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固定在多功能材料上的驯化菌株对合成海水中柴油的吸附-协同生物降解作用

Adsorption-synergic biodegradation of diesel oil in synthetic seawater by acclimated strains immobilized on multifunctional materials.

作者信息

Wang Xin, Wang Xuejiang, Liu Mian, Bu Yunjie, Zhang Jing, Chen Jie, Zhao Jianfu

机构信息

College of Environmental Science and Engineering, State Key Laboratory of Pollution Control and Resource Reuse, Shanghai 200092, China.

College of Environmental Science and Engineering, State Key Laboratory of Pollution Control and Resource Reuse, Shanghai 200092, China.

出版信息

Mar Pollut Bull. 2015 Mar 15;92(1-2):195-200. doi: 10.1016/j.marpolbul.2014.12.033. Epub 2015 Jan 2.

Abstract

Using enrichment culture technique, three isolates marked as ODB-1, ODB-2 and ODB-3, were selected from oil contaminated seawater. 16S rDNA gene sequencing indicated that ODB-1 affiliated with Pseudomonas sp. while ODB-2 and ODB-3 affiliated with Brevundimonas sp. Subsequently, the bacterial cells were immobilized on the surface of expanded graphite (EG), expanded perlite (EP) and bamboo charcoal (BC). Among the three isolates, ODB-1 showed a strong binding to the bio-carriers through extracellular polysaccharides, while ODB-2 and ODB-3 made the adhesion to bio-carrier through direct physical adsorption. The immobilized bacteria exhibited good salinity tolerance compared with the planktonic bacteria. Their total diesel oil removal rates were more than 85% after 6 days' incubation. Adsorption-biodegradation process played an important role in the oil-pollution remediation. EG-bacteria system was treated as a promising remediation method, which achieved nearly 100% removal of diesel oil. Thereinto, over 83% removal of diesel oil owed to biodegradation.

摘要

采用富集培养技术,从受油污染的海水中筛选出三株标记为ODB - 1、ODB - 2和ODB - 3的菌株。16S rDNA基因测序表明,ODB - 1属于假单胞菌属,而ODB - 2和ODB - 3属于短波单胞菌属。随后,将细菌细胞固定在膨胀石墨(EG)、膨胀珍珠岩(EP)和竹炭(BC)表面。在这三株菌株中,ODB - 1通过胞外多糖与生物载体有很强的结合力,而ODB - 2和ODB - 3通过直接物理吸附与生物载体黏附。与浮游细菌相比,固定化细菌表现出良好的耐盐性。经过6天的培养,它们对柴油的总去除率超过85%。吸附 - 生物降解过程在油污修复中起重要作用。EG - 细菌系统被视为一种有前景的修复方法,其对柴油的去除率接近100%。其中,超过83%的柴油去除归功于生物降解。

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