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首页> 外文期刊>The Korean journal of chemical engineering >Lignocellulosic and marine biomass as resource for production of polyhydroxyalkanoates
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Lignocellulosic and marine biomass as resource for production of polyhydroxyalkanoates

机译:木质纤维素和海洋生物质作为生产聚羟基链烷酸酯的资源

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Polyhydroxyalkanoates (PHAs) are considered as sustainable 'green/bio plastics' because they have potential to replace their depleting petroleum-based competitors in the recent future. To reach this goal, PHAs must be able to compete with the established petroleum-based plastics in both technical and economic aspects. The current PHA production is based on high-priced substrates of high nutritional value and simple carbon sources such as glucose, sucrose, starch, or vegetable oils. Non-food based carbon-rich complex polysaccharides of lignocellulosic and marine biomass can be used as alternative and suitable feedstock through consolidated bioprocessing (CBP). CBP is a promising strategy that involves the production of lytic enzymes, hydrolysis of biomass, and fermentation of resulting sugars to desired products in a single process step. CBP offers very large cost reductions if microorganisms possessing the abilities are found or microbial processes are developed to utilize substrate and simultaneously produce products. This review focuses on possible available complex polysaccharides of lignocellulosic and marine biomass that can be used as resources to produce PHAs in biorefineries, including CBP.
机译:聚羟基链烷酸酯(PHA)被认为是可持续的“绿色/生物塑料”,因为它们有潜力在不久的将来替代其消耗石油的竞争对手。为了实现这一目标,PHA必须能够在技术和经济方面与已建立的石油基塑料竞争。当前的PHA生产基于具有高营养价值的高价底物和简单的碳源,例如葡萄糖,蔗糖,淀粉或植物油。木质纤维素和海洋生物质的非食品基富碳复合多糖可通过整合生物处理(CBP)用作替代和合适的原料。 CBP是一种有前途的策略,涉及在单个过程步骤中生产裂解酶,水解生物质以及将所得糖发酵为所需产品的过程。如果发现了具有这种能力的微生物或开发了利用底物并同时生产产品的微生物工艺,CBP可以大大降低成本。这篇综述集中在木质纤维素和海洋生物质可能的可用复杂多糖上,这些多糖可以用作在包括CBP在内的生物精炼厂生产PHA的资源。

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