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Recent trends in integrated bioprocesses: aiding and expanding microbial biofuel/biochemical production

机译:综合生物过程中最近的趋势:辅助和扩大微生物生物燃料/生化生产

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摘要

Microbial biosynthesis of fuels and chemicals represents a promising route for their renewable production. Product toxicity, however, represents a common challenge limiting the efficacy of this approach. Integrated bioprocesses incorporating in situ product separation are poised to help address this intrinsic problem, but suffer their own unique shortcomings. To improve and expand the utility of this versatile bioprocessing strategy, recent innovations have focused on developing more effective separation materials and novel process configurations, as well as adapting designs to accommodate semi-continuous modes of operation. As a result, integrated bioprocesses are finding new applications to aid the biosynthesis of an ever-growing list of bioproducts. Emerging applications, meanwhile, are exploring the further expansion of such designs to interface microbial and chemical catalysts, leading to new and versatile routes for the one-pot synthesis of an even greater diversity of renewable products.
机译:微生物生物合成的燃料和化学品代表了可再生生产的有希望的路线。然而,产品毒性代表了限制这种方法的功效的共同挑战。包含原位产品分离的综合生物处理是有助于解决这个内在问题,但遭受自己独特的缺点。为了提高和扩展这种多功能生物处理策略的效用,最近的创新集中在开发更有效的分离材料和新颖的过程配置,以及适应设计以适应半连续的操作模式。因此,集成的生物处理正在寻找新的应用,以帮助生物合成生物合成生物化的生物化学列表。同时,新兴应用正在探索这种设计的进一步扩展,以界面进行微生物和化学催化剂,导致新的和通用途径,用于一锅合成甚至更大的可再生产品多样性。

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