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胞外多糖对铜(II)离子/支持电解质/高岭土体系中吸附和聚集的影响

Impact of Exopolysaccharide on Adsorption and Aggregation in the Copper(II) Ions/Supporting Electrolyte/Kaolinite System.

作者信息

Szewczuk-Karpisz Katarzyna, Tomczyk Agnieszka, Komaniecka Iwona, Choma Adam, Adamczuk Agnieszka, Sofińska-Chmiel Weronika

机构信息

Institute of Agrophysics, Polish Academy of Sciences, Doświadczalna 4, 20-290 Lublin, Poland.

Department of Genetics and Microbiology, Institute of Biological Sciences, Maria Curie-Sklodowska University, Akademicka 19, 20-033 Lublin, Poland.

出版信息

Materials (Basel). 2021 Apr 13;14(8):1950. doi: 10.3390/ma14081950.

Abstract

To obtain insight into physicochemical interactions between Cu(II) ions, kaolinite, and exopolysaccharide (EPS) synthesized by Rm 1021 soil bacteria, an adsorption, electrokinetic, and aggregation study was performed in the selected systems. The obtained data showed that supporting electrolyte type affects both EPS and Cu(II) ions adsorption. For initial Cu(II) concentration 100 mg/L, 4.36 ± 0.25 mg/g (21.80 ± 1.00%) of the ions were adsorbed in 0.001 M NaCl and 3.76 ± 0.20 mg/g (18.80 ± 1.00%) in 0.001 M CaCl The experimental data were best fitted to the Langmuir model as well as pseudo second-order equation. The EPS adsorbed amount on kaolinite was higher in the CaCl electrolyte than in NaCl one. For an initial polymer concentration of 100 mg/L, the EPS adsorbed amount was 4.69 ± 0.08 mg/g (23.45 ± 0.40%) in 0.001 M NaCl and 5.26 ± 0.15 mg/g (26.32 ± 0.75%) in 0.001 M CaCl. In the mixed system, regardless of electrolyte type, exopolysaccharide contributed to immobilization of higher amount of copper(II) ions on the clay mineral. Also, in the samples containing heavy metal ions and exopolysaccharide simultaneously, the aggregation of kaolinite particles was the strongest. The results presented in the paper may be very helpful in soil bioremediation, especially in the development of technologies reducing the mobility of heavy metals in the environment.

摘要

为深入了解铜离子(Cu(II))、高岭土以及由Rm 1021土壤细菌合成的胞外多糖(EPS)之间的物理化学相互作用,在选定体系中进行了吸附、动电和聚集研究。所得数据表明,支持电解质类型会影响EPS和Cu(II)离子的吸附。对于初始Cu(II)浓度为100 mg/L的情况,在0.001 M NaCl中吸附了4.36±0.25 mg/g(21.80±1.00%)的离子,在0.001 M CaCl₂中吸附了3.76±0.20 mg/g(18.80±1.00%)。实验数据与朗缪尔模型以及伪二级方程拟合得最好。在CaCl₂电解质中,EPS在高岭土上的吸附量高于在NaCl中的吸附量。对于初始聚合物浓度为100 mg/L的情况,在0.001 M NaCl中EPS吸附量为4.69±0.08 mg/g(23.45±0.40%),在0.001 M CaCl₂中为5.26±0.15 mg/g(26.32±0.75%)。在混合体系中,无论电解质类型如何,胞外多糖都有助于使更多的铜离子固定在粘土矿物上。此外,在同时含有重金属离子和胞外多糖的样品中,高岭土颗粒的聚集最强。本文给出的结果可能对土壤生物修复非常有帮助,特别是在开发降低环境中重金属迁移性的技术方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1d8/8069898/7cbde99a8592/materials-14-01950-g001a.jpg

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