By Pira International Ltd
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PBS, PBT, etc. g. C5 wood sugars xylose or arabinose converted to sugar alcohols xylitol and arabinitol, then converted to glycols, lactic acid or glycerol. However the limited availability and multiple conversion steps makes these wood sugars compared to dextrose economically prohibitive. g. g. housings/enclosures, wind vanes, overhead luggage bins, etc. g. PTT fibers Source: IntertechPira Biopolymers PLA, PHA, Starch blends PLA, PHA, Starch blends Biopolyesters PLA & Starch blends PLA & other biopolyesters PLA, PHA PLA, PHA, Starch blends Biopolyesters, Blends with natural fiber (flax), biopolyurethanes PTT and other biopolyester fibers PTT and other biopolyester fibers PLA & starch blends PLA & high-temp sc-PLA and other biopolyesters Biopolyesters, Biopolyurethanes PLA, PHA Glass filled unsaturated polyesters, epoxies Alkyd and other vegetable oil derived polymers in oil base RETURN TO PAGE Producer & brand PLA NatureWorks (Cargill); Ingeo Purac; Puralact PHA Telles (Metabolix/ADM); Mirel Tianan Biologic Tianjin Green BioScience (DSM jv) PBS Mitsubishi Chemical / PTT jv; GS-Pla Reverdia (DSM/Roquette jv) Ire Chemical; Enpol Bio-urethanes, polyesters & nylons Dow DuPont JV; Cerenol, Biomax & others Arkema; Rilsan-11 Bio-polyolefins Dow / Crystalsev Bioethanol jv Braskem Compounds, starch, etc.
COM biomaterials > e-book > biopolymer processing technologies Applications for Biopolymers preventing climate change and global warming runs out in 2012. The December 2009 Copenhagen conference was to end with a newly agreed protocol known as the ‘Copenhagen Accord’, however the accord fell short of expectation. So-called failure of the accord may however prove useful, if it allows countries to unravel some of the underlying misconceptions and work towards a new, more holistic view of the environment and mans’ impact.
Today there are many more high performance durable bio-based thermosets and thermoplastics compared to biodegradable plastics alone, and the volume of bio-based thermosets is larger than the volume of bio-based thermoplastics. The cost / performance balance of many of these materials is competitive, although more economic pathways for other biopolymer solutions continue to be investigated. This research focuses on ‘white biotechnology’ and biomass metabolic engineering (use of GMO and altered microbial strains in new processes) to create so-called Wave II cellulosic feedstock conversion technologies, using large scale manufacturing plants to achieve economic sustainability.
Biopolymer Processing Technologies by Pira International Ltd