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Next-Generation Catalysis for Renewables: Combining Enzymatic with Inorganic Heterogeneous Catalysis for Bulk Chemical Production

机译:可再生能源的下一代催化:将酶催化与无机多相催化相结合以进行批量化学品生产

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摘要

Nowadays, production of bulk and commodity chemicals from renewable feedstocks is widely debated and investigated as an alternative to the fossil platform. The conversion of biomass necessitates the development of a new generation of catalysts that enable new kinds of reactions from a different chemical platform under different conditions than those conventionally employed. Indeed, new process and catalyst concepts need to be established. Both enzymatic catalysis (biocatalysis) and heterogeneous inorganic catalysis are likely to play a major role and, potentially, be combined. One type of combination involves one-pot cascade catalysis with active sites from bio-and inorganic catalysts. In this article the emphasis is placed specifically on oxidase systems involving the coproduction of hydrogen peroxide, which can be used to create new in situ collaborative oxidation reactions for bulk chemical production.
机译:如今,使用可再生原料生产散装和大宗化学产品的讨论和化石平台的替代品受到了广泛的讨论和研究。生物质的转化需要开发新一代的催化剂,该催化剂能够在与常规使用的条件不同的条件下,通过不同的化学平台进行新的反应。实际上,需要建立新的方法和催化剂概念。酶催化(生物催化)和非均相无机催化都可能起主要作用,并且有可能结合起来使用。一种类型的组合涉及具有生物和无机催化剂活性位的一锅级联催化。在本文中,重点特别放在涉及联产双氧水的氧化酶系统上,该系统可用于产生新的原位协同氧化反应以进行批量化学生产。

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