with high-quality cloth, usually wool mixed with up to 35 percent nylon. Balls gradually go soft with use, and in tournament play they are changed at regular intervals agreed upon by officials and depending upon such factors as the court surface. Balls must have a uniform outer surface, and, if there are any seams, they must be stitchless. The ball must be yellow or white, between 2.5 and 2.8 inches (6.35 and 7.14 cm) in diameter, and between 1.975 and 2.095 ounces (56 and 59.4 grams) in weight. The ball must have a bounce between 53 and 58 inches (135 and 147 cm) when dropped 100 inches (254 cm) upon a concrete base. Tennis ball can easily be used to play cricket. Tennis ball will work fine and swing on pitch but when it will hit on the ground by any batsman, the speed with which it will travel on grass will reduce it drastically. The global tennis balls market was valued at USD 423.8 million in 2015. The global tennis balls market accounted for the second-highest share of the global tennis equipment market. The world Tennis Balls market is highly competitive and concentrated due to the presence of large number of global and regional Tennis Balls vendors. The prime focus of all key players active into this market is to focus on developing their technological expertise. These factors are expected to boost the product portfolio and sustain in Tennis Balls industry for longer period of time. Vendors of the Tennis Balls market are also focusing on Tennis Balls product line extensions and product innovations to increase their Tennis Balls market share. The market of Tennis Balls industry tends to be saturated in economic developed regions and the consumer market in the region of emerging economies such as China, India, Brazil, etc. is on the rise, the demand for Tennis Balls industry will increase unceasingly. Among them, the average output growth rate of Tennis Balls industry in China is 2.2%. Besides, our analysts believe that it will increase rapidly with an average growth rate of 2.8% (5 years) in the next 5 years. Sports Equipment Industry India has emerged as an important supplier of quality sports goods in the global market over the last few years. Presently, sports goods in the country are being exported to more than 100 countries across the world and are in demand in some of the most developed nations in the world. The industry is swiftly embracing new technologies and adapting its products in order to keep pace with the rapidly changing global trends. With robust and booming domestic market for sporting equipment’s, the growth momentum of the domestic industry is supported by its huge pool of skilled workforce, well established supporting and ancillary industries and availability of basic raw materials required for the industry. The major sports goods manufactured in India comprises of a huge variety of cricket bats, inflatable balls, cricket balls, racquets, and nets, fishing equipment, carom board, boxing equipment’s and others. The country’s sports equipment’s market was valued at INR ~ million as of FY’2013. The total exports of Indian sports equipment’s in India grew by 10.1% in FY’2013 and were valued at INR ~ million. Inflatable balls, cricket bats, sports nets and protective equipment’s for cricket have been the most commonly exports sports equipment’s from India to countries across the globe accounting for ~% share in the market. The global sports equipment and accessory market is growing robustly and is characterized by swift adoption of newer technologies and openness to changing trends. The industry is thriving immensely on e-commerce, which is a popular retail medium nowadays that also offers consumers the benefit to compare all the available brands of sports equipment. It is a one-stop shop for all sports accessories and equipment, which in turn enhances the salability in the global sports equipment market. The global sports equipment market size was valued at USD 66.30 billion in 2016. It is anticipated to register a CAGR of 3.5% over the forecast period. Rapid technological advancements and continual innovations to keep pace with dynamic consumer preferences are working in favor of the market. Moreover, product improvement through R&D activities and an emergence of e-commerce is likely to fuel growth of the sports equipment market in the near future. North America is the major market for sports equipment, followed by Europe and Asia Pacific. In North America, the U.S. and Canada dominate the sports equipment market. Asia Pacific is expected to be the fastest growing market for sports equipment during the forecast period. Rising awareness regarding general health and fitness is one of the primary growth stimulants for the market. Also, constant improvements in materials used for manufacturing of sports equipment are helping enhance product performance, thereby boosting the adoption rate. For instance, with advancements in sensor technologies, consumers are increasingly demanding equipment that can provide them with relevant insights into performance. Tags Tennis Ball Manufacturing, Cricket Tennis Ball Manufacturing Process, Tennis Ball Factory in India, Tennis Ball Production, How to Manufacture Tennis Ball? Tennis Ball Making Business, Tennis Ball Manufacturing Process, Tennis Ball (Used in Playing Cricket), How Tennis Balls are made? Manufacturing of Tennis Ball, How to Make Tennis Ball, Tennis-Ball Factory, Manufacture of Tennis Balls, Tennis Ball, Production of Tennis Balls, Tennis Ball Industry, Tennis Balls Manufacture, Tennis Ball Production Process, Project Report on Tennis Ball Manufacturing Industry, Detailed Project Report on Tennis Ball Production, Project Report on Tennis Ball Production, Pre-Investment Feasibility Study on Tennis Ball Production, Techno-Economic feasibility study on Tennis Ball Production, Feasibility report on Tennis Ball Production, Free Project Profile on Tennis Ball Production, Project profile on Tennis Ball Production, Download free project profile on Tennis Ball Production, Tennis Ball Manufacturing business, Tennis Ball Manufacturing Factory, Tennis Ball Manufacturing Unit, Cricket Tennis Ball Manufacture
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Return: 1.00%Break even: N/A
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Surgical Disposable Hospital Apparel Manufacturing Industry

Surgical Disposable Hospital Apparel Manufacturing Industry. Production of Disposable Medical Clothing, Surgeon Gowns, Patient Gowns, Bed Sheets, Drapes, Surgeon Caps and Sheets. Disposable Medical Apparel Manufacturing Business Surgical apparel is used to provide optimal level of protection by reducing the transfer of bacteria from the skin to the surgical staff. Surgical apparel is also known as surgical clothing. Some of the surgical appeals are surgical gloves, face masks, head wear, scrub suits, chemotherapy gowns, foot wear, drapes and surgical gowns. Surgical apparel is essential as there are always microorganisms on the skin even after conducting sterilization procedure and strict hygiene. Surgical apparels protect bacteria from entering the surgical wound. Surgical apparels also protect healthcare staff from bodily fluids, blood, saline, urine and other chemicals during surgical procedure. Surgical Gowns Surgical gowns are medical products. Surgical gowns are unique attire worn by either patients or doctors/surgeons who are scheduled to undergo/perform some form of invasive medical treatment; these gowns can typically found in hospitals, health care facilities, and certain first-aid stations. The utility of a sterile surgical gown serves both patient and physician; many doctors find the gown highly compatible for the easy listening of lungs and heart function (due to the thin material typically made of cotton that comprise the average gown). For doctors, surgical gowns protect them from potentially infectious biomaterial while simultaneously preventing anything from the surgeon team infecting the patient. In terms of form, surgical gowns are short-sleeved and distinctively colored (to identify the wearer as a patient), and often when dealing with hazardous substances can be disposable (made of plastic or paper instead of cotton) to avoid proliferation of biohazards. Surgical Drapes Surgical drapes are used in operative room during surgery to cover patient’s body to eliminate the risk of surgical site contamination by separating the surgical site from the remaining part of the patient’s body, as well as from non-sterile areas of the surgical table. Surgical drapes are offered in different shapes sizes as well as therapy wise. Surgical drapes are the indispensable part of operating room and used for several applications from protecting the patient body to covering utilities. Demand for surgical drapes is increasing due to rising number of surgeries worldwide, increasing focus on infection control and rising awareness about hygiene. Surgical drapes are available in different shapes, ranges, and sizes. Surgical drapes are used for several applications from securing the patient body to covering utilities. Operations and medical examination needs isolation of the surgical site from the remaining patient body parts to prevent them from getting affected. Surgical Bed Sheets The Disposable Bed Sheets are ideal for use within medical and care facilities where there are large quantities of patients, or for individuals with moderate to heavy incontinence. These Bed Sheets are quick and easy to both put on and remove from the bed when needed. Surgeon Caps Surgeon caps are widely used by most of the leading surgeons of various leading medical institutions. These caps are most commonly used by surgeons at time of surgeries to cover the head. The Disposable Surgeon Caps are comfortable and stay in place with simple tie backs. The Disposable Surgeon Caps provide a protective layer between the patient and medical professional during surgical procedures, as well as other processes that may require additional protective layering for the clinician. It promotes hygienic and sanitation practices in a hospital or clinical setting. Market Outlook Surgical Gowns Increasing number of surgeries is a major factor contributing to the revenue growth of the surgical gowns market across the globe. A rapidly growing aging population in the world is also responsible for the increased number of surgeries, not only in developed regions but also in the Asia Pacific and the Middle East and Africa region due to the rise in per capita income. By product type, the disposable surgical gowns segment dominated the global surgical gowns market in revenue terms in 2016 and is projected to continue to do so throughout the forecast period. Disposable surgical gowns segment is the most attractive segment, with an attractiveness index of 5.0 over the forecast period. Owing to the higher protection levels provided by disposable surgical gowns, these type of surgical gowns are expected to have significant adoption over reusable surgical gowns and thus exhibit comparatively higher growth over the forecast period. The reusable surgical gowns segment is expected to be the second most lucrative segment in the global surgical gowns market, with an attractiveness index of 1.4 over the forecast period. Owing to the higher protection levels provided by disposable surgical gowns, reusable surgical gowns are expected to have lesser adoption over disposable surgical gowns and thus exhibit comparatively lower growth over the forecast period. The market is expected to reach USD 3.14 Billion by 2023 from USD 2.47 Billion in 2018, at a CAGR of 4.9%. Factors such as the increasing number of surgeries and the growing incidence of hospital-acquired infections is driving the growth of this market. Factors driving the growth of this segment include increasing adoption of surgical drapes in hospitals and ambulatory surgical centers, rising number of surgeries owing to the increasing incidences of chronic diseases, and increasing demand for prevention from surgical site infection. Surgical Drapes The global surgical drapes market exhibit the presence of several tier 1, tier 2, and tier 3 companies. Some of the prominent companies operating in the global surgical drapes market have resorted to strategies such as product differentiation, aggressive pricing, and product upgrades to buoy competitive strength. Besides these, several companies are forging distribution partnerships aimed at reached wider audiences, thereby expanding their regional and global footprint. Demand for surgical drapes is increasing due to rising patient pool, growing awareness about spread of infection, rising hygiene awareness, and technological innovation. Increasing prevalence of diseases is driving demand for more technologically efficient products. By end user, the surgical drapes and gowns market is segmented into hospitals, ambulatory surgical centers, and other end users. The hospitals segment is expected to grow at highest CAGR during the forecast period. Factors such as the rising number of patients suffering from chronic diseases, increasing number of surgeries, and improving healthcare infrastructure are driving the growth of this segment. Surgical Apparel Market The global surgical apparel market was valued at around USD 2,015.60 million in 2017 and is expected to reach approximately USD 2,966.58 million by 2024, growing at a CAGR of around 5.80% between 2018 and 2024. The Surgical apparel market is anticipated to witness significant growth within the forecast period. The market is mainly driven by growing demand for protection against clinical hazards. The apparel market is growing towards the high value-added product in medical uses. Technological advancement in the field of healthcare is considerable for the rising number of surgeries which also increases the use of surgical apparels. Growing concern about patient’s protection is also expected to boost the growth of the surgical apparel market during the forecast period. Government regulations on the quality and the price of the products may hinder the global surgical apparel market growth over the forecast period. Disposable apparels made of various non-woven materials which prevent the contamination through dry or wet contact. Depend on product type surgical apparel market is classified into gown, scrubs, gloves, caps, shoes, and others. Growing concern about patient’s protection is also expected to boost the growth of the surgical apparel market during the forecast period. Government regulations on the quality and the price of the products may hinder the global surgical apparel market growth over the forecast period. By geography, the surgical apparel market is mainly segmented into North America, Latin America, Europe, Asia Pacific, and the Middle East & Africa. Among the aforementioned regions, Asia Pacific surgical apparel market is anticipated to be the fastest growing market between 2018 and 2024. The emerging economies of the region including China, India, etc. are a major market for surgical apparels and are growing at a rapid rate over the forecast period. Tags Surgical Disposable Manufacturing Unit, Surgical Disposables, Production of Surgical Disposables, How to Manufacture Disposable Surgical Products, Surgical Disposables and Medical Disposables, Surgical Disposable Manufacture, Production of Surgical Disposables Gowns and Drapes, Surgical Disposable Products, Medical & Disposable Surgical Manufacturing Plant, Project Report on Disposable Surgical Products, Surgical Disposable Products, Surgical Products Manufacture, Surgical Products, Surgical Disposables, Medical Surgical Products, Disposable Gowns Manufacture, Surgical Gowns and Surgical Drapes Manufacture, Disposable Gown, Disposable Surgical Gown, Disposable Surgical Gown Manufacture, Surgical Gown, Production of Surgical Disposables Gowns, Manufacture of Surgical Disposable Gown, Medical Disposable Clothing, Disposable Gowns for Hospitals, Hospital Gowns, Disposable Patient Gowns, Disposable Hospital Gown, Surgical Gown Making Business, Surgeon Gown, Disposable Surgeon Gowns Manufacture, Surgical Dresses, Patients' Gowns, Patient Gown Manufacture, Medical Gown Manufacture, Surgical Drapes, Disposable Surgical Drapes, Medical Surgical Drapes Production, Surgical Disposable Manufacturing, Production of Surgical Drapes, Surgical Drape Manufacturing, Disposable Medical Products and Surgical Drapes, Hospital Bed Sheet, Surgical Bed Sheet, Disposable Surgical Sheet, Surgical Caps, Disposable Surgeon Cap, Surgical Cap Making Business, Surgeon Cap Manufacture, Surgical Apparel, Surgical Apparel Manufacturing, Medical & Surgical Apparel, Surgical Apparel Manufacturing Industry, Hospital Garments, Hospital Garments Manufacture, Project Report on Surgical Apparel Manufacturing Industry, Detailed Project Report on Surgical Disposable Manufacturing, Project Report on Surgical Drape Manufacturing, Pre-Investment Feasibility Study on Surgical Apparel Manufacturing, Techno-Economic feasibility study on Surgical Disposable Manufacturing, Feasibility report on Medical Surgical Drapes Production, Free Project Profile on Surgical Drape Manufacturing, Project profile on Surgical Disposable Manufacturing, Download free project profile on Surgical Drape Manufacturing
Plant capacity: -Plant & machinery: -
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Return: 1.00%Break even: N/A
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Plastic Battery Containers Manufacturing Business

Plastic Battery Containers Manufacturing Business. Battery Storage Containers Production Automobile battery containers are used to carry the Batteries. A battery container made of molded plastic and preferably formed in a single unitary structure. Battery containers made of molded plastic generally have internal partitions formed as integral parts of the bottom and side walls of the container and extending all the way to the top edge of the container to prevent the leakage of liquid between adjacent cells. These containers are usually formed as unitary structures in a single molding operation, with a plurality of mold cores defining the internal cavities which form the partitions. The mold is usually gated at the center of the lower end of each partition-forming cavity and the parallel end walls of the container. Market Outlook Automotive battery is a battery that can be rechargeable and supply electric energy to automotive systems and automobiles. It is mainly known as 'rechargeable battery'. The purpose of automotive batteries is to start the system and supply power to the vehicles when electrical requirements exceed the supply from the charging. It is a voltage stabilizer for voltage spikes in electrical vehicle systems and supplies power for the lighting systems and electrical accessories when the engine is not operating. India automotive lead acid battery market is leading by two wheeler battery market, followed by four-wheelers and commercial battery market. The domestic sales of two wheelers in the country stood at more than 20 million units, which are expected to grow at a rapid pace over the next 5 years. India has witnessed a tremendous growth in per capita income thereby resulting in more disposable income in the hands of its citizens. As a result, there has been a sharp increase in the sales of automobiles, particularly of the two wheelers. India has the most number of young people in the world. This is expected to spur the growth of two wheeler lead acid batteries in the forecast period. Battery market in India is mainly driven by growth in power sector, surging transportation needs, increasing battery integration in consumer electronics and rising fuel saving initiatives. In India, several government measures such as promotion of solar power and clean fuel based automobile technologies are anticipated to propel demand for batteries in the country over the course of next five years. This is projected to buoy growth in the country’s battery industry in the coming years, as batteries form an integral part of operational telecom towers and associated infrastructure. Global Automotive Batteries Market Global demand for automotive batteries is forecast to rise 13% per year to $54.1 billion in 2022, expanding to 38% of total sales. Rising manufacturing and use of motor vehicles worldwide will spur sales growth. The HEV segment will more than quadruple in size as these vehicles increasingly penetrate global markets. Electric vehicles, which use more expensive batteries than hybrids, will post particularly strong growth, boosting overall market value. While falling prices for lithium-ion batteries (on a kWh basis) will be a major contributor to growth for HEVs, a shift toward batteries with higher capacities will boost prices on a unit basis and contribute to the expanding market size. On the basis of application automotive battery market can be broadly categories as: two/three wheeler’s battery, car and light van’s battery, heavy motor vehicle (HMV’s) batteries and electric or hybrid vehicle’s battery. The automotive batteries’ capacity is defined by size, numbers of plate and strength and volume of electrolyte. Some of the most commonly used battery current rating standards are cold cracking amperes (CCA), reserve capacity (RC), Amp-Hour (AH) and power (Watts). The major application of automotive battery includes automobiles such as cars, two wheelers, and commercial vehicles. There are various types’ automotive batteries like lead acid, lithium Ion, nickel cadmium, and others. Basically lead based batteries are used in conventional internal combustion vehicles, start-stop and basic micro hybrid vehicles for the purpose of start, lighting and ignition. Lithium Ion batteries are used in plug in hybrid vehicles and Battery Electric Vehicles (BEV). This growth in the battery market is primarily attributed to the increasingly growing demand for automobiles and stringent emission standards set by numerous government agencies. The growth is further set to be assisted by increasing environmental concerns on emissions from traditional automotive batteries and offering different advantages with the advanced technologies are used in present batteries. Factors such as increasing demand for transportation, rapid expansion in the automotive industry, large-scale availability of batteries in various sizes and specifications, stringent government initiatives for electric vehicles and growing consumer preference for pollution-free electric and hybrid vehicles are fuelling the market growth. However, fluctuating raw materials prices of nickel and lead are one of the major factors hampering the market growth. In the last few years, there has been a tremendous growth in the automotive sector. The growing focus of automobile manufacturers for innovations and technological advancements are predicted to enhance the growth of the global automotive battery market in the coming years. In addition to this, the increasing efforts being taken by governments, across the globe, to reduce the carbon emission and further develop eco-friendly products to accelerate the growth of the global automotive battery market in the next few years. The global market for automotive battery is highly competitive at present and is expected to witness a significant rise in the competitive environment of the market in the coming years. The key players are making ardent efforts to enhance their product portfolio, thus supporting the overall market growth in the near future. Tags Plastic Battery Containers, Battery Containers, Plastic Moulded Battery Containers Manufacture, Plastic Battery Container Moulding, Plastic Battery Container Manufacture, Battery Container Production, Molded Plastic Battery Container, Manufacture of Battery Containers, Production of Plastic Battery Containers, Battery Storage Containers, Project Report on PVC Battery Container Manufacturing, Project Report on Plastic Battery Containers Manufacturing Industry, Detailed Project Report on Battery Container Production, Project Report on Battery Container Production, Pre-Investment Feasibility Study on Plastic Battery Containers Manufacturing, Techno-Economic feasibility study on Plastic Battery Containers Manufacturing, Feasibility report on Plastic Battery Containers Manufacturing, Free Project Profile on Plastic Battery Containers Manufacturing, Project profile on Battery Container Production, Download free project profile on Battery Container Production, Plastic Container Manufacture, Battery Container Manufacturing Business
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Return: 1.00%Break even: N/A
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Optical Fiber Cable

Cabling is the process of packaging optical fibers in a cable structure for handling and protection.An optical fiber (or fiber) is a glass or plastic fiber that carries light along its length. Fiber optics is the overlap of applied science and engineering concerned with the design and application of optical fibers. Optical fibers are widely used in fiber-optic communications, which permits transmission over longer distances and at higher bandwidths (data rates) than other forms of communications. India optical fiber cables (OFC) market is projected to grow at a CAGR of 17% through 2023.The OFC market in India is projected to reach USD424 million by 2020 on account of growing adoption of smartphones, broadband services and upcoming 4G rollout.As a whole any entrepreneur can venture in this project without risk and earn profit. Few Indian major players are as under • AkshOptifibre Ltd. • Aksh Technologies Ltd. • Apar Industries Ltd. • Birla Cable Ltd. • H T L Ltd. • Himalaya Communications Ltd.
Plant capacity: Optical Fibre Cable: 125000KM./DayPlant & machinery: Plant & Machinery: Rs 3886lakhs
Working capital: -T.C.I: Cost of Project: Rs 136992 lakhs
Return: 38.00%Break even: 62.00%
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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. 184lakhs
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: Rs396 lakhs
Return: 30.00%Break even: 60.00%
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HDPE and uPVC Pipes

HDPE resins with low ductility can lead to unexpected cracking in the pipe. These HDPE pipes and fittings have a high degree of corrosion resistance, are light in weight. Yet tough and durable, have excellent, hydraulic properties, excellent thermal properties, weather ability. HDPE pipe has been used for decades in non-potable water applications.uPVC (unplasticized polyvinylchloride) pipes and fittings exhibit excellent resistance to aggressive environments both naturally occurring and as a result of industrial activity. uPVC pipes remain neutral to all transported fluids. uPVC is completely inert and is widely used for transporting liquids made for human consumption. The India PVC pipes and fittings market will grow at a double digit CAGR over the period FY’2015-FY’2020 and is projected to reach INR 327 billion by FY’2020.The HDPE market is anticipated to increase from INR billion in FY’2018 to INR billion in FY’ 2022 at a CAGR ~% during FY’2018 – FY’2022.As a whole any entrepreneur can venture in this project without risk and earn profit. Few Indian major players are as under • AnanthaPvc Pipes Pvt. Ltd. • Apollo Pipes Ltd. • Ashirvad Pipes Pvt. Ltd. • Ashish Polyplast Ltd. • Captain Pipes Ltd. • Duke Plasto Technique Pvt. Ltd.
Plant capacity: HDPE Pipes: 5 MT/Day uPVC Pipes: 11 MT/DayPlant & machinery: Rs. 385 lakhs
Working capital: -T.C.I: Cost of Project: Rs. 720 lakhs
Return: 28.00%Break even: 56.00%
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Dry Lemon Powder and Lemon Oil

Spray dried lemon juice powder was used to enhance the acceptability and nutritive value.It reserves the most of bioactive ingredients of lemon and also its property (color, smell, and taste) Ingredient: Vitamin c, citric acid, malic acid.Lemon Essential Oil is a natural detoxifier and contains antiseptic properties that aid in clearing the face from pimples and acne. By doing so, lemon also tightens the skin, preventing wrinkles, and removes excess Oils that clog pores and cause blackheads. According to Lemons and Limes - Market Report, Analysis and Forecast to 2025", the world market of lemons and limes grew by 19% to $ 13.9 billion.The lemon juice powder market, in terms of value, is projected to reach around USD 93.94 Billion by 2021, at a CAGR of 6.0% from 2016 to 2021.The global lemon essential oils market is projected to register an estimated CAGR of 9.2%, during the forecast period, 2018-2023. Thus, due to demand it is best to invest in this project. Few Indian major players are as under • Aarkay Food Products Ltd. • Aayush Food & Herbs Ltd. • Elite Foods Pvt. Ltd. • Foods & Inns Ltd. • Garlico Industries Ltd. • Kamdhenu Foods Ltd.
Plant capacity: Lemon Powder: 32 MT/Day Lemon Oil: 12 MT/DayPlant & machinery: Rs. 721 lakhs
Working capital: -T.C.I: cost of project Rs.1983 lakhs
Return: 33.00%Break even: 51.00%
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