Ohshiro T, Izumi Y
Department of Biotechnology, Faculty of Engineering, Tottori University, Japan.
Biosci Biotechnol Biochem. 1999 Jan;63(1):1-9. doi: 10.1271/bbb.63.1.
Sulfur removal from petroleum is important from the standpoint of the global environment because the combustion of sulfur compounds leads to the production of sulfur oxides, which are the source of acid rain. As the regulations for sulfur in fuels become more stringent, the existing chemical desulfurizations are coming inadequate for the "deeper desulfurization" to produce lower-sulfur fuels without new and innovative processes. Biodesulfurization is rising as one of the candidates. Several microorganisms were found to desulfurize dibenzothiophene (DBT), a representative of the organic sulfur compounds in petroleum, forming a sulfur-free compound, 2-hydroxybiphenyl. They are promising as biocatalysts in the microbial desulfurization of petroleum because without assimilation of the carbon content, they remove only sulfur from the heterocyclic compounds which is refractory to conventional chemical desulfurization. Both enzymological and molecular genetic studies are now in progress for the purpose of obtaining improved desulfurization activity of organisms. The genes involved in the sulfur-specific DBT desulfurization were identified and the corresponding enzymes have been investigated. From the practical point of view, it has been proved that the microbial desulfurization proceeds in the presence of high concentrations of hydrocarbons, and more complicated DBT analogs are also desulfurized by the microorganisms. This review outlines the progress in the studies of the microbial desulfurization from the basic and practical point of view.
从全球环境的角度来看,石油脱硫至关重要,因为硫化合物的燃烧会导致硫氧化物的产生,而硫氧化物是酸雨的来源。随着燃料硫含量法规变得更加严格,现有的化学脱硫方法已不足以实现“深度脱硫”以生产低硫燃料,因此需要新的创新工艺。生物脱硫作为候选方法之一正在兴起。人们发现几种微生物能够对石油中有机硫化合物的代表二苯并噻吩(DBT)进行脱硫,生成无硫化合物2-羟基联苯。它们有望作为生物催化剂用于石油的微生物脱硫,因为它们在不吸收碳含量的情况下,仅从传统化学脱硫难以处理的杂环化合物中去除硫。目前正在进行酶学和分子遗传学研究,以提高生物体的脱硫活性。已鉴定出参与硫特异性DBT脱硫的基因,并对相应的酶进行了研究。从实际角度来看,已证明微生物脱硫在高浓度烃存在的情况下能够进行,并且微生物也能对更复杂的DBT类似物进行脱硫。本综述从基础和实际的角度概述了微生物脱硫研究的进展。