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Development of a gas-phase bioprocess for isoprene-monomer production using metabolic pathway engineering

机译:利用代谢途径工程开发用于异戊二烯单体生产的气相生物工艺

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摘要

A sustainable production system for isoprene is being developed based on microbial fermentation of renewable sugars (Biolsoprene ). Isoprene is an important commodity chemical used in a wide range of industrial applications, ranging from the production of synthetic rubber for tires and coatings, to use in adhesives and development of specialty elastomers. Current production of isoprene is derived entirely from petrochemical sources. There is an increasing global need for more isoprene and a simultaneous environmental imperative to reduce greenhouse gases, both of which can be achieved by a high-efficiency fermentation-based process for polymer-grade isoprene production. The key to such a process is engineering a microbial cell factory that is streamlined in physiology to drive sugar conversion through engineered biosynthetic pathways, to produce isoprene at near theoretical yields. Two biosynthetic isoprenoid pathways being optimized towards this end, and processes delivering >60g/L of isoprene are described. The product produced in the gas-phase is recovered from the fermentation off-gas in a continuous process. Current state-of-the-art technology has resulted in production, recovery, polymerization, and manufacture of tires with the isoprene component produced via fermentation. Continued improvements in both the cell factory and the production process are being actively pursued.
机译:基于可再生糖(Biolsoprene)的微生物发酵,正在开发一种可持续的异戊二烯生产系统。异戊二烯是一种重要的商品化学品,广泛用于各种工业应用中,从生产用于轮胎和涂料的合成橡胶,到用于粘合剂和开发特种弹性体。当前异戊二烯的生产完全来自石化来源。全球越来越需要更多的异戊二烯,同时需要减少温室气体的环境要求,这两者都可以通过高效的基于发酵的聚合物级异戊二烯生产工艺来实现。此过程的关键是设计一个微生物工厂,该工厂在生理上得到简化,以通过工程化的生物合成途径驱动糖的转化,以接近理论产量的方式生产异戊二烯。为此目的,优化了两条生物合成类异戊二烯途径,并描述了输送> 60g / L异戊二烯的过程。在连续过程中,从发酵废气中回收气相产生的产物。当前最先进的技术已导致具有发酵生产的异戊二烯成分的轮胎的生产,回收,聚合和制造。电池厂和生产过程的持续改进正在积极地进行。

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