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Stepping on the Gas to a Circular Economy: Accelerating Development of Carbon-Negative Chemical Production from Gas Fermentation
Annual Review of Chemical and Biomolecular Engineering ( IF 7.6 ) Pub Date : 2021-06-07 , DOI: 10.1146/annurev-chembioeng-120120-021122
Nick Fackler 1 , Björn D Heijstra 1 , Blake J Rasor 2 , Hunter Brown 2 , Jacob Martin 2 , Zhuofu Ni 2 , Kevin M Shebek 2 , Rick R Rosin 1 , Séan D Simpson 1 , Keith E Tyo 2 , Richard J Giannone 3 , Robert L Hettich 3 , Timothy J Tschaplinski 4 , Ching Leang 1 , Steven D Brown 1 , Michael C Jewett 2, 5 , Michael Köpke 1
Affiliation  

Owing to rising levels of greenhouse gases in our atmosphere and oceans, climate change poses significant environmental, economic, and social challenges globally. Technologies that enable carbon capture and conversion of greenhouse gases into useful products will help mitigate climate change by enabling a new circular carbon economy. Gas fermentation usingcarbon-fixing microorganisms offers an economically viable and scalable solution with unique feedstock and product flexibility that has been commercialized recently. We review the state of the art of gas fermentation and discuss opportunities to accelerate future development and rollout. We discuss the current commercial process for conversion of waste gases to ethanol, including the underlying biology, challenges in process scale-up, and progress on genetic tool development and metabolic engineering to expand the product spectrum. We emphasize key enabling technologies to accelerate strain development for acetogens and other nonmodel organisms.

中文翻译:


走天然气走向循环经济:加快发展天然气发酵负碳化工生产

由于大气和海洋中温室气体含量不断上升,气候变化给全球带来了重大的环境、经济和社会挑战。实现碳捕获和将温室气体转化为有用产品的技术将通过实现新的循环碳经济来帮助缓解气候变化。使用固碳微生物的气体发酵提供了一种经济可行且可扩展的解决方案,具有独特的原料和最近已商业化的产品灵活性。我们回顾了气体发酵的最新技术,并讨论了加速未来开发和推广的机会。我们讨论了当前将废气转化为乙醇的商业工艺,包括潜在的生物学、工艺放大方面的挑战、并在遗传工具开发和代谢工程方面取得进展,以扩大产品范围。我们强调加速产乙酸菌和其他非模式生物菌株开发的关键使能技术。

更新日期:2021-06-08
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