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首页> 外文期刊>Beilstein journal of organic chemistry. >Biocatalysis for the application of CO2 as a chemical feedstock
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Biocatalysis for the application of CO2 as a chemical feedstock

机译:生物催化用于将CO2用作化学原料

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Biocatalysts, capable of efficiently transforming CO2 into other more reduced forms of carbon, offer sustainable alternatives to current oxidative technologies that rely on diminishing natural fossil-fuel deposits. Enzymes that catalyse CO2 fixation steps in carbon assimilation pathways are promising catalysts for the sustainable transformation of this safe and renewable feedstock into central metabolites. These may be further converted into a wide range of fuels and commodity chemicals, through the multitude of known enzymatic reactions. The required reducing equivalents for the net carbon reductions may be drawn from solar energy, electricity or chemical oxidation, and delivered in vitro or through cellular mechanisms, while enzyme catalysis lowers the activation barriers of the CO2 transformations to make them more energy efficient. The development of technologies that treat CO2-transforming enzymes and other cellular components as modules that may be assembled into synthetic reaction circuits will facilitate the use of CO2 as a renewable chemical feedstock, greatly enabling a sustainable carbon bio-economy.
机译:生物催化剂能够有效地将CO 2 转化为其他更还原的碳,它为依赖于减少天然化石燃料沉积的当前氧化技术提供了可持续的替代方法。在碳同化途径中催化CO 2 固定步骤的酶是将这种安全和可再生原料可持续转化为中心代谢物的有前途的催化剂。通过多种已知的酶促反应,它们可以进一步转化为多种燃料和日用化学品。净碳减少所需的还原当量可能来自太阳能,电力或化学氧化,并通过体外或细胞机制传递,而酶催化降低了CO 2 转化为使它们更加节能。处理将CO 2 转化酶和其他细胞成分作为可组装到合成反应回路中的模块的技术的发展将促进CO 2 作为可再生化学品的使用原料,极大地促进了可持续的碳生物经济。

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