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能够降解低乙氧基化壬基酚商业混合物的需氧细菌的筛选与特性研究

Selection and characterization of aerobic bacteria capable of degrading commercial mixtures of low-ethoxylated nonylphenols.

作者信息

Di Gioia D, Michelles A, Pierini M, Bogialli S, Fava F, Barberio C

机构信息

DICASM, Faculty of Engineering, University of Bologna, viale Risorgimento 2, Bologna, Italy.

出版信息

J Appl Microbiol. 2008 Jan;104(1):231-42. doi: 10.1111/j.1365-2672.2007.03541.x.

Abstract

AIMS

Isolation and characterization of new bacterial strains capable of degrading nonylphenol ethoxylates (NPnEO) with a low ethoxylation degree, which are particularly recalcitrant to biodegradation.

METHODS AND RESULTS

Seven aerobic bacterial strains were isolated from activated sludges derived from an Italian plant receiving NPnEO-contaminated wastewaters after enrichment with a low-ethoxylated NPnEO mixture. On the basis of 16S rDNA sequence, the strains were positioned into five genera: Ochrobactrum, Castellaniella, Variovorax, Pseudomonas and Psychrobacter. Their degradation capabilities have been evaluated on two commercial mixtures, i.e. Igepal CO-210 and Igepal CO-520, the former rich in low ethoxylated congeners and the latter containing a broader spectrum of NPnEO, and on 4-n-nonylphenol (NP). The strains degraded Igepal CO-210, Igepal CO-520 and 4-n-NP all applied at the initial concentration of 100 mg l(-1), by 35-75%, 35-90% and 15-25%, respectively, after 25 days of incubation.

CONCLUSIONS

Some of the isolated strains, in particular the Pseudomonas strains BCb12/1 and BCb12/3, showed interesting degradation capabilities towards low ethoxylated NPnEO congeners maintaining high cell vitality.

SIGNIFICANCE AND IMPACT OF THE STUDY

Increased knowledge of bacteria involved in NPnEO degradation and the possibility of using the isolated strains in tailored process for a tertiary biological treatment of effluents of wastewater treatment plants.

摘要

目的

分离并鉴定能够降解低乙氧基化程度的壬基酚聚氧乙烯醚(NPnEO)的新型细菌菌株,这类物质特别难以生物降解。

方法与结果

从意大利一家接收受NPnEO污染废水的工厂的活性污泥中分离出七株需氧细菌菌株,这些活性污泥用低乙氧基化NPnEO混合物进行了富集培养。基于16S rDNA序列,这些菌株被归为五个属:苍白杆菌属、卡氏菌属、贪铜菌属、假单胞菌属和嗜冷杆菌属。在两种商业混合物(即Igepal CO - 210和Igepal CO - 520)以及4 - 正壬基酚(NP)上评估了它们的降解能力,前者富含低乙氧基化同系物,后者含有更广泛的NPnEO谱。在初始浓度为100 mg l⁻¹的情况下,经过25天的培养,这些菌株分别降解了Igepal CO - 210、Igepal CO - 520和4 - 正壬基酚,降解率分别为35% - 75%、35% - 90%和15% - 25%。

结论

一些分离出的菌株,特别是假单胞菌属的菌株BCb12/1和BCb12/3,对低乙氧基化NPnEO同系物表现出有趣的降解能力,同时保持了较高的细胞活力。

研究的意义和影响

增加了对参与NPnEO降解的细菌的了解,并有可能在定制工艺中使用分离出的菌株对污水处理厂的出水进行三级生物处理。

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