According to the new market research report “Flow Chemistry Market by Reactor Type (CSTR, Plug Flow Reactor, Microreactor, Microwave System), Application & Geography – Trends & Forecast to 2018“, The Flow chemistry market is estimated to grow at a CAGR of 9.4% till 2018 to reach $1,216.11 million. The major devices discussed in the report are CSTR, PFR, MRT and Microwave systems. MRT systems are the topmost growing type of flow reactors in comparison with others.
Browse 70 market data tables and 22 figures spread through 192 pages and in-depth TOC on “Flow Chemistry Market”
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The report discusses market revenue for each type of device according to applications and regions. The applications vary with respect to the device along with market share. For MRT systems the applications considered are chemicals, pharmaceuticals, academic research and laboratories, biofuels, perfume and fragrance manufacturing, nanoparticles production and others. All the important materials used are discussed in the report.
For the PFR, CSTR and Microwave systems device market, the revenue split is given in terms of application and region and for MRT systems, the market is given by type (plate or chip, capillary and microstructured), region (North America, Europe, Asia Pacific and Rest of Word). Also, the major countries like the U.S., Germany, U.K, Switzerland, France, Japan and China are discussed on the basis of applications.
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The market for continuous flow reactors is driven by sustainable production techniques laws (cGMP) and other environmental issues related to chemicals processing. Continuous flow reactors consume less energy as compared to traditional batch reactors. These reactors find wide applications in pharmaceuticals and chemicals processing. A lot of opportunities are found in other industries which include petrochemicals, nanoparticles production, flavor and fragrance manufacturing, etc.
At present, about 90% of the total continuous flow reactors market is captured by PFR and CSTR applications, but the MRT systems have the ability to compete with these reactors as technology further advances.
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