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首页> 外文期刊>Green chemistry >Design of recombinant whole-cell catalysts for double reduction of C=C and C=O bonds in enals and application in the synthesis of Guerbet alcohols as industrial bulk chemicals for lubricants
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Design of recombinant whole-cell catalysts for double reduction of C=C and C=O bonds in enals and application in the synthesis of Guerbet alcohols as industrial bulk chemicals for lubricants

机译:用于双重减少C = C和C = O键的重组全细胞催化剂的设计和在合成抗叶醇醇作为润滑剂的工业散装化学物质中的应用

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摘要

Whole-cell catalysts overexpressing two enzymes for a double reduction cascade in which aliphatic alpha-branched alpha,beta-unsaturated aldehydes are converted into Guerbet alcohols as a highly demanded class of lubricants were constructed and characterized. The reaction conditions were optimized to suppress by-product formation, achieving high conversion and selectivity. Application of methanol as a co-solvent on a 500 mL scale enabled a substrate concentration of 18.5 g L-1 obtaining 97% yield and 88% purity without further distillation. Addressing the needs of industrial processes, substrate loading was increased up to 94 g L-1 and the E-factor (environmental factor) was significantly improved compared to the original process with isolated enzymes.
机译:过表达两种酶的全细胞催化剂,用于双减少级联,其中脂族α-支链α,β不饱和醛转化为抗甲醇醇,因为构建和表征了高度要求的润滑剂。 优化反应条件以抑制副产物的形成,实现高转化和选择性。 甲醇在500mL标度上施加溶剂,使得底物浓度为18.5g L-1,得到97%收率和88%纯度而无需进一步蒸馏。 解决工业过程的需要,与具有分离酶的原始方法相比,底物负荷增加高达94g L-1,并且与原始过程相比,e-infact(环境因子)显着改善。

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