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Additional info for Biopolymer Processing Technologies
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. Legislation Growth and choice of end-use applications for biopolymers will be a function of many market drivers.
4 Mechanical properties: biopolymers vs. 6 Use of molded PHA Source: C. 9 BILLION LB) Note: used by Ford in seating and cushioned dashboard designs Source: D. 5 Biorenewability vs. 4 Mechanical properties: biopolymers vs.
If additional compounded blends with petropolymers are included, capacity could be higher. These include: • PLA by NatureWorks, Galactic, Mitsui, Toray, Teijin, Purac and others • PHA family of resins (PHB, PHBH, PHBV and others) by Telles (Metabolix/ADM jv), Tianjin Green, Danimer, DSM JVs and others • Bio-based polyesters (bio-PDO and succinic acid polymers (DuPont, BASF, Mitsubishi and others) • Cellulosic polymers (Eastman, Innovia Films and others) • Bio-epoxy and urethanes from bio-glycerol and other bio-polyols • Bio-polyolefins (two producers of PE in Brazil: Braskem and Dow) • Starch polymer blends (Cereplast, Novamont, Rodenburg, Plantic and several other players) Petrochemicalbased polymers (petropolymers) will continue to be the preeminent material of choice for many years into the future.