McFarland B L, Boron D J, Deever W, Meyer J A, Johnson A R, Atlas R M
MicroBio Tech Consulting, Davis, CA 95616-2718, USA.
Crit Rev Microbiol. 1998;24(2):99-147. doi: 10.1080/10408419891294208.
Environmental regulations are driving R&D efforts to produce low sulfur fuels, including diesel fuel and gasoline for motor vehicles. Biocatalytic sulfur removal from fuels has potential applicability for producing low sulfur gasoline. Microbial biocatalysts have been identified that can biotransform sulfur compounds found in fuels, including ones that selectively remove sulfur from dibenzothiophene heterocyclic compounds. Most attention is give to the 4S pathway of Rhodococcus, which can remove sulfur from substituted and unsubstituted dibenzothiophenes, including sulfur compounds that hinder chemical catalysis and that resist removal by mild hydrotreatment. Various bioreactor and bioprocess designs are being tested for use with biocatalysts, including recombinant biocatalysts, for use in removing sulfur from fuels and feedstocks within the petroleum refinery stream. With bioprocess improvements that enhance biocatalyst stability, achieve faster kinetics, improve mass transfer limitations, temperature and solvent tolerance, as well as broaden substrate specificity to attack a greater range of heterocyclic compounds, biocatalysis may be a cost-effective approach to achieve the production of low sulfur gasoline. The challenge will be to accomplish these improvements by the time the regulations for low sulfur gasoline and other vehicle fuels go into effect in order to be competitive with emerging nonbiological desulfurization technologies.
环境法规推动着研发工作,以生产低硫燃料,包括用于机动车的柴油和汽油。从燃料中进行生物催化脱硫对于生产低硫汽油具有潜在的适用性。已经鉴定出能够对燃料中发现的硫化合物进行生物转化的微生物生物催化剂,包括那些能从二苯并噻吩杂环化合物中选择性去除硫的催化剂。人们最为关注的是红球菌的4S途径,它能够从取代和未取代的二苯并噻吩中去除硫,这些硫化合物包括阻碍化学催化以及难以通过温和加氢处理去除的硫化合物。各种生物反应器和生物工艺设计正在进行测试,以与生物催化剂(包括重组生物催化剂)一起用于从炼油厂物流中的燃料和原料中去除硫。随着生物工艺的改进提高了生物催化剂的稳定性,实现了更快的动力学,改善了传质限制、温度和溶剂耐受性,以及拓宽了底物特异性以攻击更大范围的杂环化合物,生物催化可能是一种具有成本效益的方法来实现低硫汽油的生产。挑战在于在低硫汽油和其他车用燃料的法规生效之前完成这些改进,以便与新兴的非生物脱硫技术竞争。