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首页> 外文期刊>Chemosphere >Comparison of the complexation potential of extracellular polymeric substances (EPS), extracted from activated sludges and produced by pure bacteria strains, for cadmium, lead and nickel
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Comparison of the complexation potential of extracellular polymeric substances (EPS), extracted from activated sludges and produced by pure bacteria strains, for cadmium, lead and nickel

机译:从活性污泥中提取并由纯细菌菌株产生的细胞外聚合物(EPS)对镉,铅和镍的络合潜力的比较

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This paper provides information on the metal complexation potential of extracellular polymeric substances (EPS), extracted from activated sludges and from eight pure cultures of bacteria isolated from the same activated sludge. The EPS extracted from pure bacteria cultures are mainly composed of proteins and low quantities of polysaccharides and uronic acids in comparison with EPS extracted from activated sludges. The EPS studied present two apparent pK(a) and the IR spectra show the presence of the same functional groups on all the EPS studied. The ability of EPS to complex Cd, Pb and Ni, was studied at pH 7 with Chau and Ruzic's models using polarography titration. All of the EPS exhibited a greater ability to complex Ph than Ni, Cd showing the weakest affinity overall. The EPS extracted from the pure cultures of bacteria were less able to complex the metals than that extracted from activated sludges. Literature data, IR data and EPS phosphorous content, supported by the EPS pK(a), revealed that carboxylic and phosphoric groups may play a major role in binding to metals at pH 7. This study underlines the importance of metal exposure in order for bacteria to secrete or modify EPS. After exposure, the EPS then exhibit the greatest capacity to bind metal in order to protect bacteria from harmful effects of heavy metals. © 2004 Elsevier Ltd. All rights reserved.
机译:本文提供了有关从活性污泥和从同一活性污泥中分离出的八种纯细菌培养物中提取的细胞外聚合物(EPS)的金属络合潜力的信息。与从活性污泥中提取的EPS相比,从纯细菌培养物中提取的EPS主要由蛋白质以及少量的多糖和糖醛酸组成。所研究的EPS存在两个明显的pK(a),IR光谱显示在所有所研究的EPS上都存在相同的官能团。使用Chau和Ruzic模型,通过极谱滴定法研究了pH值为7时EPS络合Cd,Pb和Ni的能力。与镍相比,所有EPS均具有比Ni更大的络合能力,Cd总体上显示出最弱的亲和力。与从活性污泥中提取的EPS相比,从纯细菌培养物中提取的EPS与金属的络合能力更差。 EPS pK(a)支持的文献数据,IR数据和EPS磷含量表明,羧基和磷基团可能在pH 7时与金属结合中起主要作用。这项研究强调了为了细菌对金属进行暴露的重要性。分泌或修改EPS。暴露后,EPS具有最大的结合金属的能力,可以保护细菌免受重金属的有害影响。 &复制; 2004 Elsevier Ltd.保留所有权利。

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