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Archives :: Chementator :: Plastics Materials & Synthetic Resins

Displaying 1 - 11 of 11 stories.
December 1, 2013
A new process for producing monoethylene glycol (MEG) from synthesis-gas-based feedstocks is nearing completion of extensive pilot plant operation, according to developers Eastman Chemical Co. (Kingsport, Tenn.; www.eastman.com) and Johnson Matthey Davy Technologies Ltd. (London, U.K.; www.davyprotech.com). The technology enables MEG production from a variety of...
http://www.che.com/chementator/plastics_materials_and_synthetic_resins/New-process-for-monoethylene-glycol-completes-pilot-stage_11254.html
August 1, 2013
JX Nippon Oil & Energy Corp. (JX_NOE; Tokyo, Japan; www.noe.jx-group.co.jp) has demonstrated enhanced propylene and butenes yields by its high-severity, fluid-catalytic cracking (HS-FCC) technology. In a 3,000-bbl/d semi-commercial plant, which has been operating at the company’s Mizushima Refinery since May 2011, propylene yields have been...
http://www.che.com/chementator/plastics_materials_and_synthetic_resins/This-FCC-process-shown-to-enhance-olefins-production_10782.html
January 1, 2013
Cationic polymers have been used in the petroleum industry as shale-control agents, demulsifiers, blocking agents, and filtrate reducers for drilling fluids, but process complexity and high cost have limited their application. Now researchers from Zhejiang Normal University (Jinhua; www.zjnu.edu.cn) and Shandong University (Jinhua, both China; www.sdu.edu.cn) have reported the preparation of a...
http://www.che.com/chementator/plastics_materials_and_synthetic_resins/A-starch-based-cationic-polymer-for-oil-recovery_10074.html
December 1, 2012
Newlight Technologies (Irvine, Calif.; www.newlight.com) has launched commercial production of a polyhydroxyalkanoate (PHA) thermoplastic made from air and greenhouse gases, such as methane, that can be manufactured less expensively than conventional petroleum-derived alternatives, using a novel high-efficiency biocatalyst and bioreactor system. While considerable effort has previously been directed toward...
http://www.che.com/chementator/plastics_materials_and_synthetic_resins/Low-cost-production-of-PHA-from-air-and-greenhouse-gases_9975.html
September 1, 2012
A test method developed by SABIC (Saudi Basic Industries Corp.; Riyadh, Saudi Arabia; www.sabic.com) scientists drastically reduces the time needed to evaluate slow-crack growth resistance in high-density polyethylene (HDPE) that is used in pressure pipes. The strain-hardening test method allows HDPE producers to speed product development and improve quality control by offering an alternative to...
http://www.che.com/chementator/plastics_materials_and_synthetic_resins/Strain-hardening-test-method-speeds-HDPE-pipe-testing_9632.html
April 1, 2012
New biocomposite plastics that combine soybean-meal protein with conventional plastic resins allow significantly lower use of petroleum-based chemicals in polyethylene (PE) and polypropylene (PP) manufacturing. The new class of bioplastics incorporates soybean-meal protein, which is chemically bound to...
http://www.che.com/chementator/plastics_materials_and_synthetic_resins/Plastics-with-soy-derived-protein-reduce-petroleum-use_9158.html
April 1, 2012
A new process for generating sheets of polyethylene terephthalate (PET) eliminates several production steps used in the traditional process, offering greatly reduced energy use and improved polymer properties. Developed by Octal Petrochemicals LLC FZC (Muscat, Oman; www.octal.com), the direct-to-sheet PET (DPET)...
http://www.che.com/chementator/plastics_materials_and_synthetic_resins/This-new-PET-process-eliminates-production-steps_9160.html
April 1, 2012
A process to make polylactic acid (PLA) that requires no solvent or metal catalyst has been developed by Ricoh Co. (Ricoh; Tokyo, www.ricoh.com), in cooperation with Shizuoka University. Ricoh’s continuous PLA process is based on a commercially available organic catalyst (1,8-diazabicyclo[5.4.0]-7-undecene), the supercritical (SC) CO2 technology of professor Takeshi Sako and the organic reaction...
http://www.che.com/chementator/plastics_materials_and_synthetic_resins/This-new-route-to-PLA-requires-no-organic-solvent-or-metal-catalyst_9171.html
March 1, 2012
Earlier this year, the first polylactic acid (PLA) plant based on a new polymerization process was put into service by Synbra Technology in Etten Leur, the Netherlands. The plant — capable of producing up to 5,000 ton/yr of PLA — was built by Sulzer Chemtech Ltd. (Winterthur, Switzerland; www.sulzerchemtech.com), and uses a PLA process jointly developed by Sulzer Chemtech and Purac (Gorinchem...
http://www.che.com/chementator/plastics_materials_and_synthetic_resins/A-new-PLA-process-makes-its-commercial-debut_9030.html
March 1, 2012
Earlier this year, the first polylactic acid (PLA) plant based on a new polymerization process was put into service by Synbra Technology in Etten Leur, the Netherlands. The plant — capable of producing up to 5,000 ton/yr of PLA — was built by Sulzer Chemtech Ltd. (Winterthur, Switzerland; www.sulzerchemtech.com), and uses a PLA process jointly developed by Sulzer Chemtech and Purac (Gorinchem...
http://www.che.com/chementator/plastics_materials_and_synthetic_resins/A-new-PLA-process-makes-its-commercial-debut_9161.html
August 1, 2011
Last month, BASF SE (Ludwigshafen, Germany; www.basf.com) launched a new crosslinking acrylate monomer, hydroxpropl carbamate acrylate (HPCA), which is said to shorten the processing time for the manufacture of...
http://www.che.com/chementator/plastics_materials_and_synthetic_resins/A-new-HPCA-monomer_8281.html

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