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非离子表面活性剂对嗜萘海单胞菌降解菲的影响

Effect of nonionic surfactants on biodegradation of phenanthrene by a marine bacteria of Neptunomonas naphthovorans.

作者信息

Li Jing-Liang, Chen Bing-Hung

机构信息

Department of Chemical and Biomolecular Engineering, National University of Singapore, Singapore 119260, Singapore.

出版信息

J Hazard Mater. 2009 Feb 15;162(1):66-73. doi: 10.1016/j.jhazmat.2008.05.019. Epub 2008 May 9.

Abstract

Biodegradation of three nonionic surfactants, Tergitol 15-S-X (X=7, 9 and 12), and their effects on the biodegradation of phenanthrene by marine bacteria, Neptunomonas naphthovorans, were studied. The experimental outcomes could be fit well with the first-order biodegradation kinetics model. It was observed that the biodegradability of these surfactants decreased with an increase in the chain length of the hydrophilic moiety of the surfactant. When surfactant concentrations initially present were less than 250mgcarbon/L, biodegradability of Tergitol 15-S-X surfactants is around 0.3. Reduced biodegradability of Tergitol 15-S-7 and Tergitol 15-S-9 was observed when their concentrations initially present were increased to 322 and 371mgcarbon/L, respectively. In general, biodegradation of phenanthrene was enhanced with increasing solubilization of phenanthrene by these surfactants. However, with the same initial concentration of phenanthrene, biodegradability of phenanthrene was found to decrease with an increase in surfactant concentration. For these three surfactants, more than 80% of the phenanthrene was degraded when surfactant concentrations initially present were 200mg/L. However, less than 30% of phenanthrene could be degraded, if initial surfactant concentrations were increased to 1000mg/L. Interestingly, the concurrent biodegradation of the surfactants reduced their effective concentrations for micelle formation and, hence, contribute to the higher bioavailability of phenanthrene by gradually releasing phenanthrene molecules into the aqueous phase.

摘要

研究了三种非离子表面活性剂Tergitol 15 - S - X(X = 7、9和12)的生物降解及其对海洋细菌萘食海单胞菌(Neptunomonas naphthovorans)降解菲的影响。实验结果能很好地符合一级生物降解动力学模型。观察到这些表面活性剂的生物降解性随着表面活性剂亲水部分链长的增加而降低。当初始存在的表面活性剂浓度小于250mg碳/升时,Tergitol 15 - S - X表面活性剂的生物降解性约为0.3。当初始存在的Tergitol 15 - S - 7和Tergitol 15 - S - 9浓度分别增加到322和371mg碳/升时,观察到它们的生物降解性降低。一般来说,随着这些表面活性剂对菲增溶作用的增强,菲的生物降解也增强。然而,在菲的初始浓度相同的情况下,发现菲的生物降解性随着表面活性剂浓度的增加而降低。对于这三种表面活性剂,当初始存在的表面活性剂浓度为200mg / L时,超过80%的菲被降解。然而,如果初始表面活性剂浓度增加到1000mg / L,只有不到30%的菲能被降解。有趣的是,表面活性剂的同时生物降解降低了它们形成胶束的有效浓度,因此,通过将菲分子逐渐释放到水相中,有助于提高菲的生物可利用性。

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