Suppr超能文献

串联微生物、酶和有机金属催化用于可再生碳源的集成转化

Concatenating Microbial, Enzymatic, and Organometallic Catalysis for Integrated Conversion of Renewable Carbon Sources.

作者信息

Klos Nina, Osterthun Ole, Mengers Hendrik G, Lanzerath Patrick, Graf von Westarp William, Lim Guiyeoul, Gausmann Marcel, Küsters-Spöring Jan-Dirk, Wiesenthal Jan, Guntermann Nils, Lauterbach Lars, Jupke Andreas, Leitner Walter, Blank Lars M, Klankermayer Jürgen, Rother Dörte

机构信息

Institute of Bio- and Geosciences 1: Biotechnology (IBG-1), Forschungszentrum Jülich GmbH, Jülich, Nordrhein-Westfalen 52428, Germany.

Institute of Applied Microbiology (iAMB), Aachen Biology and Biotechnology (ABBt), RWTH Aachen University, Aachen, Nordrhein-Westfalen 52074, Germany.

出版信息

JACS Au. 2024 Oct 21;4(12):4546-4570. doi: 10.1021/jacsau.4c00511. eCollection 2024 Dec 23.

Abstract

The chemical industry can now seize the opportunity to improve the sustainability of its processes by replacing fossil carbon sources with renewable alternatives such as CO, biomass, and plastics, thereby thinking ahead and having a look into the future. For their conversion to intermediate and final products, different types of catalysts-microbial, enzymatic, and organometallic-can be applied. The first part of this review shows how these catalysts can work separately in parallel, each route with unique requirements and advantages. While the different types of catalysts are often seen as competitive approaches, an increasing number of examples highlight, how combinations and concatenations of catalysts of the complete spectrum can open new roads to new products. Therefore, the second part focuses on the different catalysts either in one-step, one-pot transformations or in reaction cascades. In the former, the reaction conditions must be conflated but purification steps are minimized. In the latter, each catalyst can work under optimal conditions and the "hand-over points" should be chosen according to defined criteria like minimal energy usage during separation procedures. The examples are discussed in the context of the contributions of catalysis to the envisaged (bio)economy.

摘要

化学工业现在可以抓住机会,通过用可再生替代品(如一氧化碳、生物质和塑料)取代化石碳源来提高其工艺的可持续性,从而未雨绸缪,展望未来。对于将它们转化为中间产品和最终产品,可以应用不同类型的催化剂——微生物催化剂、酶催化剂和有机金属催化剂。本综述的第一部分展示了这些催化剂如何能够并行独立发挥作用,每条路线都有独特的要求和优势。虽然不同类型的催化剂通常被视为相互竞争的方法,但越来越多的例子表明,整个催化体系中催化剂的组合和串联如何能够为新产品开辟新途径。因此,第二部分重点关注一步法、一锅法转化或反应级联中的不同催化剂。在前一种情况下,反应条件必须合并,但纯化步骤要尽量减少。在后一种情况下,每种催化剂都可以在最佳条件下工作,并且“交接点”应根据既定标准(如分离过程中能耗最小)来选择。将结合催化对设想的(生物)经济的贡献来讨论这些例子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f98/11672146/2b599aafdec2/au4c00511_0001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验