科技报告详细信息
Biomass Biorefinery for the production of Polymers and Fuels
Dr. Oliver P. Peoples
关键词: ALFALFA;    BIOMASS;    BIOTECHNOLOGY;    CARBON;    CONTAMINATION;    CROPS;    GENES;    IMPORTS;    MODIFICATIONS;    PLASTICS;    POLYMERS;    PROCESSING;    PRODUCTION;    SANITARY LANDFILLS;    SOLID WASTES;    SWITCHGRASS;    TARGETS;    TOBACCO polyhydroxyalkanoate;    PHA;    switchgrass;    Metabolix;    biomass;    products;   
DOI  :  10.2172/1018528
RP-ID  :  Final Report
PID  :  OSTI ID: 1018528
Others  :  TRN: US201116%%747
学科分类:燃料技术
美国|英语
来源: SciTech Connect
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【 摘 要 】

The conversion of biomass crops to fuel is receiving considerable attention as a means to reduce our dependence on foreign oil imports and to meet future energy needs. Besides their use for fuel, biomass crops are an attractive vehicle for producing value added products such as biopolymers. Metabolix, Inc. of Cambridge proposes to develop methods for producing biodegradable polymers polyhydroxyalkanoates (PHAs) in green tissue plants as well as utilizating residual plant biomass after polymer extraction for fuel generation to offset the energy required for polymer extraction. The primary plant target is switchgrass, and backup targets are alfalfa and tobacco. The combined polymer and fuel production from the transgenic biomass crops establishes a biorefinery that has the potential to reduce the nation’s dependence on foreign oil imports for both the feedstocks and energy needed for plastic production. Concerns about the widespread use of transgenic crops and the grower’s ability to prevent the contamination of the surrounding environment with foreign genes will be addressed by incorporating and expanding on some of the latest plant biotechnology developed by the project partners of this proposal. This proposal also addresses extraction of PHAs from biomass, modification of PHAs so that they have suitable properties for large volume polymer applications, processing of the PHAs using conversion processes now practiced at large scale (e.g., to film, fiber, and molded parts), conversion of PHA polymers to chemical building blocks, and demonstration of the usefulness of PHAs in large volume applications. The biodegradability of PHAs can also help to reduce solid waste in our landfills. If successful, this program will reduce U.S. dependence on imported oil, as well as contribute jobs and revenue to the agricultural economy and reduce the overall emissions of carbon to the atmosphere.

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