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使用红球菌属制备生物脱硫生物催化剂的方法

Methods for the preparation of a biodesulfurization biocatalyst using Rhodococcus sp.

作者信息

Ma Cui-Qing, Feng Jin-Hui, Zeng Yi-Yong, Cai Xiao-Feng, Sun Bai-Ping, Zhang Zhao-Bin, Blankespoor Harvey D, Xu Ping

机构信息

State Key Lab of Microbial Technology of Shandong University, Jinan 250100, PR China.

出版信息

Chemosphere. 2006 Sep;65(1):165-9. doi: 10.1016/j.chemosphere.2006.03.010. Epub 2006 Apr 18.

Abstract

Several methods to prepare a biodesulfurization (BDS) biocatalyst were investigated in this study using a strain of Rhodococcus sp. 1awq. This bacterium could selectively remove sulfur from dibenzothiophene (DBT) via the "4S" pathway. DBT, dimethylsulfoxide (DMSO), sodium sulphate and mixed sulfur sources were used to study their influence on cell density, desulfurization activity, desulfurization ability, and the cost of biocatalyst production. In contrast to that observed from bacteria cultured in DBT, only partial desulfurization activity of strain 1awq was induced by DBT after cultivation in a medium containing inorganic sulfur as the sole sulfur source. The biocatalyst, prepared from culture with mixed sulfur sources, was found to possess desulfurization activity. With DMSO as the sole sulfur source, the desulfurization activity was shown to be similar to that of bacteria incubated in medium with DBT as the sole sulfur source. The biocatalyst prepared by this method with the least cost could remove sulfur from hydrodesulfurization (HDS)-treated diesel oil efficiently, providing a total desulfurization percent of 78% and suggesting its cost-effective advantage.

摘要

本研究使用红球菌属菌株1awq,研究了几种制备生物脱硫(BDS)生物催化剂的方法。该细菌可通过“4S”途径从二苯并噻吩(DBT)中选择性去除硫。使用DBT、二甲基亚砜(DMSO)、硫酸钠和混合硫源来研究它们对细胞密度、脱硫活性、脱硫能力以及生物催化剂生产成本的影响。与在DBT中培养的细菌不同,在以无机硫作为唯一硫源的培养基中培养后,菌株1awq仅被DBT诱导出部分脱硫活性。由混合硫源培养制备的生物催化剂具有脱硫活性。以DMSO作为唯一硫源时,其脱硫活性与在以DBT作为唯一硫源的培养基中培养的细菌相似。通过这种方法制备的成本最低的生物催化剂能够有效地从加氢脱硫(HDS)处理过的柴油中去除硫,脱硫总百分比达到78%,显示出其成本效益优势。

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