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微生物胞外聚合物(EPS)在非均质地表土壤中铬的吸附和迁移中的作用:I. EPS 在水溶液中与 Cr(III) 的络合。

Role of microbial exopolymeric substances (EPS) on chromium sorption and transport in heterogeneous subsurface soils: I. Cr(III) complexation with EPS in aqueous solution.

机构信息

Mersin University, Faculty of Engineering, Department of Environmental Engineering, Mersin, Turkey.

出版信息

Chemosphere. 2011 Mar;82(10):1489-95. doi: 10.1016/j.chemosphere.2011.01.009. Epub 2011 Jan 26.

DOI:10.1016/j.chemosphere.2011.01.009
PMID:21272912
Abstract

Chromium (III) binding by exopolymeric substances (EPS) isolated from Pseudomonas putida P18, Pseudomonas aeruginosa P16 and Pseudomonas stutzeri P40 strains were investigated by the determination of conditional stability constants and the concentration of functional groups using the ion-exchange experiments and potentiometric titrations. Spectroscopic (EXAFS) analysis was also used to obtain information on the nature of Cr(III) binding with EPS functional groups. The data from ion-exchange experiments and potentiometric titrations were evaluated using a non-electrostatic discrete ligand approach. The modeling results show that the acid/base properties of EPSs can be best characterized by invoking four different types of acid functional groups with arbitrarily assigned pK(a) values of 4, 6, 8 and 10. The analysis of ion-exchange data using the discrete ligand approach suggests that while the Cr binding by EPS from P. aeruginosa can be successfully described based on a reaction stoichiometry of 1:2 between Cr(III) and HL(2) monoprotic ligands, the accurate description of Cr binding by EPSs extracted from P. putida and P. stutzeri requires postulation of 1:1 Cr(III)-ligand complexes with HL(2) and HL(3) monoprotic ligands, respectively. These results indicate that the carboxyl and/or phosphoric acid sites contribute to Cr(III) binding by microbial EPS, as also confirmed by EXAFS analysis performed in the current study. Overall, this study highlights the need for incorporation of Cr-EPS interactions into transport and speciation models to more accurately assess microbial Cr(VI) reduction and chromium transport in subsurface systems, including microbial reactive treatment barriers.

摘要

采用离子交换实验和电位滴定法,通过测定条件稳定常数和官能团浓度,研究了从假单胞菌 P18、铜绿假单胞菌 P16 和施氏假单胞菌 P40 菌株中分离出的胞外聚合物(EPS)对铬(III)的络合作用。还使用光谱(EXAFS)分析来获取 EPS 官能团与 Cr(III)结合的性质信息。使用非静电离散配体方法评估离子交换实验和电位滴定的数据。建模结果表明,通过调用具有任意分配的 pK(a) 值为 4、6、8 和 10 的四种不同类型的酸官能团,可以最好地描述 EPS 的酸碱特性。使用离散配体方法对离子交换数据的分析表明,虽然可以根据 Cr(III)与 HL(2)一元配体之间的 1:2 反应计量比成功描述铜绿假单胞菌 EPS 的 Cr 结合,但准确描述假单胞菌和施氏假单胞菌 EPS 的 Cr 结合需要假设 1:1 Cr(III)-配体络合物分别与 HL(2)和 HL(3)一元配体。这些结果表明,羧基和/或磷酸基团有助于微生物 EPS 对 Cr(III)的结合,这也得到了当前研究中进行的 EXAFS 分析的证实。总体而言,这项研究强调需要将 Cr-EPS 相互作用纳入传输和形态模型中,以更准确地评估地下系统中微生物 Cr(VI)还原和铬传输,包括微生物反应性处理屏障。

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