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藻类细胞表面对六价铬离子的吸附特性。

Peculiarities of adsorption of Cr (VI) ions on the surface of algae cells.

作者信息

Tattibayeva Zhadra, Tazhibayeva Sagdat, Kujawski Wojciech, Zayadan Bolatkhan, Musabekov Kuanyshbek

机构信息

Al-Farabi Kazakh National University, Al-Farabi Avenue, 71, Almaty, 050040, Kazakhstan.

Nicolaus Copernicus University in Torun, Faculty of Chemistry, 7 Gagarina Street, 87-100, Torun, Poland.

出版信息

Heliyon. 2022 Aug 30;8(9):e10468. doi: 10.1016/j.heliyon.2022.e10468. eCollection 2022 Sep.

Abstract

Cr (VI) compounds are the most dangerous for human health and the environment, therefore, the study of their adsorption features is of great interest. A comprehensive study of the adsorption of Cr (VI) ions on the surface of algae cells was carried out evaluating the effect of the pH of the medium on the degree of removal of Cr (VI) ions from solutions and on the zeta potential of the cell surface was. The highest values of the degree of removal of Cr (VI) ions equal to 94.6-95.4% are achieved in the pH range of 1-2, being the result of the electrostatic attraction of HCrO groups to protonated amino groups of the cell surface and the possibility of reducing Cr (VI) ions to Cr (III) in an acidic medium, followed by the formation of Cr (III) ions of coordination bonds with amine and carboxyl groups of algae cells. The adsorption data were processed within the framework of Langmuir, Freundlich, Dubinin-Radushkevich and Temkin models. It was shown that the maximum Langmuir adsorption value was 74.63 mg/g. The values of the adsorption parameters 1/n and K in the Freundlich model were equal to 0.713 and 2.82 mg/g. In the Dubinin-Radushkevich model, the maximum adsorption capacity (q) and free energy (E) were equal to 39.73 mg/g and 2.604 kJ/mol, respectively. Whereas, according to the Temkin model, the constant A was equal to 18.215 L/mg, and b was equal to 0.023 kJ/mol. Taking into account the low values of free energy, it is concluded that adsorption is caused by non-covalent interactions. The study of adsorption kinetics showed that the adsorption of Cr (VI) ions on the surface of algae cells is described in the framework of the pseudo-second order model. The kinetic behavior of the process is discussed in the framework of the IPDM and ELM models. With increasing temperature, the constant of intraparticle diffusion of Cr (VI) ions decreases, which is explained with increasing of hydrophobic interactions between nonpolar sites of protein macromolecules and polysaccharides in the composition of algae cells. The increase in the adsorption of Cr (VI) ions at pH 8.62 in the temperature range of 298-353 K is justified by the shrinkage of the biosorbent volume, which leads to the blocking of a part of the anionic groups on the surface of algae cells. Therefore, the decrease in the electrostatic repulsion between the negatively charged surface of the adsorbent and Cr (VI) oxyanions is observed.

摘要

六价铬化合物对人类健康和环境危害最大,因此,对其吸附特性的研究备受关注。开展了一项关于藻类细胞表面对六价铬离子吸附的综合研究,评估了介质pH值对溶液中六价铬离子去除程度以及细胞表面zeta电位的影响。在pH值为1 - 2的范围内,六价铬离子去除率最高可达94.6 - 95.4%,这是由于HCrO基团与细胞表面质子化氨基之间的静电吸引,以及在酸性介质中六价铬离子还原为三价铬离子的可能性,随后三价铬离子与藻类细胞的胺基和羧基形成配位键。吸附数据在Langmuir、Freundlich、Dubinin - Radushkevich和Temkin模型框架内进行处理。结果表明,Langmuir最大吸附值为74.63 mg/g。Freundlich模型中的吸附参数1/n和K值分别为0.713和2.82 mg/g。在Dubinin - Radushkevich模型中,最大吸附容量(q)和自由能(E)分别为39.73 mg/g和2.604 kJ/mol。而根据Temkin模型,常数A为18.215 L/mg,b为0.023 kJ/mol。考虑到自由能值较低,得出吸附是由非共价相互作用引起的结论。吸附动力学研究表明,藻类细胞表面对六价铬离子的吸附符合准二级模型框架。该过程的动力学行为在IPDM和ELM模型框架内进行讨论。随着温度升高,六价铬离子的颗粒内扩散常数降低,这可以用藻类细胞组成中蛋白质大分子的非极性位点与多糖之间疏水相互作用的增加来解释。在298 - 353 K温度范围内,pH值为8.62时六价铬离子吸附量的增加是由于生物吸附剂体积收缩,导致藻类细胞表面部分阴离子基团被阻断。因此,观察到吸附剂带负电荷表面与六价铬含氧阴离子之间的静电排斥力降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2c2/9465124/4d59f8bb8533/gr1.jpg

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