Key players in the Europe Inorganic Advanced Phase Change Materials Market are BASF (Germany), Ewald Dorken AG (Germany) & others.
(PRWEB) September 17, 2014
The Inorganic Advanced Phase Change Material market report defines and segments the concerned market in Europe with analysis and forecast of revenue.
Browse through the TOC of the Europe Inorganic Advanced Phase Change Material Market report, to get an idea of the in-depth analysis provided. This also provides a glimpse of the segmentation of the market, and is supported by various tables and figures.
The Inorganic Advanced Phase Change Materials (PCM) is further classified as salt hydrates and metallic PCMs. Metallic PCMs which includes low melting metals and metal eutectics are not yet commercialized because of weight penalties; however, the salt hydrates have been commercialized. The salt hydrate PCMs consist of an alloy of inorganic advanced salts and water, which combine in crystalline matrix when the material solidifies. The salt hydrate pose a number of advantages, such as low chemical cost, higher enthalpies, better thermal conductivity, and suitable melting temperature.
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The overall growth of the inorganic advanced PCM market in this region is driven mainly by the materials construction applications and strict government rules on the CO2 emission by the buildings. Government initiatives for ‘green buildings’ are boosting market growth as Inorganic Advanced PCM helps save the carbon credits allotted to each building. The consumption of Inorganic Advanced PCM in various applications such as Heating, ventilation & Air Conditioning (HVAC) and fixed refrigeration is driving the demand. The low cost of Inorganic Advanced PCM is also another factor for its high consumption compared to other. In addition, variations in the European climatic conditions also create a high demand for smart clothing and textiles for use in both hot and cold conditions are also attracting the demand of Inorganic Advanced PCM. The building and construction segment is the potential market of the overall European PCM applications. The big players in this market include BASF (Germany), Ewald Dorken AG (Germany), and Outlast Technology (U.S.), are planning for expanding the production facilities in the region.
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The report covers the European inorganic advanced PCM market which is segmented on the basis of applications and geography. In this region, the Inorganic Advanced PCM are applied in building & construction, refrigeration, energy storage systems, supply chain, textiles manufacturing, phase change memory and heating ventilation &air conditioning system (HVAC).
Asia-Pacific Inorganic Advanced Phase Change Materials Market
The Asia-Pacific Inorganic Advanced Phase Change Materials Market is witnessing a high growth due the feasible properties of inorganic PCM which makes it suitable for various end user applications. The report estimates the size of the Asia-Pacific Inorganic Advanced Phase Change Materials Market both, in terms of volume and value. The report provides a comprehensive overview of the key market drivers, challenges and issues. Asia-Pacific Inorganic Advanced Phase Change Materials Market is projected to reach $120.8 million by 2018, growing at a CAGR of 20.8% from 2013 to 2018. The key driver of the market is the rising consumption of the inorganic PCM in major applications such as HVAC, thermal energy storage and fixed refrigeration.
The report “Asia-Pacific Inorganic Advanced Phase Change Materials Market ” defines and segments the Inorganic Advanced Phase Change Materials Market in the region with analyses and projections of the size of the Asia-Pacific Inorganic Advanced Phase Change Materials Market with respect to volume (KT) and value ($Million).
The rising demand for energy saving and environment friendly technology drives the growth of the global phase change material (PCM) market. A highest growth has been observed in Asia-Pacific where most of the companies have already been established.
The inorganic PCM are further classified as salt hydrates and metallic. Inorganic PCMs are widely used because of their higher melting enthalpy and sharper melting points than organic and eutectic PCMs.
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