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Biodesulfurization: How to Make it Work?

机译:生物脱硫:如何使其发挥作用?

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Desulfurization biocatalysts have been demonstrated to selectively oxidize and/or cleave carbon-sulfur bonds in a wide range of chemicals, yet an economically viable biodesulfurization process has not been developed. There are two reasons for this: failure to explore the full range of applications of biodesulfurization using existing biocatalysts and a failure to address the key factors preventing the development of biocatalysts with superior biodesulfurization activity. Existing desulfurization biocatalysts can potentially be used to detoxify chemical warfare agents or to produce surfactants, antibiotics, anticancer drugs, polythioesters, and various specialty chemicals. To develop biocatalysts with sufficient activity for a commercial petroleum biodesulfurization process, it will be necessary to overcome product inhibition caused by 2-hydroxybiphenyl (2HBP) and related chemicals and to make more robust biocatalysts. This review will discuss specifically how these limitations can be overcome.
机译:已经证明脱硫生物催化剂能够选择性氧化和/或裂解多种化学品中的碳硫键,但是尚未开发出经济上可行的生物脱硫方法。造成这种情况的原因有两个:无法利用现有的生物催化剂探索生物脱硫的全部应用,以及未能解决阻碍发展具有优异生物脱硫活性的生物催化剂的关键因素。现有的脱硫生物催化剂可以潜在地用于化学战剂的解毒或生产表面活性剂,抗生素,抗癌药,聚硫酯和各种特殊化学品。为了开发对商业石油生物脱硫工艺具有足够活性的生物催化剂,有必要克服由2-羟基联苯(2HBP)和相关化学物质引起的产物抑制作用,并制造出更坚固的生物催化剂。本文将专门讨论如何克服这些限制。

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