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嗜热条件下铜绿假单胞菌P-CG3产生的生物表面活性剂对土壤-水体系中多环芳烃的增溶与解吸作用

Solubilization and desorption of PAHs in soil-aqueous system by biosurfactants produced from Pseudomonas aeruginosa P-CG3 under thermophilic condition.

作者信息

Cheng K Y, Zhao Z Y, Wong J W C

机构信息

Department of Biology, Hong Kong Baptist University, Kowloon Tong, Hong Kong SAR, PR China.

出版信息

Environ Technol. 2004 Oct;25(10):1159-65. doi: 10.1080/09593332508618382.

Abstract

Surface-active agents (surfactants) can enhance bioremediation of soils contaminated with PAHs by reducing sorption of PAHs or increasing desorption rates. The effectiveness of nonionic surfactant (Tween 80) and biosurfactants to enhance the solubilization and desorption of phenanthrene (Phe) and pyrene (Pyr) in soil-aqueous systems under thermophilic conditions was investigated using batch studies. Tween 80 and biosurfactants produced from Pseudomonas aeruginosa strain, ATCC 9027 and a strain isolated in our laboratory, P-CG3 were tested in this study. The results showed that all the surfactants could effectively enhance the solubility of both Phe and Pyr under thermophilic condition (55 degrees C), which was linearly proportional to the concentrations of surfactants at concentrations above their respective critical micelle concentration (CMC). When the surfactants' concentrations in aqueous phase were above their respective CMCs, substantial amounts of PAHs were desorbed from soil into the aqueous phase. Among the three surfactants used, the biosurfactant produced from our own isolate, P-CG3 was more effective in enhancing the solubilization and desorption of PAHs, implying that it might have the potential to be further applied in the bioremediation of PAH contaminated soils.

摘要

表面活性剂可以通过降低多环芳烃(PAHs)的吸附或提高解吸速率来增强对受PAHs污染土壤的生物修复。通过批次研究,考察了非离子表面活性剂(吐温80)和生物表面活性剂在嗜热条件下对土壤-水体系中菲(Phe)和芘(Pyr)增溶和解吸的效果。本研究测试了由铜绿假单胞菌菌株ATCC 9027和我们实验室分离的菌株P-CG3产生的吐温80和生物表面活性剂。结果表明,在嗜热条件(55℃)下,所有表面活性剂均可有效提高Phe和Pyr的溶解度,在高于各自临界胶束浓度(CMC)的浓度下,其与表面活性剂浓度呈线性比例关系。当水相中表面活性剂浓度高于各自的CMC时,大量PAHs从土壤解吸进入水相。在所使用的三种表面活性剂中,我们自己分离的菌株P-CG3产生的生物表面活性剂在增强PAHs的增溶和解吸方面更有效,这意味着它可能有进一步应用于PAH污染土壤生物修复的潜力。

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