Author: cmfeglobalreports

District Cooling Market  – Global Industry Analysis, Size, Share, Growth Trends and Forecast 2016 – 2024

District Cooling Market – Global Industry Analysis, Size, Share, Growth Trends and Forecast 2016 – 2024

Global District Cooling Market: Overview

The district cooling (DC) market report by Transparency Market Research provides in-depth analysis of the district cooling market globally. The report segments the market on the basis of application and geography. The report analyzes the global district cooling market in terms of both (cooling) energy sales volume (Tera Joules) and revenues (US$ Mn) for the years 2016–2024. For this research study, the base year is 2015, whereas the forecast is from 2016 to 2024. The report provides a comprehensive competitive landscape and features companies manufacturing district cooling systems.

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This report includes the key dynamics affecting the district cooling market globally. The analysis in the report provides detailed insights of the global district cooling market. The drivers, opportunities, and restraints of the market were analyzed in detail and are illustrated in the report. The report also provides a detailed industry analysis of the global district cooling with the help of the Porter’s Five Forces Analysis model.

Global District Cooling Market: Segmentation

The research report is studied on the basis of the application and the geography. Based on application, the market is segmented into residential, commercial, and industrial. Commercial application segment dominated the global district cooling market in terms of both energy sales volumes and revenues. Residential application segment closely followed commercial application segment. Residential application segment held around 40% market share of the global district cooling market in 2015.

Geographically, the global market is classified into five regions and further into 26 unique country sub-segments. The regional segments are North America, Europe, Asia Pacific, Middle East & Africa, and Latin America. The 26 countries which have been separately addressed in this report are the U.S., Canada, Sweden, Denmark, Sweden, Austria, Germany, France, Finland, Italy, China, Malaysia, Philippines, Singapore, India, Indonesia, South Korea, Japan, Saudi Arabia, UAE, Qatar, Bahrain, Kuwait, Oman, South Africa, Brazil, and Mexico. District cooling market in each country and region is further sub-segmented by application into residential, commercial, and industrial.

North America held the major share of the global district cooling (DC) market in 2015, accounting for around 50% of the global market share. Middle East & Africa was the second-largest market for district cooling systems, followed by Asia Pacific in 2015. Europe and Latin America held the fourth-largest and fifth-largest share of the global district cooling market in that year.

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Companies Mentioned in the Report

Some of the key market participants in the district cooling market are ADC Energy Systems LLC, Emirates Central Cooling Systems Corporation (EMPOWER), Emirates District Cooling LLC (Emicool), Emirates National Central Cooling Company PJSC (Tabreed), Stellar Energy, Keppel DHCS Pte. Ltd., Logstor A/S, Ramboll Group A/S, Tekla Corporation, Shinryo Corporation, Dalkia, Veolia, Singapore Power (SP) Group, and Alfa Laval AB among others. The report provides an overview of these companies, followed by their financial details, business strategies, SWOT analysis, and recent developments.

In-Pipe Hydro Systems Market – Global Industry Analysis, Size, Share, Trends, Growth and Forecast 2024 | TMR

In-Pipe Hydro Systems Market – Global Industry Analysis, Size, Share, Trends, Growth and Forecast 2024 | TMR

Global In-Pipe Hydro Systems Market: Overview

In-pipe hydro systems refers to micro hydro turbines that can generate power up to 100kW from pipe water, harnessing the wasted energy of the flowing water in the modern water distribution system. These in-pipe hydro systems are found to be efficient to serve the demand from small-scale commercial and residential complexes. As the energy requirements escalate worldwide due to increasing population, the need for alternate resources is escalating and in-pipe hydro systems is among the new technology that is gaining popularity. Concurrently, the global market for in-pipe hydro systems is projected for a healthy growth rate during the forecast period of 2016 to 2024.

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This report on global in-pipe hydro systems market is a comprehensive analysis of all the factors that may influence the demand in the near future, and also highlights some of the trends that must be noted by the market players to gain advantage over their rivals. By type, the report segments the market into internal and external in-pipe hydro systems, which can be further sub-segmented into mini–hydro, micro–hydro, and pico–hydro power plants, while on the basis of application, the market can be divided into factory, power stations, and others. One of the key aspect of the report is the section on company profiles wherein several prominent players have been analyzed for their market shares, manufacturing base, competitors, production, revenue, price, and gross margin.

Global In-Pipe Hydro Systems Market: Drivers and Restraints

Rapid urbanization, especially in the emerging economies, which is leading to the development of smart cities with technologically advanced set-ups, is the primary driver in the global in-pipe hydro systems market. These cities are well planned and constant emphasis is being put on conserving energy via power metering devices, heating and cooling systems and drainage systems. Additionally, several governments across the world are providing incentives for innovative methods of energy conservation, which will also reflect positively on the global in-pipe hydro systems during the forecast period. Moreover, since the energy production is completely free from external weather conditions, the popularity is growing. However, the time consumed for the installation of these systems and the initial investments required are two factors that are expected to hinder the growth.

Internal in-pipe hydro systems are more compact with an ability to generate power ranging from as low as 5 W up to 100 kW. These are available in a range of pipe diameter-centered varieties such as hydro coils, in-line impellers, and Gorlov vertical axis turbines. On the other hand, the external systems are equipped with specialized conduits for intake and outlet of water, which requires them to have large space for set-up.

Global In-Pipe Hydro Systems Market: Regional Outlook

Geographically, the report studies the lucrativeness of the regional markets for in-pipe hydro systems in North America, Europe, Asia Pacific, Latin America, and the Middle East and Africa. Currently, Asia Pacific is the most profitable market as several emerging economies such as India, China, and Malaysia are experiencing a surge in construction of commercial and residential buildings with enhanced facilities.

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Companies mentioned in the research report

Some of the prominent companies in the global in-pipe hydro systems market are Lucid Energy, Leviatan Energy Hydroelectric LLC., Toshiba Corporation Power Systems & Services Company, and Xinda Green Energy Co.,Limited, Natel Energy, Rentricity, Fuji Electric Systems, Kubota Corporation, Arup and Hitachi Industrial Equipments Co. Ltd.

Combined Cycle Gas Turbine Market – Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2024

Combined Cycle Gas Turbine Market – Global Industry Analysis, Size, Share, Growth, Trends, and Forecast 2024

Global Combined Cycle Gas Turbine Market: Synopsis

Combined cycle gas turbines effectively challenge the working and efficiency of conventional, simply designed cycle plants by producing approximately 50.0% more power from the same fuel used. In order to achieve this result, combined cycle gas turbines utilize a steam and a gas turbine in unison. Moreover, the waste heat produced out from the gas turbine is directed toward the steam turbine close by, which creates additional power.

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According to the analysts, the global combined cycle gas turbine market could be classified into two segments based on design. There are some popular designs which find application in environments where the power needs are low and space restrictions are high.

This publication is an all-embracing guide for players aiming to settle at the pinnacle of the global combined cycle gas turbine market. With significant aspects such as drivers, restraints, opportunities, and value chain analysis in view, the authors of the report have brought to light the pivotal features of the market.

Global Combined Cycle Gas Turbine Market: Trends and Opportunities

The demand for combined cycle gas turbine is anticipated to become aggressive as power generation firms adopt the systems at a peak proportion. These companies are expected to be compelled by the rising number of regulations and laws pertaining to nitrogen oxide, carbon monoxide, and carbon dioxide emissions, carbon footprint, and other particulate substances.

The combined cycle gas turbine market could also gain traction while competing well with the market for renewable energy. Combined cycle gas turbine plants boast an average lifespan of 30 years, whereas renewable energy power plants live up to only 20 years. In terms of cost, while combined cycle gas turbine generates power at an economical cost of US$500/kw to US$800/kw, renewable energy costs from US$1,500/kw to US$3,000/kw. Thus, it is proven that combined cycle gas turbines are much more durable, economic, and efficient.

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Discrepancies related to power demands throughout a day can be easily coped with the flexibility and capacity possessed by combined cycle gas turbines. The employment of cleaner fuels such as natural gas for the purpose of curbing emissions, the need to formulate improved accessories and alternatives, and advancing technology are predicted to lay a solid foundation for growth in the global combined cycle gas turbine market.

Global Combined Cycle Gas Turbine Market: Regional Analysis

North America and Europe are envisioned to be the key regions for the international combined cycle gas turbine market on account of emission laws related to climatic changes, global warming, and other worldwide issues put into action. The power requirements in Asia Pacific are prognosticated to surge at a telling rate due to enlarging industrialization and population in countries such as India and China. As a result, this region could also be a top market for combined cycle gas turbine. The other major geographies of the world combined cycle gas turbine market could be Latin America and the Middle East and Africa.

Global Combined Cycle Gas Turbine Market: Competition

Companies prevailing in the international combined cycle gas turbine market are prophesied to employ better quality accessories, fuel types, and materials for developing and designing competent steam and gas turbines. This will help them to raise the efficiency of their combined cycle gas turbines by more than 61.0% and thereby intensify the competition in the market. Solar Turbines, Doosan Heavy Industries & Construction Co Ltd., Mitsubishi Hitachi Power Systems (MHPS), Kawasaki Heavy Industries, Siemens, and General Electric are the leading players in the global market.

Oil Filter Elements Market – Global Industry Analysis, Size, Share, Trends, and Forecast 2016 – 2024 | Research Report

Oil Filter Elements Market – Global Industry Analysis, Size, Share, Trends, and Forecast 2016 – 2024 | Research Report

Oil filter elements are designed to remove contaminants from circulating oil, transmission oil, engine oil, and hydraulic oil in automobiles. The accumulation of particles in engine oils may increase friction during the piston movement and could affect the efficiency of the internal combustion engines. Clean oil ensures enhanced engine and turbine performances as it both lubricates and cools the engine. Oil filter elements provide constant purification and lubricate the moving parts of the engines by maintaining the oil at a required level.

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These elements aid the elongation of an engine’s life efficiency by effectively trapping the debris and dirt that harm internal engine parts such as cylinders and pistons. Oil filter elements possess a high dirt holding capacity – a property which is exploited with their incorporation into vehicles. Furthermore, oil production, transport, and recycling processes also depend on oil filter elements for proper functioning.

The recent surge in the total number of vehicles produced has been a major driver of the global oil filter elements market. The rapid expansion of the commercial and passenger vehicle industries is expected to amplify the need for oil filters over the next few years. Growing innovation along with rising demands for additional functions have spurred the oil filter elements market. The increasing amount of disposable income also plays a significant role. Tighter emission norms implemented by governments is another contributing factor currently creating a positive impact on the oil filter elements market. Other propellants include the escalating number of health disorders due to contaminated cabin air, a rising awareness about good quality air, and demands for pressure-stabilized, long-lasting, and high-performance engines.

In terms of the type of media used, the global oil filter element market is divided into the following categories: cellulose media, synthetic media, laminated media, and pure glass media. In addition, filter media can be designed to capture particles through two distinct methods, namely surface retention and depth retention. Based on filter type, the market is split into the primary, secondary (bypass), and combination segments.

Oil filter elements can also be characterized with respect to the method used to filter the contaminants or the manner in which the oil flows through the housing. On the basis of material used, oil filter elements are available in spin on filter and filter cartridge varieties. The former can be installed inside the engine valve, while the latter has recently been introduced into the industry. Environmental oil filter elements are another segment – cost-effective and easy to replace.

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The oil filter element market expanded rapidly in 2015 and is estimated to exhibit the same trend during the forecast period. It is distributed over Asia Pacific, Europe, North America, Latin America and Middle East & Africa. Asia Pacific is the key market for oil filter element systems because of the rapid industrialization and urbanization in the region. Europe is another important region in terms of usage of oil filter elements due to the technological advancements here. Rising demands for advanced and luxurious automobiles in the region make North America a prominent player in the global oil filter elements market, which is projected to expand to Latin America and the Middle East in the near future.

Key players in the market include MANN+HUMMEL, DENSO CORPORATION, Clarclor Inc, Tokyo Roki Co Ltd Lydall Inc, Syn Lube Incorporated, and Gud Holdings Ltd.

Scale Inhibitors Market – Global Industry Analysis, Growth, Trends and Forecast 2016 – 2024

Scale Inhibitors Market – Global Industry Analysis, Growth, Trends and Forecast 2016 – 2024

Global Scale Inhibitors Market: Overview

Scale inhibition is a chemical treatment used to control or prevent scale deposition in the production conduit or completion system. Scale-inhibitors may be continuously injected through a downhole injection point or periodic squeeze treatments may be undertaken to place the inhibitor in the reservoir matrix for subsequent blending with produced fluids. Some scale-inhibitor systems integrate scale inhibitors and fracture treatments into one step, which guarantees that the entire well is treated with scale inhibitor.

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In this type of treatment, a high-efficiency scale inhibitor is pumped into the matrix surrounding the fracture face during leakoff. It adsorbs to the matrix during pumping until the fracture begins to produce water. As water passes through the inhibitor-adsorbed zone, it dissolves sufficient inhibitor to prevent scale deposition. The inhibitor is better placed than in a conventional scale-inhibitor squeeze, which reduces the retreatment cost and improves production.

Scale occurs because the minerals in produced water exceed their saturation limit as temperatures and pressures change. Scale can vary in appearance from hard crystalline material to soft, friable material and the deposits can contain other minerals and impurities such as paraffin, salt and iron. When energy is applied to hard water, the minerals can drop out of the solution and settle on surfaces forming scale. This deposition creates major problems for food service operators such with ice, coffee, espresso, steam and warewashing equipment. Mineral scale can clog tubing and small orifices, coat heating and cooling elements, and result in increased detergent usage.

Scale also causes reduced energy transfer and efficiency loss, resulting in increased energy demands for cooling or heating, and increased operating costs. Scale inhibitors are used to prevent this deposition. There are various types of scale inhibitors. An electrolytic scale inhibitor has two metals inside it, usually copper and zinc. In the presence of water, the two metals produce an electrical cell. The electrical charge and some new zinc ions in the water cause the hard water (calcium and magnesium ions) which forms scale to cling together in a different crystal form which is less likely to stick to pipes or other surfaces.

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Global Scale Inhibitors Market: Trends and Opportunities

The increasing use of scale inhibitors for water treatment applications has been the key driver for the market. In addition, the demand from oil & gas industry is anticipated to fuel the growth of the scale inhibitor market over the next few years. The water treatment industry in China and Western Europe employ scale inhibitors in order to treat water. The scale inhibitors which exhibit very little reactivity with water purification chemicals are used in the water treatment industry.

Additionally, the thriving oil & gas industry across the globe makes use of scale inhibitors extensively. The pipelines required for the oil & gas transportation from rigs to refineries must be of the highest quality in order to prevent spillage of crude oil. Scale formation in these pipelines weakens the pipes owing to which cracks and fissures develop on their surfaces. Scale inhibitors are used to maintain the quality of these pipes.

China, Western Europe and Latin America are some of the largest consumers of scale inhibitors. In the U.S. and Europe certain variants of scale inhibitors use chemicals owing to the environmental harm they cause. However, the flourishing oil & gas industry in North America coupled with the ongoing shale gas exploration makes extensive use of scale inhibitors for the maintenance of pipelines. Furthermore, the growing industrialization in Latin America is expected to drive the market of scale inhibitors within the forecast period. Other industries such as refineries, chemical processing, lubricants, metal processing & metal working industries are also expected to contribute to the growth of this market.

The key players in the scale inhibitors market are Ashland Inc, AkzoNobel, GE Water and Process Technologies, Solutia Inc, BASF SE, Dai-Ichi Karkaria Ltd, Cortec Corporation, Dow Chemical Co, Ecolab and Henkel among others.

Potash Mining Market – Global Industry Analysis, Trends, Forecast : 2024

Potash Mining Market – Global Industry Analysis, Trends, Forecast : 2024

Global Potash Mining Market: Overview

The agriculture sector forms the economic backbone for most of the developing countries. Presently, emerging economies such as India, Indonesia, China and Ghana are still heavily dependent on agriculture for the growth of their economies. The dependence of emerging countries on agriculture, coupled with the rise in population can act as the driver for the development of potash mining market. Potash is mostly used in the manufacturing of fertilizers. Further, as forecasted by Uralalkali, one of the largest producers of potash; the demand for potash can reach upto 60 million tons in 2014 from 58 million tons in 2013. Presently, around 90% of the total potash is used in the fertilizer sector with Asia and Latin America as the major markets.

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Global Potash Mining Market: Segmentation

The segmentation of the potash mining market can be done on the basis of mining technologies, end use of potash and the location of the major potash producing and consuming countries of the world. Most of the potash mines are the deep mines, located at the depth of around 1,400 meters. Others include surface mines, which can be mined using strip mining techniques. The deep underground potash mines are mined using the underground mining techniques.

Manganese underground mining is used to extract the manganese present in deep down the earth crust. The underground mining includes the use of vertical shafts and adits to reach the ore body from where the mineral is present. The potash ore, which is present at the surface, can be mined using the strip mining procedure. During the strip mining, the rock or the soil that is present over the deposit is removed to reach the ore body. Besides, being used as fertilizer, the potash can also be used in recycling of aluminum, snow and ice melting, medicines, and oil well drilling fluid.

The regional segmentation of the potash mining market can be done on the basis of location of major potash producing and consuming countries. The major producers of potash include Canada and the United States in North America; Russia, Germany, Belarus, Spain and the United Kingdom in Europe; China in Asia Pacific and Chile and Brazil in Rest of World. According to USGS (United States Geological Survey), in 2011, Canada produced around 11.2 million tons of potash with the reserves of around 4,400 million tons. The major consumers of the potash include countries such as China, the United States, India and Brazil. According to Potash Brazil Limited, Brazil imported around 90% of its total potash requirement. Presently, Brazil accounts for around 80% of total potash consumption in Latin America region.

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Global Potash Mining Market: Driver, Restraints, and Competitive Landscape

Increasing demand of fertilizers in agro-dependent economies, rise in population, and advancement in mining techniques and presence in abundance, are the major drivers for the potash mining market. The legal and environmental concerns related to land acquisition and mining respectively, along with the high capital requirement for conducting mining, are the major restraints to the potash mining market. The opportunities lie with the increase in demand for the improvement in the rate of crop production and quality.

The major potash mining companies are BHP Billiton, Rio Tinto Limited, Potash Corporation of Saskatchewan Inc, The Mosaic Company, Agrium Inc., Red Metal Limited and Great Quest Metals Limited.

Sapphire Mining Market – Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2016 – 2024 | Research Report

Sapphire Mining Market – Global Industry Analysis, Size, Share, Growth, Trends and Forecast 2016 – 2024 | Research Report

Sapphire Mining Market: Overview

Sapphire is an aluminum oxide that falls under the corundum metal category. Under general use, sapphires qualify as a jewelry item. Certain sediments or rock formations are the major natural sources for sapphires. Artificial or synthetic sapphires are also manufactured for industrial purposes of the remarkable hardness of sapphires and of aluminum oxide in general. These sapphires are used in some non-ornamental applications, including infrared optical components, such as in scientific instruments, wristwatch crystals, movement bearings, and very thin electronic wafers, which are used as the insulating substrates of very special purpose solid state electronics, especially integrated circuits and LEDs.

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Most sapphires come from countries with strict guidelines on how mining may proceed. In Sri Lanka, mining is regulated so the land is protected from over-use. Here, sapphire mining is restricted to small-scale operations where heavy machinery is forbidden. Natural untreated sapphires are rare and are mined in a manner that ensures a stable market and secures the deposits for future generations. Strip mining such as in some emerald mining operations creates tremendous environmental damage and only benefits a few large companies that have the capital for a large-scale operation. This type of mining also results in a market that will fluctuate heavily when new deposits are found, as the new production will flood the market and prices will drop. Some sapphire producing countries do not allow mining activities that damage the environment or create unstable economic conditions. These responsible fair trade laws are regulated well and have existed for years.

Sapphire Mining Market: Drivers and Restraints

The sapphire mining market is affected by certain positive drivers, namely the increasing demand of sapphire for the production of jewelry and LEDs. Secondly, new deposits and mining sites have been recently discovered in parts of Australia and South Africa that have attracted a lot of companies to start exploration and mining of the gem.

Despite the positive growth, the industry has been facing certain restrictions in terms of extraction methods and the extent of extraction allowed. Government regulations have been put into place over concerns of ecological imbalance and environmental hazards that sapphire mining has caused over the years.

Sapphire mining has had a major impact on agricultural lands as well. Intensive capital requirement and availability of expertise for operations are also some of the factors that have hindered the progress of sapphire mining. Despite all the limitations, new opportunities lie in store. With the advent of new eco-friendly mining technologies, sapphire mining could see a spur of growth in the near future.

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Sapphire Mining Market: Segmentation

Most of the world’s sapphire production and mining is carried out in Australia in the Asia-Pacific region followed by Sri Lanka, Myanmar Thailand, Laos, Malawi and Cambodia. The state of Montana in the U.S. leads the market in the North American region. No significant deposits have been discovered in Europe; hence sapphire mining there is limited. The African region also boasts a significant sapphire production dominated by Tanzania, Kenya, Nigeria, Madagascar and South Africa.

The sapphire mining market can be classified by the mode of mining undertaken for extraction i.e. from alluvial deposits or from primary underground workings. Mining depends on the content of the surrounding materials and the depth of the mine. Among these the shallow reserves can be penetrated by simple hand mining methods. Deeper ground is mined by digging shafts, while some fields consist of large-scale open-cut mining lease operations involving the use of heavy earthmoving equipment.

Sapphire Mining Market: Companies Mentioned in the Report

A few companies that are involved in sapphire mining are Sino Resources Mining Corp Ltd., Coolamon Mining Pty. Ltd., Herbert Drilling Coy., The Natural Sapphire Company and Lapigems Gem Company