Albany, NY -- (SBWIRE) -- 11/28/2016 -- Laboratory plasticware is made from polymers and has diverse applications across laboratory and research centers. The market for laboratory plasticware has significantly evolved in the last few years in terms of design, material composition, and application. Laboratory equipment or apparatuses made from polymers is being preferred because of their unbreakable nature. This property also enhances their applicability in handling radioactive isotopes and hazardous and carcinogenic substances or chemicals.
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Various types of laboratory plasticwares that are used in different laboratory or research encompass aspirator bottles, laboratory beaker, Buchner funnel, carrier tray, centrifuges and micro centrifuge tubes. Apart from these equipments laboratory plasticware are gaining lot of acceptance in cell cultures and cryopreservation related studies and experiments. Some of this equipment comprises cryobox, cryo coders, cryovials among others. With the advances in technology different chemical compositions or polymers are used to manufacture these laboratory plasticware equipments.
Some of the polymer used in manufacturing includes Low Density Polyethylene (LDPE). The LDPE based laboratory plasticware can withstand up to 90° C if used for short span of time and can be used continuously for longer period of time between 50°C-80°C. Various organic solvents may soften or swell LDPE but it has excellent resistance to dilute and concentrated acids, alcohols, bases and esters. The ranges of laboratory plastics apparatus manufactured from LDPE encompasses bottles, wash bottles, carboys and storage tanks among others. Similarly, High Density Polyethylene (HDPE) HDPE exhibits higher chemical resistance than LDPE and can be used to handle or work with extremely concentrated or hazardous chemical substances. Polymethylpentene (PMP) is a polymer that is highly transparent in nature and rigid in nature and can withstand up to 180°C- 200°C. PMP is particularly useful in the manufacture of volumetric apparatus such as flasks, beakers and measuring cylinders. Polyvinylchloride (PVC) are primarily used in manufacturing tubing. The characteristic of the polymer makes the final product soft, pliable and transparent. Though PVC are not very resistive to organic solvents yet they posses good resistance to oils and are low permeable to gases.
Despite witnessing growth at a steady rate, the market for laboratory plasticware in the U.S. and Europe is threatened by government cuts in funding for research and development. The reluctance of private companies for investing in R&Ds is also expected to have a negative impact on the market. Nevertheless, as per the report, the U.S. will continue to remain the largest market for plasticware laboratory equipment owing to the presence of a large number of research centers and universities in the nation.
The global market for laboratory plasticware also witnesses rising demand in the emerging economies of Asia Pacific such as India, Singapore, China, and Japan. The surging economies of these countries are providing lucrative opportunities for the market vendors to capitalize on. The prevalence of stringent regulations mandating enhanced safety across the laboratory also aids the expansion of the global laboratory plasticware market.
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The countries encompassed within the Rest of the World are yet to emerge as attractive markets for laboratory plasticware. However, favorable government policies are attracting top notch R&D companies in these countries, which is expected to positively impact the laboratory plasticware market.
To present a holistic report on the prevailing competitive landscape, the report also profiles companies such as Eppendorf AG, Duran Group GmbH, Thermo Fisher Scientifi, Inc., Mettler-Toledo International Inc., Wheaton Science Products, and others.
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