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石化废水中戊胺和苯胺的生物降解

Biodegradation of pentyl amine and aniline from petrochemical wastewater.

作者信息

Wang Li, Barrington Suzelle, Kim Jin-Woo

机构信息

Faculty of Environmental and biological Engineering, Shenyang Institute of Chemical Technology, Shenyang 110000, China.

出版信息

J Environ Manage. 2007 Apr;83(2):191-7. doi: 10.1016/j.jenvman.2006.02.009. Epub 2006 May 6.

Abstract

The objectives of the project were to isolate a bacterial strain capable of degrading pentyl amine and aniline and to define the optimal pentyl amine and aniline degradation conditions for this bacterial strain. The bacterial strain was isolated from activated sludge obtained from a Northeastern China treatment facility for petrochemical wastewater rich in pentyl amine and aniline. Once the strain was isolated, five triplicate (5) batch tests were used to establish the conditions for maximum pentyl amine and aniline degradation, by varying one at a time the following five factors: temperature, pH, reaction time, pollutant concentrations and aeration rate. In a final test, oil refinery sludge was inoculated with the strain and tested for the degradation of pentyl amine and aniline under optimal conditions, while observing the degradation pathway of pentyl amine and aniline. The isolated strain, PN1001, is a member of the Pseudomonas species and it was capable of degrading pentyl amine and aniline. The optimal reactor conditions for the degradation of a mixture of pentyl amine and aniline, at a concentration ranging between 150 and 200mg/L, were found to be 30 degrees C at a pH of 7.0, under a reaction time of 24h and a maximum solution dissolved oxygen level of 6 mgO(2)/L. Under such conditions, the strain PN1001 degraded 93% and 89% of the pentyl amine and aniline, respectively, aniline being more toxic and demonstrating a more complex degradation pathway. The strain PN1001 degraded more contaminants when both were present because of the pi and sigma electron cloud coordination functions of aniline and pentyl amine, respectively, presumed to reduce the toxic effect of aniline. Once inoculated with the strain, oil refinery sludge degraded 93% and 88% of the pentyl amine and aniline, compared to the strain alone which degraded 72% and 82%, likely because of the sludge's buffering effect against the toxic environment.

摘要

该项目的目标是分离出一种能够降解戊胺和苯胺的细菌菌株,并确定该细菌菌株降解戊胺和苯胺的最佳条件。该细菌菌株是从中国东北一家富含戊胺和苯胺的石化废水处理设施的活性污泥中分离出来的。菌株分离出来后,进行了五次重复的(每组5个)批次试验,通过一次改变以下五个因素来确定戊胺和苯胺最大降解的条件:温度、pH值、反应时间、污染物浓度和曝气速率。在最后一次试验中,将炼油厂污泥接种该菌株,并在最佳条件下测试戊胺和苯胺的降解情况,同时观察戊胺和苯胺的降解途径。分离出的菌株PN1001是假单胞菌属的一员,它能够降解戊胺和苯胺。发现对于浓度在150至200mg/L之间的戊胺和苯胺混合物,其最佳降解反应器条件为:温度为30摄氏度,pH值为7.0,反应时间为24小时,溶液最大溶解氧水平为6mgO₂/L。在这种条件下,菌株PN1001分别降解了93%的戊胺和89%的苯胺,苯胺毒性更大,降解途径更复杂。由于苯胺和戊胺分别具有π和σ电子云配位功能,推测可降低苯胺的毒性作用,因此当两者同时存在时,菌株PN1001降解的污染物更多。与单独的菌株相比,接种该菌株后,炼油厂污泥分别降解了93%的戊胺和88%的苯胺,单独的菌株分别降解了72%和82%,这可能是由于污泥对有毒环境的缓冲作用。

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