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

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Packaged Drinking Water with PET Bottles - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Profile Water forms an essential part of every human being. Since it is a human necessity it makes best sense to do business in. As a normal human being requires an average of 2 & 3 liters of water every day and world population is more than one billion (growing at 2 & 3% annually) the business opportunity is enormous and the potential is largely untapped. The water used for potable purposes should be free from undesirable impurities. As the name implies, the mineral water is the purified water fortified with requisite amounts of minerals such as Barium, Iron, Manganese, etc which can be absorbed by human body. It is either obtained from natural resources like spring and drilled wells or it is fortified artificially by blending and treating with mineral salts. The mineral water shall be manufactured and packed under hygienic conditions in properly washed and cleaned bottles in sterilized conditions. Application Packaged drinking water ensures safe, clean, potable water for human consumption. Mineral water is bottled under very hygienic conditions under strict quality control before being marketed. Its major use is in five star Hotels and Hospitals where good quality pure water is required for potable purposes. It is marketed at places and regions where hygienic drinking water is not freely available. Market Scenario The global bottled water sales have increased dramatically over the past several decades. The growing demand for bottled water speaks volumes of the scarcity of clean drinking water and the quality of tap water. It has become an icon of healthy lifestyle emerging in India. Selling safety i.e. pure and simple water has now become one of the fastest growing industries in India despite the harsh truth it is build on the foundation of bad governance, inequality and obvious exploitation. However, bottled water provides the 3 distance advantages of convenient packing, consistent quality and is ubiquitous. These are boom time for the Indian bottled water industry more so because the economics are sound. India is the tenth largest bottled water consumer in the world. The consumption of smaller units of 500 ml has increased by around 140% perceptibly. Capacity : 108 Lakh Pouches (200 ml)/Annum 52.2 Lakh Bottles (500 ml)/Annum 26.1 Lakh Bottles (1 L)/Annum 26.1 Lakh Bottles (2 L)/Annum 14.4 Lakh Bottles (5 L)/Annum 5.1 Lakh Cans (25 L)/Annum
Plant capacity: -Plant & machinery: 131 Lakh
Working capital: -T.C.I: Cost of Project : 350 Lakh
Return: 40.00%Break even: 58.00%
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ACTIVATED CARBON FROM SAW DUST & COCONUT SHELL - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Profile Activated carbon is a non graphitic form of carbon, which could be produced by activation of any carbonaceous material such as coconut shells, bamboo, wood chips, sawdust, coal, lignite, paddy husk etc. The process of activation is carried out in two stages. The raw material is first carbonized and then activated either by chemicals or by steam to derive the highly porous structure. Activated carbon has been used to purify different products since Roman times. Activated carbon has a very high internal surface area and is thus an ideal material for adsorption. Properties Adsorption Parameters of Activated Carbon of three grades namely powder, granular and pelletlized finds hundreds of different applications. By chemical activation, predominantly powder activated carbons are made and these qualities are mostly used for waste water treatment. Granular products and pellets used for gas purification are predominantly made by gas steam activation. To cite some examples from the numerous applications: decolourisation of sugar and sweeteners, drinking water treatment, gold recovery, production of pharmaceuticals and fine chemicals, catalytic process, off gas treatment of waste incinerators, automotive vapor filters, color/odor correction in wines and fruit juices. For Purification of liquids, the powdered form of activated carbon is added to the liquid to be purified and the mixture is agitated and finally filtered. Application of Activated Carbon Activated carbon is used in a wide gamut of industries starting the food products to nuclear reactor system, minor metal chemical and so on. The consumption of most of the industries is very small. Accordingly, various industries consuming activated carbon are grouped in following way. 1. Edible Oil Industry 2. Pharmaceutical Industry 3. Beverage Industry 4. Water treatment plants/water purification units. Activated carbon is used as catalyst support, purification of groundnut oil, purification of water for boiler purposes, in the manufacture of rayon yarn and in the purification of rice bran oil. Beside these industries mentioned above activated carbon finds its application in the purification of natural gas and as decolorizing agent in many chemical and allied industries. Market Scenario Activated carbon is an amorphous form of elemental carbon prepared by destructive distillation of any one of a variety of carbonaceous raw materials, including wood, coal or coconut shells. Worldwide demand for activated carbon is expected to increase more than ten percent per annum through 2016 to 1.9 million metric tons. While implementation of the newest Five Year Plan will bolster activated carbon use in water treatment, gains will also come from increasing consumption by industry, as demand for activated carbon in every major market in the nation is forecast to rise faster than the world average. Expanding production of edible oils, packaged beverages, and sweetener will stimulate growth of activated carbon in much of the rest of the world.
Plant capacity: 20 MT/day Plant & machinery: 181 Lakh
Working capital: -T.C.I: 1070 Lakh
Return: 43.00%Break even: 37.00%
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FOOD PARK - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue, Plant Economics

Food Parks are comprehensive industrial estates for food processing units where the industries would have provision of common facilities like cold storage, cold chain, effluent treatment plant, warehousing power connection, water facilities, sewerage etc. The creation of these common infrastructures would benefit individual units particularly the small and medium scale units, because these are expensive to be set up by any single individual unit. Therefore a common park with all the infrastructures would help in the growth of the food processing industry reducing wastage. The envisaged processing units that can be set up in the Mega Food Parks will be location specific and dependent on available raw materials. Possible Processing Units in the Park could be IQF (International Quality Federation) Frozen Foods, Fruits & Vegetables Processing, Mango/Tomato/ Banana/ Pineapple/ Guava Processing Pulp/Puree/Concentrates, Aseptic Juices, Nectars, Drinks, Tetrapack Aseptic Packaging Plant, Vacuum Drying, Candies, Papain Extraction, Enzymes & Oleoresins distillation, Instant Foods -Ready to cook Vada, dosa, Idly, Cutlets etc, Specialty Foods-Energy drink mix, Wellness foods, Ready Meals Sterilized Fruits, Vegetables, Cereals Confectionery Plant-Chocolates -Cocoa processing Spices/Tastemakers Development unit-Seasonings Natural Colour Extracts etc. MAJOR FEATURES OF MEGA FOOD PARKS SCHEME Vision 2015 of Ministry of Food Processing Industries aims to raise the processing of perishables in the country from existing 6 % to 20 %, value addition from 20 % to 35 % and the share in global food trade from 1.5 % to 3 % by year 2015. By creating post harvest handling infrastructure PFHPL will also help reduce post harvest losses of perishables from current level of 30% to 35% valued approximately Rs. 50,000 Crores per annum. To realize the Vision 2015, Ministry of Food Processing Industries (MoFPI) has pledged support under the Mega Food Park Scheme (MFPS). Each Mega Food Park (MFP) will be subsidized with an amount of Rs. 50 Cr on a milestone & progress achievement basis. The ministry of food processing industries proposes to establish 30 (thirty) Mega food parks in the country during 11th plan with the following objectives: • Provide state of the art infrastructure for food processing in the country on a pre identified cluster basis. • Ensure value addition of agricultural commodities. • Establish a sustainable raw material supply chain for each cluster. • Facilitate induction of latest technology. • Foster interagency linkages for pooling of resources for activities complementary to food processing. • Quality assurance through better process control and capacity building. MARKET SCENARIO The Indian food market is set to more than double by 2025. The market size for the food consumption category in India is expected to grow US$ 344 billion in 2025 at a compound annual growth rate of 4.1 per cent. In India, the food processing industry is one of the largest in terms of production, consumption and export prospects. Mega Food Parks Scheme (MFPS) is a programme of the Ministry of Food Processing Industry, Government of India, introduced in the eleventh five year plan. These mega food parks are implemented in many states such as Andhra Pradesh, Gujarat, Maharashtra and planning to implement in Orissa, Punjab and other states also. The primary objective of the MFPS is to provide adequate infrastructure facilities for food processing along with the value chain from the farm to market. It will include creation of infrastructure near the farm, transportation, logistics and centralized processing centers. The scheme will be demand driven, pre-marketed and would facilitate food processing units to meet environmental, safety and social standards. The outcome will be increased realization for farmers, creation of high quality rural processing, reduction in wastage, capacity building of the producers, and creation of efficient supply chain along with the significant direct and indirect employment generation.
Plant capacity: -Plant & machinery: -
Working capital: -T.C.I: -
Return: 1.00%Break even: N/A
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Disposable Plastic Cups, Plates & Glasses - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

The plastic industry in India plays a very important and key role in Industrializations. A wide spectrum of plastics and articles manufactured by the industry has touched the life of every Indian in many ways through consumer plastics. The disposable plastic cups are manufactured by thermoforming technique. They are fast replacing conventional cups. Ice cream and other dairy products are packed in disposable cups. Besides Ice cream industry, hotels, restaurants, canteens etc. have been increasingly using disposable cups as against conventional glass wares or ceramic cups. Disposable cups are mainly used for food items and are made out of polypropylene or polystyrene sheets. Sheets having thickness 0.35 mm to 18 mm are used for these items in thermoforming machine. The disposable cups are gaining popularity due to attractive look, low weight for container, ease of transportation and low impermeability. Organizations like Railways, Airlines are using disposable cups for serving coffee, tea etc. now a days. Disposable cups, glasses, plates and spoons are used in daily life nowadays. In addition to be used at home these are largely used during at parties and other functions. The use of disposable items is increasing day by day because of better hygienic conditions, low cost, easy usability and impressive appearance. Plastic cups are largely used for tea, juices, coffee and other purposes. APPLICATION: Thermoformed disposables are generally used for Tea, Water and Packing of Beverages etc. These Thermoform shapes are created from a process where a sheet of plastic is heated and vacuumed on top of a model or die. The die can be made up from variety of materials. PROPERTIES: One of the most renowned names in the field of Plastic Disposable Glass, Cups and Plates. These days nobody has the time, or sometimes even the money, to afford expensive china utensils for their party purposes, so we produce an easy solution to this by producing Printed Drinking Cups which are not only easy to use and cheap but at the same time recyclable and stylish as well, adding style to your celebrations. MARKET SCENARIO: Disposable Plastic Drinking Cups are a common sight around our homes, offices, workplaces and other places. Disposable Plastic Drinking Cups are a ubiquitous part of our lives today. It is hard to find a place where one will not get to see these cups. A person goes for a jog, works out and after he/she is done with the daily exercise routine, the first thing they reach out for is a Disposable Plastic Drinking Cup for a sip of water. Pointing on disposable items is also quite easy and cheaper. The technology and machines are available in India and the cost is also less. This makes the disposable items more competitive and helps in increasing its market.
Plant capacity: 1354 Lakh Pcs./annumPlant & machinery: 51 Lakhs
Working capital: -T.C.I: 216 Lakhs
Return: 40.87%Break even: 45.83%
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ELECTROLYTIC MANGANESE DIOXIDE - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

EMD is a complex composite of various crystals of manganese and oxygen that is produced through electro-winning. It is used primarily as the active constituent of alkaline batteries and increasingly as the feedstock for the cathodic material in lithium-ion batteries. The structure of EMD is highly disordered, but predominantly made up of the manganese dioxide crystal ramsdellite, depicted here, with the red balls signifying the oxygen atoms in the green manganese dioxide crystal lattice. Electrolytic manganese dioxide is a high purity product with molecular formula MnO2 that possesses the ‘recipe specific’ electrical characteristics desired by battery producers. Natural manganese dioxide (NMD) can be used in the Leclanche cells. But in alkaline, lithium and other batteries, synthetic managanese dioxide with higher purity is required. Electrolytic manganese dioxide (EMD) is used as a cathode mixture material for dry cell batteries, such as alkaline batteries, zinc-carbon batteries rechargeable alkaline batteries. Among the large variety of manganese dioxides, y-type managanese dioxide is extensively used, as y-variety compounds have high intercalation voltage. They have the ability to maintain high discharge rates, a good performance over a wide temperature range and have a long storage life. EMD is stable under normal temperature conditions. ELECTROLYTIC MAGNESIUM DIOXIDE NUCLEATION: Electrolytic manganese dioxide has been used worldwide in the manufacture of primary ZnMnO2 alkaline and Lechlanche type cells for decades. Their low cost and reliability impair their replacement by higher performance and secondary batteries. The performance of these batteries depends on the manufacture method of the manganese oxide due to the variation of the properties of the oxide with its crystallite size, density of lattice imperfections and extent of hydration. Sometimes the intercalation of lithium ions is carried out to improve performance characteristics of MnO2, for high energy density and high drain power application. Electrolytic manganese dioxide are doped with Bi, Pb and Ti ions is used for the manufacture of rechargeable alkaline manganese oxide cells. These ions are known to stabilize the MnO2 lattice towards dimensional changes that occur during charging and discharging cycles of the cells. The production of EMD is carried out through the electrolysis of hot MnSO4 and sulphuric acid solutions. Stainless steel or lead is the materials normally used as cathode, where hydrogen evolution takes place. Carbon, lead or titanium can be used as anode. Titanium anodes are preferred because the EMD is purer than that obtained with carbon and lead anodes. MARKET SCENARIO: As electric vehicles penetrate the auto market, EMD demand stands to benefit. The launch of electric cars and their expanding production is expected to increase demand for EMD for use in lithium-ion secondary batteries cathodes of the lithium manganese oxide and tertiary compound type. The highest potential growth segment for EMD is in large scale rechargeable batteries used in electric vehicles and electronics. At present, the rechargeable manganese battery segments account for less than 10% of total EMD demand. Alkaline batteries are a low growth end use, expected to track well below GDP growth rates over the forecast period. In small scale electronics, EMD use projected at historical growth rates of 4%. EMD is mostly used in alkaline and other small scale, consumer electronic batteries. World demand is estimated around 3,50,000 metric tonnes per annum in 2012 with growth rate in demand around 5%.
Plant capacity: Electrolytic Manganese Dioxide 5 MT Per DayPlant & machinery: 89 Lakhs
Working capital: -T.C.I: Cost of Project: 576 Lakhs
Return: 27.00%Break even: 57.00%
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ACTIVATED CARBON FROM SAW DUST & COCONUT SHELL - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities

Activated Carbon is a unique material because of the way it is filled with holes (voids, spaces, sites, pores,) whatever the size of molecules. It is that, although they are spaces of zero electron density, these pores possess intense vander wall forces (from the near proximity of carbon atoms). Activated carbon is a non graphitic form of carbon, which could be produced by activation of any carbonaceous material such as coconut shells, bamboo, wood chips, sawdust, coal, lignite, paddy husk etc. The process of activation is carried out in two stages. The raw material is first carbonized and then activated either by chemicals or by steam to derive the highly porous structure. Shell based activated carbon is extensively used in the process of refining and bleaching of vegetable oils and chemical solutions, water purification, recovery of solvents, recovery of gold, in gas masks for protection against toxic gases, in filters for providing adequate protection against war gases/nuclear fall outs, etc. Uses and Application A wide variety of activated carbon products are available exhibiting markedly different characteristics depending upon the raw material and activation of technique used in their production. In selecting the activated carbon it is important to have a clear understanding of both the adsorptive and physical characteristics of the material in order to optimize the performance capabilities. Activated Carbon of three grades namely powder, granular and pelletlized finds hundreds of different applications. By chemical activation, predominantly powder activated carbons are made and these qualities are mostly used for wastewater treatment. Granular products and pellets used for gas purification are predominantly made by gas steam activation. To cite some examples from the numerous applications: decolorization of sugar and sweeteners, drinking water treatment, gold recovery, production of pharmaceuticals and fine chemicals, catalytic process, off gas treatment of waste incinerators, automotive vapor filters, color/odor correction in wines and fruit juices. Market Survey The global activated carbon market was worth $1.8 billion in 2011 and is estimated to reach $3 billion by 2016, growing at a CAGR of 11.1% from 2011 to 2016. The powdered and granular activated carbon segments are the key revenue generators for the activated carbon market. The demand for activated carbon (AC) is expected to grow due to the new demand in mercury control technology for industrial air purification applications.
Plant capacity: 6000 MT/ Annum Plant & machinery: 181 Lakhs
Working capital: -T.C.I: 1070 Lakhs
Return: 43.00%Break even: 37.00%
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Sheet Metal Press Shop - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

Sheet metal operations have been in existence since 8000 B.C. Sheet metal is simply metal formed into thin and flat pieces. It is one of the fundamental forms used in metalworking, and can be cut and bent into a variety of different shapes. Due to its long history, sheet metalworking is, unfortunately, often seen as archaic and uninteresting. That metal sheets can be transformed with the aid of robust machines intonfancy consumer products with tight tolerances is inconceivable to many. Yet, sheet metal operations are used for producing both structural components and durable consumer goods. Nowadays, sheet metal parts are widely present in different daily life products. During the past decades, scientific research in the field of sheet metal operations has been booming and international conferences on different sheet metal topics attract numerous attendants. Both industry and the academic community recognize the importance of continuing improvement in sheet metal operations. Application Sheet and plate metal parts for consumer and industrial products such as: Automobiles and trucks, Airplanes, Railway cars and locomotives, Farm and construction equipment, Small and large appliances, Office furniture & Computers and office equipment. Advantages High strength, Good dimensional accuracy, Good surface finish, Relatively low cost, For large quantities, economical mass production operations are available. Uses The most common end uses for sheet metal have been electronic enclosures, such as personal computer housings or casings; roofing and roof drainage equipment; air conditioning ducts and stovepipes; sheet metal flooring and siding; awnings, canopies, cornices, and soffits; culverts, flumes, and irrigation pipes; and other or unspecified uses. These categories cover a myriad of products used by every industry, including aircraft manufacture (air cowls); building construction (siding, stove hoods, and gutters); heating, ventilation, and air conditioning (HVAC) applications (ducts, furnace flues); mineral processing (coal chutes); highway construction (guardrails); agriculture (irrigation pipes); business machines (computer casings); shipbuilding (ship ventilators); postal delivery (mailboxes); and food preparation (vats and bins). Market Survey According to industry statistics from Dun and Bradstreet, there were an estimated 5,917 establishments engaged in manufacturing sheet metal work for buildings (not including fabrication work done by construction contractors at the place of construction) in 2010 with revenues of more than $10.7 billion employing 115,838 workers. States with the highest concentration of establishments in this industry were California (15 percent), Texas (8 percent), Florida (5 percent), Pennsylvania (4 percent), and Ohio (4 percent). California accounted for the most sales, with $1.5 billion, followed by Texas with $898.5 million, New York with $593.3 million, and Illinois with $506 million. Sheet metal product sales are expected to account for 51.3% of industry revenue in 2012. Sheet metal products are used in virtually all phases of building construction and have many uses in improvements and repairs for existing structures. Sheet metal is used to install and maintain heating, ventilation and air-conditioning duct systems; roofs; siding; rain gutters; downspouts; and skylights. Some products manufactured in this segment include awnings, canopies, casings, chutes, ducts, furnace casings, gutters and ventilators Sheet metal demand in the US is forecast to cross $20 billion by 2016, following annual gains of over five percent from 2011. Cost Estimation Capacity : 900 MT/ Annum Mild Steel Sheet Products : 600 MT/ Annum MS Scraps : 300 MT/Annum
Plant capacity: -Plant & machinery: 6 Lakhs
Working capital: -T.C.I: Cost of Project : 217 Lakhs
Return: 25.00%Break even: 64.00%
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PAPER NAPKINS, FACIAL TISSUE, TOILET ROLLS, KITCHEN ROLL & HANDKERCHIEF - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study

Paper is one of the necessities of civilization and it is almost impossible to imagine the continuance of a world without the printed books and newspapers. People require paper to meet the basic needs of modern life because it has many diverse uses. Modern paper is made from cellulose derived from a limited numbers of plants, the fibres being mixed with sufficient water to render possible the formation of a continuous sheet of wells of paper of uniform thickness. The invention of this method of paper making is attributed to the Chinese about 80 to 150 B.C. Cellulose is the substance of which the permanent cell membranes of plants are composed and it forms the bulk of the tissues of wood and similar plant structures. In most cases the presence of colouring matter and various waxy and resinous substances taken up by the growing plant render the cellulose impure, and it is desirable that as far as possible all impurities should be removed before the fibres are made into paper. Vegetable fibres of all kinds may be converted into paper among the various types of paper serving different end uses Tissue and Air mail paper are required for very specific purposes. France is recognized to be the largest producer of tissues of various grades in Europe, thus becoming a major exporter of this commodity. Facial and tide tissue papers fall in the category of (Light weight sanitary tissue: and comprise of items viz. facial tissue sanitary tissue, table howkins and toweling paper such varieties of papers are normally un sized and manufactured in soft, loosely felted conditions it as to obtain maximum absorbency in order to enables them to take up water quickly and bold it after absorption. Uses and Applications Tissue paper is often used for direct inside part wrapping as in the jewellery, liquor, fruit and florist trades, various other tissue papers are used for specific purposes. Paper napkin is used in all hotels and restaurants, It is used by human being as a substitute of handkerchief, In homes at the time of dinner, lunch or breakfast it is extensively used, Paper napkin is a costlier affair and cannot be afforded by all categories of persons. Therefore, high or medium class family uses it and Special quality Tissue paper is used for cigarette manufacture. Napkins are manufactured from Tissues. Paper Napkin age becoming poplar with catering Industry due to its manifold uses. These are absorbent, hygienic light and can be had with attractive printing. Facial Tissue paper though recently introduced in Indian market is fast becoming popular with the public. Tissue paper for capacitors is used extensively by electrical and electronic Industry. In electronic industry paper capacitors are used in circuits for blocking, buffering. Market Survey Indian paper and newsprint industry has a huge potentials and prospects in coming future. In our, country, demand for paper and newspaper is rapidly increasing. There are vast demands in the area of tea bags, filer paper, tissue paper, medical grade coated paper, lightweight online coated paper, etc. Indian paper industry is one of the underestimated industries, because India's per capita consumption of paper is just about 5 kg. where as it is 337 kg in North America, 110 kg. in Europe and 30 kg. in China. Compare to this scenario India's per capita consumption is one of the lowest in the World. The Indian tissue paper market is at an inflexion point and is expected to grow at a CAGR of 20% in the next 3 to 5 years, with the organized segment growing even faster. This growth will be driven by increasing hygiene awareness, disposable income and deeper penetration of organized retail. In urban India tissue paper is trying to ease out the handkerchief, creating a niche in dispensers in washrooms and looking towards the kitchen. For e.g. Premier is now looking to innovate for hairstyling salons while Origami is innovating for kitchen wipes and party usage. With the economy growing, demand for higher grade tissue will increase, and, as a result, a shortage could occur in the next five years. The market for consumer paper, including toilet tissue, napkin tissue and facial tissue, has great diversity in design, type, brands and original source. World average per capita consumption of tissue paper is 3.4 kg. The differences between regions are huge. Per capita consumption levels are highest in North America (22 kg), Western Europe (13 kg) and Japan (over 13 kg). In China, other Asia and Africa, the consumption levels are 2 kg. Few Indian Major Players are as Under: Orient Paper & Inds. Ltd. Pamwi Tissues Ltd. Premier Tissues India Ltd. Pudumjee Hygiene Products Ltd. Tainwala Healthcare Products Pvt. Ltd. Cost Estimation Capacity : Paper Napkin: 46980 Packs/day Tissue Paper 46980/ day Handkerchief 31320/ day Toilet Rolls 6400 Nos./ day Kitchen Rolls 6400 Nos./day
Plant capacity: -Plant & machinery: 88 Lakhs
Working capital: -T.C.I: Cost of Project : 595 Lakhs
Return: 32.00%Break even: 39.00%
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DISPOSABLE PLASTIC SYRINGES - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

A syringe is a simple piston pump consisting of a plunger that fits tightly in a tube. The plunger can be pulled and pushed along inside a cylindrical tube (the barrel), allowing the syringe to take in and expel a liquid or gas through an orifice at the open end of the tube. The open end of the syringe may be fitted with a hypodermic needle, a nozzle, or tubing to help direct the flow into and out of the barrel. The disposable plastic syringe has become an important part of the medical scene since its introduction in the late 1950's. Today more and more attention is being focused on the composition and configuration of this everyday item. It is an instrument which is used for injecting any liquid into the body of human beings or of animals. These syringes are used for injecting the medicine into the body or into the nerve of the body which are not possible to take in through mouth or takes much time in mixing with blood. Disposable Syringes made of plastic Material have been successfully used in medical and pharmaceutical practice for many years. The constantly increasing use of this type Syringe indicates its importance, which is based mainly on the advantages it offers regarding cost and hygienic applications. Plastic syringes are becoming more popular in the medical world due to its lower cost and higher accuracy. Uses & Applications Disposable syringes commonly are used in modern medicine for the injection of drugs and vaccines or for the extraction of blood. The often are used instead of reusable syringes in an effort to avoid spreading a disease. Among the common uses of disposable syringes are the injecting of insulin by a diabetic person and the administering of a local anesthesia by a dentist. A medical syringe that is used to give shots to more than one person without being properly sterilized is a potential source of disease. This can be an especially pressing concern in poor or undeveloped areas, where an injection often cannot be given under ideal medical conditions. Therefore, disposable syringes often are favored over reusable syringes for vaccines, in order to avoid the risk of transmitting blood borne diseases such as human immunodeficiency virus (HIV) and hepatitis from one person to another. Needle exchange programs that provide intravenous drug users with disposable syringes and needles are based on the same idea, because reuse and sharing of infected needles by drug users is one of the principal ways HIV is transmitted in the developed world. Market Survey Needles and syringes are amongst the most extensively used medical disposables. Healthcare professionals represent the largest end use market for syringes, followed by diabetics. A substantial rise in the number of drug addicts has also contributed to the enhanced demand for syringes across the world. Rising life expectancies and growing proportion of the elderly have led to increased demand for healthcare services, and greater need for drugs to be injected. Additionally, a number of newly introduced drugs including DNA based drugs are not available in the form of pills and must be administered intravenously, thereby enhancing the demand for disposable syringes. Worldwide market for syringes is driven by an aging population and related rise in healthcare demand. The Present demand of Disposable syringes is being adequately met by indigenous production. In increasing awareness in health care, AIDs and like diseases and improvement in per capita income is expected to create further growth in demand of disposable syringe / needles. Since there is in need to add few more new units for manufacturing of Disposable Syringe. The growth in domestic demand may be conservatively expected to be 25% per annum, assuming constant export of 100 million syringes /year only. One additional unit every year with 25 million products shall be needed to increase in indigenous demand alone besides increase in export quantities is likely to be the further aggravate the demand. The Industry is exporting about 80 million syringes annually which is reasonably spread amongst various units. The measure importing country is Russia. (For sustained exports on durable basis, accreditation under ISO: 14000 or ISP 9000 is mandatory. Imports are limited to certain sizes like 10.20 and 50 ml because of relatively uneconomical demand quantities in such sizes. The total imported in all size may be 35 40 million pieces. Few Indian Major Players are as Under: Albert David Ltd. Disposable Medi Aids Ltd. H L L Lifecare Ltd. Hindustan Syringes & Medical Devices Ltd. Iscon Surgicals Ltd. La Medical Devices Ltd. Lifeline Injects Ltd. Lifelong Meditech Ltd. Nirma Ltd. Raaj Medisafe India Ltd. Sangam Health Care Products Ltd. Surgiplast Ltd.
Plant capacity: 16800 Nos. Syringes (2.5 ml size/day),16800 Nos. Syringes/ (5 ml size/day)Plant & machinery: 104 Lakhs
Working capital: -T.C.I: Cost of Project : 255 Lakhs
Return: 26.00%Break even: 48.00%
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DISPOSABLE PLASTIC SYRINGES - Manufacturing Plant, Detailed Project Report, Profile, Business Plan, Industry Trends, Market Research, Survey, Manufacturing Process, Machinery, Raw Materials, Feasibility Study, Investment Opportunities, Cost and Revenue

A syringe is a simple piston pump consisting of a plunger that fits tightly in a tube. The plunger can be pulled and pushed along inside a cylindrical tube (the barrel), allowing the syringe to take in and expel a liquid or gas through an orifice at the open end of the tube. The open end of the syringe may be fitted with a hypodermic needle, a nozzle, or tubing to help direct the flow into and out of the barrel. The disposable plastic syringe has become an important part of the medical scene since its introduction in the late 1950's. Today more and more attention is being focused on the composition and configuration of this everyday item. It is an instrument which is used for injecting any liquid into the body of human beings or of animals. These syringes are used for injecting the medicine into the body or into the nerve of the body which are not possible to take in through mouth or takes much time in mixing with blood. Disposable Syringes made of plastic Material have been successfully used in medical and pharmaceutical practice for many years. The constantly increasing use of this type Syringe indicates its importance, which is based mainly on the advantages it offers regarding cost and hygienic applications. Plastic syringes are becoming more popular in the medical world due to its lower cost and higher accuracy. Uses & Applications Disposable syringes commonly are used in modern medicine for the injection of drugs and vaccines or for the extraction of blood. The often are used instead of reusable syringes in an effort to avoid spreading a disease. Among the common uses of disposable syringes are the injecting of insulin by a diabetic person and the administering of a local anesthesia by a dentist. A medical syringe that is used to give shots to more than one person without being properly sterilized is a potential source of disease. This can be an especially pressing concern in poor or undeveloped areas, where an injection often cannot be given under ideal medical conditions. Therefore, disposable syringes often are favored over reusable syringes for vaccines, in order to avoid the risk of transmitting blood borne diseases such as human immunodeficiency virus (HIV) and hepatitis from one person to another. Needle exchange programs that provide intravenous drug users with disposable syringes and needles are based on the same idea, because reuse and sharing of infected needles by drug users is one of the principal ways HIV is transmitted in the developed world. Market Survey Needles and syringes are amongst the most extensively used medical disposables. Healthcare professionals represent the largest end use market for syringes, followed by diabetics. A substantial rise in the number of drug addicts has also contributed to the enhanced demand for syringes across the world. Rising life expectancies and growing proportion of the elderly have led to increased demand for healthcare services, and greater need for drugs to be injected. Additionally, a number of newly introduced drugs including DNA based drugs are not available in the form of pills and must be administered intravenously, thereby enhancing the demand for disposable syringes. Worldwide market for syringes is driven by an aging population and related rise in healthcare demand. The Present demand of Disposable syringes is being adequately met by indigenous production. In increasing awareness in health care, AIDs and like diseases and improvement in per capita income is expected to create further growth in demand of disposable syringe / needles. Since there is in need to add few more new units for manufacturing of Disposable Syringe. The growth in domestic demand may be conservatively expected to be 25% per annum, assuming constant export of 100 million syringes /year only. One additional unit every year with 25 million products shall be needed to increase in indigenous demand alone besides increase in export quantities is likely to be the further aggravate the demand. The Industry is exporting about 80 million syringes annually which is reasonably spread amongst various units. The measure importing country is Russia. (For sustained exports on durable basis, accreditation under ISO: 14000 or ISP 9000 is mandatory. Imports are limited to certain sizes like 10.20 and 50 ml because of relatively uneconomical demand quantities in such sizes. The total imported in all size may be 35 40 million pieces. Few Indian Major Players are as Under: Albert David Ltd. Disposable Medi Aids Ltd. H L L Lifecare Ltd. Hindustan Syringes & Medical Devices Ltd. Iscon Surgicals Ltd. La Medical Devices Ltd. Lifeline Injects Ltd. Lifelong Meditech Ltd. Nirma Ltd. Raaj Medisafe India Ltd. Sangam Health Care Products Ltd. Surgiplast Ltd.
Plant capacity: 16800 Nos. Syringes (2.5 ml size/day),16800 Nos. Syringes/ (5 ml size/day)Plant & machinery: 104 Lakhs
Working capital: -T.C.I: Cost of Project : 255 Lakhs
Return: 26.00%Break even: 48.00%
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  • One Lac / Lakh / Lakhs is equivalent to one hundred thousand (100,000)
  • One Crore is equivalent to ten million (10,000,000)
  • T.C.I is Total Capital Investment
  • We can modify the project capacity and project cost as per your requirement.
  • We can also prepare project report on any subject as per your requirement.
  • Caution: The project's cost, capacity and return are subject to change without any notice. Future projects may have different values of project cost, capacity or return.

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