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

Telangana is a state in the Southern region of India. It has an area of 114,840 km2 and is the twelfth largest state in India. Most of it was part of the princely state of Hyderabad, ruled by the Nizam of Hyderabad during the British Raj, joining the Union of India in 1948. Telangana was separated from Andhra Pradesh as a new 29th state of India, with the city of Hyderabad as its capital. Hyderabad will continue to serve as the joint capital city for Andhra Pradesh and Telangana for a period of not more than ten years. Telangana is situated on the Deccan Plateau, in the central stretch of the eastern seaboard of the Indian Peninsula. It covers 114,800 square kilometers (44,300 sq. mi). The region is drained by two major rivers, with about 79% of the Godavari River catchment area and about 69% of the Krishna River catchment area, but most of the land is arid. Telangana region has rich natural resources. About 45 per cent of the forest area in Andhra Pradesh state is in Telangana region while 20 per cent of the country's coal deposits in the country are also found here. Telangana is also rich in limestone deposits that cater to cement factories. Telangana has other mineral resources like bauxite and mica. Perennial rivers Godavari and Krishna enter Andhra Pradesh in Telangana before flowing down through other regions and ending up in the Bay of Bengal. Telangana region is sitting on potential oil and natural gas reserves, according to a report by Director General of Hydrocarbons (DGH). Telangana has a significant amount of Software export in India. While majority of the Industry is concentrated over Hyderabad, the other cities are also becoming significant IT destinations in the state. Hyderabad's IT exports exceeded $7 billion in 2014.There have been extensive investments in digital infrastructure.

 

AGRICULTURE

Rice is the major food crop and staple food of the state. Other important crops are tobacco, mango, cotton and sugar cane. Agriculture has been the chief source of income for the state's economy. Important rivers of India are the Godavari, Krishna flow through the state, providing irrigation. Telangana agriculture department separated from Andhra Pradesh as part of Andhra Pradesh bifurcation It aims promote agricultural trade and to boost up the agricultural production and productivity in the Telangana.

 

TOURISM IN TELANGANA

Telangana State Tourism Development Corporation (TSTDC) is a state government agency which promotes Tourism in Telangana. Telangana has a variety of tourist attractions including historical places, monuments, forts, water falls, forests and temples. Charminar, Golconda Fort, QutbShahi Tombs, Chowmahalla Palace, Falaknuma Palace and Bhongir Fort, are some of the monuments in the state. The Charminar, built in 1591 CE, is a monument and mosque located in Hyderabad, Telangana, India.

 

DEMOGRAPHIC PROFILE

Telangana with a population of 351.9 lakhs (according to the 2011 census) accounts for about 3.6% percent of the total population of India. Out of this, 177.0 lakhs (50.2%) are males and 174.9 lakhs (49.8%) are females. The sex ratio of the state is 988 as against the national figure of 943. The population density in the state is 307 persons/Sq.Km. In 2012-13, the services sector at Rs.  1, 14,046 crores, contributed 58.1% to the GSDP (at constant prices). It is followed by industry sector, contributing 27.9% (Rs. 54,687 crores) and the agriculture sector’s contribution of 14% (Rs. 27,450 crores). The services sector had fastest growth  of  11.31%  followed  by  industry  sector  (10.04%)  and  agriculture  sector  (6.89%) between 2004-05 and 2012-13.

The Telangana government has proposed to add 230 crore plants in the next three years under a flagship programme which envisages boosting of tree cover in the state by nearly 8%.

 

FOOD AND INDUSTRIAL PROCESSING SECTOR

The Telangana government plans to put greater emphasis on value-addition in the farm sector in its industrial policy. The departments of industry and commerce, agriculture and agro marketing would coordinate together to achieve value maximization for farmers. The government is also keen on encouraging e-marketing activities, which involves networking all agriculture mandis in the state so that farmers get access to prevailing prices across important markets and thereby helping them unlock the right value for their produce. The state in collaboration with research institutes in the country would facilitate an ideal adoption of latest practices ranging from seed technology and farm machinery to improve farm productivity. the state government is also considering specific projects such as setting up a pharmaceutical city near Hyderabad and a cotton hub in Warangal district, the largest producer of long-staple cotton. The Telangana government has begun a survey to identify land that can be offered to new industries in the state. The Telangana government is set to announce its new industrial policy under which scheduled castes and scheduled tribe entrepreneurs would be specially encouraged.

Telangana Government is mulling to set up a 'Pharma City' near the state capital in about 8,000 acres. The City will include industries as well as residential colony, and a power plant with 500 MW capacity will be set up adjacent to the pharma city to provide captive, dedicated and uninterrupted power supply to the industry. The pharma city is expected to accommodate about five lakh employees besides their families in the residential colony touching about twenty lakh over a period. Delegation of Drugs Manufacturers' Association that an international consultancy organisation with expertise in developing in the information technology and pharmaceuticals manufacturing sectors may become backbone of Telangana economy, leaving power production, ports and oil and natural gas to play a pivotal role in driving prosperity in the residuary state. Industrial estates should be contacted to design the pharma city. Telangana's per capita income of Rs 24,409 in 2004-05 has phenomenally grown to a whopping Rs 83,020. While Hyderabad has less number of households using open toilets at 0.9 per cent, Mahabubnagar is at 71.1 per cent. The land-locked state is expected to have nearly Rs 4,000 crore surplus budget, but lingering power deficit may force the new government to spend more on the power purchase. Telangana, spread in 1,14,840 square kilometres, has 66.46 per cent literacy rate with a population of 3.52 crore.

 

ECONOMY OF TELAGANA

The Economy of Telangana is mainly driven by agriculture. Two important rivers of India, the Godavari and Krishna, flow through the state, providing irrigation. Rice, cotton, mango and tobacco are the local crops. Recently, crops used for vegetable oil production such as sunflower and peanuts have gained favour. There are many multi-state irrigation projects in development, including Godavari River Basin Irrigation Projects and NagarjunaSagar Dam, the world's highest masonry dam. Telangana is a mineral-rich state, with coal reserves at SingaerniColleries. The population of Telangana is over 35 million now – much more than 30 million for the whole of Andhra Pradesh, including Telangana, at the time of its formation in 1956. The demands on governance have multiplied over this half a century. Apart from commitment to the development of the region, a smaller state being more easily accessible to the common people can intelligently and speedily grapple with their problems.

 

INDUSTRIAL POLICY FRAMEWORK FOR STATE OF TELANGANA

Industrialization will be the key strategy followed for economic growth and development for Telangana, the 29th state of the country. People of the new state have very high expectations from the Telangana State Government for creating jobs for the youth, promote development of backward areas, maximize growth opportunities by optimum utilization of the available resources, harness the talents and skills of the people etc. The Government of Telangana State realizes that industrial development requires large-scale private sector participation, with the government playing the role of a facilitator and a catalyst. The government is committed to provide a graft-free, hassle-free environment in which the entrepreneurial spirit of local, domestic and international investors will thrive to take up their industrial units in the state of Telangana as the preferred investment destination.

The new Telangana State Industrial Policy will be rooted in certain core values, as follows:

 

                • The Government regulatory framework shall facilitate industrial growth

                • Entrepreneurs will thrive in a peaceful, secure and progressive business regulatory                                        environment

                • Industrial development will lead to massive creation of jobs benefitting local youth

                • Industrialization shall be inclusive and facilitate social equality

 

The new Telangana State Industrial Policy will strive to provide a framework which will not only stabilize and make existing industries more competitive, but also attract and realize new international and national investments in the industrial sector. It is expected that the most significant outcome of this approach will be the production of high quality goods at the most competitive price, which establishes “Made in Telangana-Made in India” as a brand with high global recognition. The Industrial Policy Framework has the following mandate for departments that have any responsibility in the industrialization of the State—Minimum Inspection and Maximum Facilitation.

The Government of Telangana State is determined to create an ecosystem in which the ease of doing business in the state matches and even exceeds the best global standards. Telangana State Government is aware that offering a hassle-free system is considered to be of the highest priority by the industrialists, and accordingly the government will implement a very effective industrial clearance system that will go beyond the traditional single window system.

 

THRUST AREAS AND CORE SECTORS

•             Life Sciences including, bulk drugs, formulations, vaccines, nutraceuticals, biological,   incubation centers, R&D facilities and medical equipment.

•             IT Hardware including bio-medical devices, electronics, cellular communications.

•             Precision engineering, including aviation, aerospace, defence.

•             Food processing and nutrition products including dairy, poultry, meat and fisheries.

•             Automobiles, Transport Vehicles, Auto-components, Tractors and Farm Equipment.

•             Textiles and Apparel, Leather and leather value added products like shoes, purses, bags,         artificial   material infused and coated textiles, paper and paper products.

•             Plastics and Polymers, Chemicals and Petro-chemical, glass and ceramics.

•             FMCG and Domestic Appliances.

•             Engineering and Capital Goods, including castings, foundry and Ferro-alloys and other    metallurgical industries.

•             Waste Management and Green Technologies.

•             Renewable Energy and Solar Parks.

•             Mineral-based and wood-based Industries.

•             Transportation/Logistic Hub/Inland Port/Container Depot.

 

Telangana has emerged as a State that provides that right climate for the growth of IT business and is now one of the most preferred destinations in the Country.

The State of Telangana is poised towards creating a benchmark in Information & Communication Technology (ICT) endowed with a high quality state-of-the-art physical & communication infrastructure of international standards, harnessed human resources, and proactive business friendly policies of the Government.

It is estimated that about 20 lakh acres of land is available in the state that has been identified as unfit for cultivation in Telangana. Based on a detailed survey of these land parcels and identification of those parcels that are fit for industrial use, an industrial land bank for the State of Telangana will be developed.

The development of industrial and related infrastructure will be the responsibility of the Telangana State Industrial Infrastructure Corporation (TSIIC). The financial base of the TSIIC will be strengthened and it will be made to function as an effective organization. All lands in the State identified as fit for industrial use will be transferred to the TSIIC.

To support industrialization, the Government of Telangana will earmark 10% of water from all existing and new irrigation sources for industrial use. Water pipelines will be laid as a part of infrastructure creation for each industrial park by TSIIC. The Government of Telangana State recognizes that quality power and uninterrupted power supply are keys to the growth of the industrial sector. The State has a clear short-, medium-, and long-term plans to first overcome the power shortage and eventually become a power surplus state. Accordingly, uninterrupted power supply will be arranged in each industrial park. The Telangana State Government will encourage usage of non-conventional energy for industrial purposes.

The Telangana State Government is committed to encourage the process of industrialization by making various kinds of incentives available to the entrepreneurs. The Telangana State Government also assures an entrepreneur-friendly and graft-free regime of disbursing the incentives. The Telangana State Government will consider providing incentives to the entrepreneurs in the following areas-

•             Stamp duty reimbursement

•             Land conversion cost

•             Investment subsidy

•             VAT reimbursement

•             Interest subsidy

•             Clean production measures

•             Reimbursement of infrastructure development costs etc.

A sound industrial policy has to ensure that the state taxation structure is conducive to industrial growth and state financial resource augmentation. Distortions in the tax structure leads to evasion of taxes and clandestine transport of industrial inputs and outputs to neighbouring states, which may have advantageous tax rates. The presence of important national and state highways, coupled with the availability of resources and opportunities, provides a great potential for development of industrial corridors in the state along these roadways.

The Industrial Corridors that will be developed initially will be:

 

1) Hyderabad-Warangal Industrial Corridor

2) Hyderabad-Nagpur Industrial Corridor

3) Hyderabad-Bengaluru Industrial Corridor

The new Industrial Policy brought out by the Government of Telangana promises to revolutionise the way industrial sector has been viewed by successive governments in this country. A day is not far when the new Industrial Policy of Telangana will shine as an exemplar among the best in the world.

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Industrial Township

Industrial Township Industrial development is key to the development of the State. Now a days the rate of urbanization increases. Due to the increase rate of urbanization many problems are arises. To overcome the challenges of urbanization by proposing housing facility with employment opportunity. Integrated township through the concept of sustainability is the solution to overcome these challenges. Sustainability is the approach to develop city by taking consideration of environmental aspects. The basic working principle is to integrate the ecological, social and economic aspects of sustainability in all sectors and enables its residents to live a good quality of life. Therefore, in search of better living environment and housing at affordable prices there is a large demand for development of self-contained integrated township projects in the fringe area around the large cities. Industrial Township provides facilities like, parks, community halls, library, shopping centers, banks, post offices etc. In the Indian context, an “Industrial Park” means a project in which plots of developed space or built up space or a combination with common facilities and quality infrastructure facilities is developed and made available to the units for the purposes of industrial activities or commercial activities. Basic Features of a Township Are: • Road Network • Residential Zone • Common Facilities • Services • Open space Industrial parks can be a valuable instrument to increase regional and national industrial competitiveness, as well as to arrest negative externalities associated with urban congestion and ‘brain drain’. They provide an institutional framework, modern administrative services and a physical infrastructure that may not be available elsewhere in the country. They are also designed to meet the needs of industrial enterprises in a particular region or community by offering modern business development services, such as information and telecommunications. Proposed Infrastructure The proposed project is an Industrial Township. It comprises of Industries, Residential & Commercial buildings. The proposed Industrial Township are: • Electronics, • Telecom equipment manufacturing • Heavy Engineering and ancillary industry, • Healthcare based Industries including Pharmaceuticals • Warehouse • Fire brigade • Business Centre • Builder’s office • ETP • Residential area • Commercial area • Drinking water Management • Sewerage System • Industrial Waste Management • Solid Waste Management • Power Requirement and Supply Industrial development is one of the important drivers of economic growth in India. India is targeting industrial growth rate of 12 to 14% in the medium run and contribution of industrial sector to national GDP by 25% creating 100 million additional jobs by 2022. India seeks to create a strong economic base with a globally competitive environment and state-of-the-art infrastructure to activate local commerce, enhance investments and attain sustainable development. The key features of the industrial parks development in India are: • Status of the industrial parks sector varies from State to State, wherein states like Maharashtra, Gujarat, AP, Tamil Nadu, etc. have made significant progress in promoting industrial parks / estates. • The approaches relating to development, administration, regulation, etc. of industrial parks also vary according to the political and developmental compulsions faced by the individual States. • Primarily, the industrial parks have been promoted by the government and its agencies with minimal private sector participation (PSP). PSP in industrial parks has met with partial success in India and that too has primarily been restricted to the IT parks. • Often, the decision to set-up an industrial park reflects the political and social objectives of the government. With parks throughout the State normally under a single agency, typically the SIDC, the revenues from parks at industrially forward locations are used to cross-subsidies the parks in the backward areas. • Industrial parks in India often suffer from inadequate maintenance, and lack professional management. Today, the industrial development in India is seen in the form of industrial estates, special economic zones, specialized industrial parks, investment zones, NIMZs (National Investment and Manufacturing Zones), special investment regions, PCPIRs (Petroleum, Chemicals and Petro Chemical Investment Regions) and industrial corridors. India is planning to build a pentagon of industrial corridors across the country to boost manufacturing and to project India as a global manufacturing destination of the World. Due to increase of Industries which lies mostly in the outskirts of the city, the employees of the industry prefer housing complex with basic amenities near their work place itself. Hence there is tremendous scope for such projects in near future. Tags #Industrial_Township, #Integrated_Industrial_Township_Project, #Setting_up_of_Industrial_Townships, Integrated Industrial Townships, #Township_Project, #Industrial_Township_Development, Industrial Parks, #Residential, Commercial & Industrial Township Projects, Industrial Township in India, Industrial Development, Industrial Plots, #Residential_Appartment, #Detailed_Project_Report_on_Industrial_Township, Project Report on Industrial Township, Pre-Investment Feasibility Study on Industrial Township, Techno-Economic feasibility study on Industrial Township, #Feasibility_report_on_Industrial_Township, Free Project Profile on Industrial Township, #Project_profile_on_Industrial_Township, Download free project profile on Industrial Township
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Lithium Ion Battery (Battery Assembly)

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

Epoxy resin cast CTs are normally used for indoor application inside panels or cubicles. They can also be used for outdoor application provided they are enclosed in a hermetically sealed metal tank. Cast Resin transformers have an inherently safe characteristic of self-fire-extinguishing and fire resistance. The transformers can be used indoors without fear of fire, and it is not necessary to provide additional measures for safety. Features • Low partial discharge. • Matching different sizes switchgears. • Used in current measuring and protection, high accuracy. • Less maintenance and pollution free. • Easily operated and mounted. • High mechanical strength and high dielectric strength. Applications: Cast Resin transformers can be used in various fields. Here are just a few possible applications: • Indoor or outdoor unit substations • Industrial and petrochemical plants • Offshore platforms • Harmonic applications • Extremely corrosive and dirty applications • Low noise applications • Water supplies • Transit systems • SCR power supplies • Grid, ring or radial networks • Station auxiliaries. • Pad mount applications Due to such high insulation property, cast resin current transformers are extensively used in instrument transformers. Cast resin current transformers are highly preferred for instrument transformers for stepping down high voltage as well as current. Such USP is believed to be driving the global cast resin current transformers market. Cast resin current transformers are highly adopted in steel mills, pulp and paper plants, food processing facilities, mines, and petrochemical plants. All such factors are also expected to boost the global cast resin current transformers market. Key players operating in the global cast resin current transformers market include Siemens, Fuji Electric, Gemini Instratech Ltd., Kaldera Company, Hobut, and Macroplast Pvt. Ltd.
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Dhoop (Loban) Benzoin

Loban is the best energy purifier of Atmosphere. Using of Loban has spiritual and customary secret in India to elevate the energy level. From the times of Saints and Kings Loban are been used for fulfilling the rights and rituals. Loban helps in uplifting the inspiration and creativity. Benzoin can help attract love, provide psychic protection, wisdom, aids the memory, and helps ease depression. It is the finest energy purifier of atmosphere. Using loban dhoop fumes is a traditional and spiritual secret in India to uplift the energy level. It has been used for centuries by saints and kings. It is the finest energy purifier of atmosphere. Using loban dhoop fumes is a traditional and spiritual secret in India to uplift the energy level. It has been used for centuries by saints and kings. Benzoin is often used in religious ceremonies, and is considered to have a great influence on cleansing and unblocking the human body energy centers/meridians. It is antiseptic, and is wonderful for cleansing, whether you wish to clear a room or simply for cleansing your aura. It is said that benzoin helps bring inspiration and creativity. Benzoin can help attract love, provide psychic protection, wisdom, aids the memory, and helps ease depression. dhoop puja vastu gugal loban fragrance air freshener agarbatti incense sticks sandal. Indians pray to a multitude of Gods in multiple situations: good, bad, and ugly. Even as parts of the world wage wars in the name of God and religion, other parts drive economies even as they invoke the almighty. Especially true of a multi-religious country like ours. No wonder then that religion and spirituality is approximately a Rs 2.5 lakh crore market in India (roughly $40 billion).
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Office Gum (Office Paste)

It is a starch based, specially compounded white, thick, soft, jelly like consistent, water-based and water soluble Adhesive. As it spreads smoothly, it has a very good coverage. Growing adoption of multichannel marketing is one of the major trends being witnessed in the global office stationery and supplies B2B market 2018-2022. Players are expanding and making amends to their distribution channels to market their products.
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PVC Compounding

PVC is a product based on two of the earth’s natural resources, salt and oil. Salt water electrolysis yields chlorine (in addition to caustic soda and hydrogen). Ethylene can be derived from naphtha when oil is refined. Chlorine and ethylene can be combined to form the monomer, vinyl chloride (VCM). PVC results from the polymerization of vinyl chloride. PVC compounds are based on the combination of the polymer and additives. The compound is generated by intimately mixing together the ingredients, which is subsequently converted into the gelled article under the influence of heat (and shear). Depending on the type of PVC and additives, the compound prior to gelation can be a free-flowing powder (known as a dry blend) or a liquid in the form of a paste or solution. PVC compounds can be formulated, using plasticizers, into flexible materials, usually called PVC-P. Compounds without plasticizer for rigid applications are designated PVC-U. The compounding of PVC is the combination of appropriate additives with resin to regulate the behaviour of extrusion. It is one of the most important phases in PVC processing. PVC products are produced by mixing PVC powder with other additives aimed to improve and control the properties of the end-product. Low K-value-resins produce end products with poor physical properties. Suspension resins are generally less expensive and easier to process.
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Li-ion Battery Production Business

Li-ion Battery Production Business. Lithium Ion Battery (LIB) Assembling Industry Global Lithium Ion Battery market was valued at $30,186.8 million in 2017, and is projected to reach $100,433.7 million by 2025. Lithium-ion batteries (LIB) are a family of rechargeable batteries having high energy density and commonly used in consumer electronics. Unlike the disposable lithium primary battery, a LIB uses intercalated lithium compound instead of metallic lithium as its electrode. Usually, LIBs are significantly lighter than other kinds of rechargeable batteries of similar size. LIBs are heavily used in portable electronics. These batteries can be commonly found in PDAs, iPods, cell phones, laptops, etc. This term is also known as a LI-ion. A lithium ion battery is an electric device capable of charging and discharging. They are broadly used as a power supply consumer electronics as well as hybrid and electric vehicle. The four materials are used in lithium ion batteries are cathode material, anode material, separators, and an electrolytic solution. Lithium ion batteries markets grow at fastest rate due to its adoption in numerous consumer electronics such as smartphones, tablets, digital cameras and MP3 players, among others. Applications of Lithium-Ion Batteries Some of the most common applications of Lithium-Ion Batteries are: • Power backups/UPS • Mobile, Laptops, and other commonly used consumer electronic goods • Electric mobility • Energy Storage Systems As there are varied uses of a Lithium Ion Battery, it comes in different types of packaging. However, there are some general advantages of using a Li-ion battery over other traditional batteries 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 high energy density is one of the chief advantages of lithium ion battery technology. 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. Electric vehicles also need a battery technology that has a high energy density. • LIBs hold a charge well. They usually lose approximately 5% of their charge each month, against a 20% monthly loss for NiMH batteries. • LIBs do not require complete discharge prior to recharging. • LIBs are able to handle more charge/discharge cycles. Self-Discharge: One issue with many rechargeable batteries is the self-discharge rate. 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. It is typically around 5% in the first 4 hours after being charged but then falls to around 1 or 2% per month. 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. 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. 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. Market Outlook Global lithium ion battery market was valued at $30,186.8 million in 2017, and is projected to reach $100,433.7 million by 2025, growing at a CAGR of 17.1% from 2018 to 2025. The use of Lithium Ion (Li-ion) batteries have significantly grown with the advent and wide scale adoption of smartphones and growth of Electric Vehicles. Along with this, significant reduction in the cost have also been achieved since the past decade with continuous efforts on the R&D on the production techniques and energy densities. The collective efforts by various major economies to migrate towards electric mobility to reduce the carbon footprint, is set to put a strain on the supply of Lithium metal to cater to the burgeoning demand of the Li-ion batteries. Owing to the expansion of increase in carbon emissions, automobile industry is shifting to from conventional fuel vehicles to electric vehicles. Production and usage of electric vehicles is projected to uplift the demand of energy storage batteries including lithium-ion. In addition, electric cars in the United States mainly operate on renewable or natural gas electricity. The batteries are compatible with renewable energy. Therefore, demand for lithium-ion batteries is expected to increase in economies with developed renewable energy sector. By application, the global lithium-ion market is segmented into automotive, grid energy storage, consumer electronics, and others. The consumer electronics segment accounted for a major market revenue in the year 2018 and is expected to maintain its prominent position over the forecast period. However, automotive segment is anticipated to be the fastest growing segment in the coming years. Fast-paced development of the electric vehicles sector is the key reason behind the growing usage of lithium-ion batteries in the automotive industry. Lithium-ion (Li-ion) batteries are rechargeable batteries with high-energy density and are majorly used in portable equipment. The market for these batteries is expected to witness significant growth owing to increase in 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 in line with rise in demand for electric vehicles. These batteries have gained popularity among automobile manufacturers as they offer an alternative to nickel metal batteries used in electric vehicles, due to their small size and light weight. The global lithium ion battery market has been segmented by various end-use industries including electrical & electronics, automotive, and industrial, with others, which include medical, military, and textile industries. The electrical & electronics end-use industry is further segmented into smartphones, tablet/PC, UPS, and others. The automotive end-use segment is further segmented into car, bus, truck, scooter & bike, and train & aircraft. Crane & forklift, mining equipment, and smart grid & renewable energy storage are considered under the industrial end-use segment. The increasing popularity of lithium-ion batteries in energy storing devices, for example, solar grids in industrial and household unit applications is foreseen to give extensive development chances to the market. In any case, the less awareness with respect to the advantages of these batteries and the high expense contrasted with traditional lead acid batteries may hamper the development of this market. In any case, attributable to market saturation in a few regions, the interest for high power capacity batteries for vehicles has picked up the pace. Some of the key players operating in the global lithium ion battery market include Automotive Energy Supply Corporation, Panasonic Corporation, Samsung SDI Co. Ltd., LG Chem Power (LGCPI), LITEC Co., Ltd., A123 Systems, LLC., Toshiba Corporation, Hitachi Chemical Co., Ltd., China BAK Battery Co. Ltd., and GS Yuasa International Ltd. The other players in the market (not included in the report) include Tesla, Johnson Controls International Plc., Saft Batteries, and BYD Company Ltd. India Lithium-ion Batteries Market The India lithium-ion battery market is expected to grow at a robust CAGR of 29.26% during the forecast period, 2018-2023. Lower consumer awareness, inadequate investments by companies, and lack of technological innovations curbed the proliferation of lithium ion technology till the past few years. However, rise in technological developments and increasing need for cleaner energy sources have brought Li-ion batteries on the forefront across various industries as well as end-use sectors. Growing pollution concerns, rising adoption of electric vehicles, increasing income-levels and surging demand for quality and uninterrupted power are some of the key factors catalyzing the growth of Lithium ion batteries market in India. Further, rising usage of smartphones and other consumer electronics products is resulting in an increase in demand for higher energy density and faster charging solutions. Additionally, growing consumer electronics market would drive the India Lithium Ion Batteries market forecast period revenues owing to its light-weight, high energy, and power capacity features. The Indian automobile sector is one of the most prominent sectors of the country, accounting for nearly 7.1% of the national GDP. The industry produced a total of 25.31 million vehicles, including commercial, passenger, two, and three vehicles and commercial quadricycle in April-March 2017, as against 24.01 million in April-March 2016. However, India has set itself an ambitious target of having only electric vehicles (EV) by 2030, which is expected to increase the demand for lithium-ion batteries in India, significantly. 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. Major companies operating in the India lithium-Ion battery market are Samsung SDI Co. Ltd., Panasonic Corporation, Toshiba Corporation, Hitachi Chemical Co., Ltd., and China BAK Battery Co. Ltd., among others. Tags #Lithium_Ion_Battery, #Lithium_Ion_Battery_Assembly, #Li_Ion_Battery_Assembling, #Lithium_Ion_Battery_Assembly_Plant, Lithium Ion Battery Assembly Process, How to Assemble Lithium-Ion Battery, #Lithium_Ion_Battery_(LIB)_Manufacturing_Industry, Lithium-Ion Battery Manufacturing, Manufacturing of Lithium-Ion Batteries, #Lithium_Battery_Manufacturing, #Project_Report_on_Lithium_Ion_Battery_Assembling_Unit, Battery Assembly Plant, Lithium Ion Battery Production, Lithium-Ion Batteries Manufacturing Process, How to Set Up Lithium Ion Battery Plant in India, #Lithium_Ion_Battery_Business, Lithium-Ion Battery Manufacture, #Lithium_Ion_Battery_Manufacture_in_India, Lithium Ion Battery Manufacturing Plant Cost in India, Lithium Ion Battery Manufacturing Plant Project Report, Cost of Setting Up Lithium Ion Battery Manufacturing Plant, Lithium-Ion Battery Production Business, How to Start Lithium Ion Battery Manufacturing Business in India, Li-Ion Battery Assembling Business, Producing Lithium-Ion Batteries, #Detailed_Project_Report_on_Li_Ion_Battery_Assembling, Project Report on Li-Ion Battery Assembling, Pre-Investment Feasibility Study on Lithium-Ion Battery Manufacturing Business, Techno-Economic feasibility study on Lithium-Ion Battery Manufacturing Business, Feasibility report on Lithium-Ion Battery Manufacturing Business, Free Project Profile on Lithium-Ion Battery Manufacturing Business, Project profile on Li-Ion Battery Assembling, Download free project profile on Li-Ion Battery Assembling
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Lead Acid Battery Manufacturing Industry

Lead Acid Battery Manufacturing Industry. Production of Lead Acid Storage Battery India Lead Acid Battery market is projected to reach $ 7.6 billion by 2023. The battery which uses sponge lead and lead peroxide for the conversion of the chemical energy into electrical power, such type of battery is called a lead acid battery. The lead acid battery is most commonly used in the power stations and substations because it has higher cell voltage and lower cost. Lead acid batteries are used as a power source for vehicles that demand a constant and uninterruptible source of energy. Just about every vehicle today does. For example, street motorcycles need lights that operate when the engine isn’t running. They get it from the battery. Accessories such as clocks and alarms are battery-driven. Applications • Automotive and traction applications. • Standby/Back-up/Emergency power for electrical installations. • Submarines • UPS (Uninterruptible Power Supplies) • Lighting • High current drain applications. • Sealed battery types available for use in portable equipment. Market Outlook The global lead–acid battery market was valued at $56.9 billion in 2017 and is projected to reach $70.7 billion by 2023, witnessing a CAGR of 3.7% during the forecast period. The growing demand of electric vehicles, increasing use of uninterrupted power supply (UPS) systems in industrial sectors, and rapid industrialization in developing nations are likely to generate growth opportunities and propel the market demand during the forecast period. Some of the key factors identified as drivers of the global lead acid battery market are: increasing demand for e-bikes and electric vehicles, lower maintenance and replacement costs, and reducing reliance on conventional fuel technologies. On the other hand, stringent lead emission standards and shift towards lithium-ion batteries are two glaring restraints hindering the prosperity of the lead acid battery market. Nevertheless, increasing demand from the telecommunication sector is foreseen as a fresh new opportunity in this market. Application-wise, the analysts have bifurcated the lead acid battery market into grid storage, commercial, stationary industrial, residential grid storage, motive industrial, and transportation. Until 2017, the transportation sector was providing for 47.3% of the overall demand, although the demand for stationary industrial segment is expected to expand at an above-average CAGR of 6.3% during the forecast period. Commercial and residential applications of lead acid battery are also expected to grow at a significant CAGR over the forecast period. Increasing marine activities and recreational boats are giving a trending opportunity for boats, which, in turn, is increasing the demand for lead acid battery. Globally, 85% of lead is primarily utilized in batteries for passenger cars, trucks, motorcycles, uninterruptible power supplies, and solar power storage. Demand for passenger vehicles has increased considerably and is anticipated to rise further in the near future. This, in turn, is creating high demand for lead acid batteries. Automobile and manufacturing sectors are witnessing significant expansion. This is driving the demand for stationary batteries for power backup and that for deep-cycle batteries for wheeled mobility such as golf cars, wheelchairs, and scissor lifts. However, improper and illegal disposal of lead acid batteries causes environmental pollution due to its high lead content. Furthermore, demand for the alternative Li-ion batteries in the automobile sector is increasing due to the poor performance and low cycle life based on temperature of lead acid batteries are restricts the market growth. Manufacturing process advancements in recycling of lead acid batteries provide opportunities to lower the adverse impact on the environment. The automobile and UPS & telecom applications together account for more than 55% share of the market for flooded type batteries. Thus, these are the major segments in terms of product type. The flooded segment is anticipated to constitute key share of the market in the near future due to the extensive utilization in driverless transport vehicles, electric forklifts, and electric bicycles. B.B. Battery Co., Toshiba Corporations, C&D Technologies, Inc. (Acquired By KPS Capital Partner), Crown Battery, CSB Battery Company Ltd., East Penn Manufacturing, EnerSys, Exide Technologies Inc., GS Yuasa Corporation, Johnson Controls Inc., Narada Power Source Co. Ltd., Nipress (Indonesia), Northstar, Reem Batteries & Power Appliances Co. SAOC and Zibo Torch Energy Co. Ltd. are some of the leading companies in this market. India Lead Acid Battery Market India lead acid battery market is projected to reach $ 7.6 billion by 2023. Anticipated growth in the market can be attributed to booming demand for automobiles, in addition to increasing focus of the government towards boosting the penetration of electric vehicles in the country. Moreover, development of smart grids, continuing technological developments, increasing budget allocation for housing projects and government initiatives aimed at shifting the focus from conventional sources to renewables in India is further expected to positively influence the country’s lead acid battery market in the coming years. Lead acid battery is traditionally used as rechargeable battery with varied applications including automotive for starting lighting as well as ignition usage across power backup devices such as inverter, UPS, and genset followed by telecommunication segment, electric vehicles, renewable energy production and storage. India lead acid battery market is driven by automotive and UPS & inverter industry; in addition, government schemes to promote electric vehicles coupled with rising installation of renewable energy projects are posing new opportunities for lead acid battery manufacturers in the country. Anticipated growth in the market can be attributed to booming demand for automobiles, in addition to increasing focus of the government towards boosting the penetration of electric vehicles in the country. Few of the major players operating in India lead acid battery market are Exide Industries Limited, Amara Raja Batteries Limited, Livguard Energy Technologies Private Limited, Luminous Power Technologies Pvt. Ltd., HBL Power Systems Limited, V-Guard Industries, Southern Batteries Private Limited, Su-Kam Power Systems Limited, Okaya Power Private Limited, etc. Tags #Lead_Acid_Battery_(Maintenance_Free), #Lead_Acid_Battery, #Lead_Acid_Rechargeable_Battery, Lead Acid Battery Applications, #Lead_Acid_Battery_Manufacture, Battery Manufacturing Process, #Production_of_Lead_Acid_Battery, Battery Production, Project Profile on Lead Acid Storage Batteries, #Manufacture_and_Assembly_of_Lead_Acid_Battery, Manufacturing Process of Lead Acid Battery, Battery Manufacturing, Process for Making of Lead Acid Battery, Lead Battery Manufacturing, #Production_of_Lead_Acid_Batteries, Lead-Acid Battery Production Business, #Lead_Acid_Battery_Production/Assembly, Lead Storage Batter, Lead Battery Plant, Lead Acid Battery Manufacturing Industry, Lead Acid Battery Manufacturing Plant, Battery Manufacturing Plant, #Cost_of_Setting_up_Battery_Manufacturing_Plant, Lead Acid Battery Manufacturing Plant Cost, Lead Acid Battery Manufacturing Process Pdf, Lead Acid Battery Manufacturing Cost, How to make Lead Acid Battery, Lead Acid Battery Plant Project Report, How to Make Battery in Factory, Battery Manufacturing Process, How to Start a Battery Manufacturing Business, What will be the Cost for Starting Lead Battery Manufacturing Unit? Starting a Battery Manufacturing Business, Start a Battery Manufacturing Plant, Lead Acid Battery Making Process, Lead Acid Battery Industry, #Detailed_Project_Report_on_Lead_Acid_Battery_Manufacturing_Industry, Lead–acid battery, Project Report on Lead Acid Battery Manufacturing Industry, Pre-Investment Feasibility Study on Lead Acid Battery Manufacturing Industry, Techno-Economic feasibility study on Lead Acid Battery Manufacturing Industry, Feasibility report on Lead Acid Battery Manufacturing Industry, Free Project Profile on Lead Acid Battery Manufacturing Industry, Project profile on Lead Acid Battery Manufacturing Industry, Download free project profile on Lead Acid Battery Manufacturing Industry
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Hosiery Cloth (Cotton Processing, Bleaching, Dyeing, Finishing of Cloth)

Hosiery, also referred to as legwear, describes garments worn directly on the feet and legs. The term originated as the collective term for products of which a maker or seller is termed a hosier; and those products are also known generically as hose. Rising awareness of consumers for quality, durability, fashion and style as well as personal grooming consciousness are some of the factors driving the growth of hosiery market. Over the past few years, it has been noticed that not the women hosiery segment is rising but the demand for such products are showcasing a robust growth from the men’s segment due to increasing trends in apparel and fashion. The hosiery is anticipated to observe a rapid growth in terms of both volume and value during the forecast period. The availability of variants in hosiery with various designs and colors are predicted to augment the growth of the global hosiery market with remarkable revenue of around USD 47,258.1 Million by the end of 2024 from USD 36,100.5 Million in 2016, expanding at a compound annual growth rate of 3.5% during the forecast period. The growth of the global hosiery market is driven by the robust demand for comfortable and stylish hosiery among the consumers. Changing lifestyles and demographic factors are bringing changes in demand patterns for hosiery. Although the expenditure on hosiery is largely determined by factors such as income, family size and education, the rapidly expanding affluent base of middle class population in developing countries is expected to expand the market over the forecast period. Hosiery is expected to witness significant demand by the manufacturers Healthcare and Fitness & sports industries. These products are used for the treatment of leg disorder and varicosities. Due to its tight and have flexible qualities has led to an upsurge in demand for compression hosiery in the healthcare industry. With the rise of athleisure is fueling the growth of the hosiery market. Athletes and fitness professionals prefer wearing compression hosiery over cotton socks as it increases the blood flow and performance that led to an upsurge in demand for hosiery among manufacturers in the fitness industry.
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Clear Transparent Lacquer for Coating on Brass

The term lacquer is used for a number of hard and potentially shiny finishes applied to materials such as wood. In modern techniques, lacquer means a range of clear or colored wood finishes that dry by solvent evaporation or a curing process that produces a hard, durable finish. Lacquer forms a protective clear layer on metals and is particularly useful on brass, aluminum, silver and copper, which are often in the form of decorative items. The lacquer market continues to be in a transformative phase, as solvent-based lacquers give way to water-based variants. The shift has been induced by a range of factors, however, stringent regulations and carbon consciousness among end-users are the prominent factors. Although solvent-based lacquers still account for a significant revenue share of the market, demand for water-based lacquers is also growing at a steady pace. Lacquers continue to be the preferred finishes for woodworking owing to a bevy of advantages. Among the various types of lacquers available to end-users, demand for nitrocellulose continues to be the highest, on account of its competitive pricing and quick drying features. Nitrocellulose lacquers are ideally suited for production shops of all sizes, as they offer a uniform layer of film over the material. The fact that nitrocellulose lacquers are evaporative in nature provides for easy blending. Although nitrocellulose will continue to the highest selling lacquer type globally, its limitations are influencing end-users to opt for feasible alternatives. Notable is the problem of ‘crazing’ associated with the use of nitrocellulose. Global demand for lacquers is likely to reach roughly 7 million tons in 2018, as applications in furniture, automotive, and architectural industries create sustained growth opportunities. The shift from solvent-based to water-based lacquers will become more palpable in the next decade, as a combination of environmental compliance and end-user consciousness induces changes in manufacturing and uptake.
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