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活的粘红酵母菌株DJHN070401对Sb(III)的强化生物吸附:优化与机制

Enhanced Biosorption of Sb(III) onto Living Rhodotorula mucilaginosa Strain DJHN070401: Optimization and Mechanism.

作者信息

Jin Chang-Sheng, Deng Ren-Jian, Ren Bo-Zhi, Hou Bao-Lin, Hursthouse Andrew S

机构信息

School of Civil Engineering, Hunan University of Science and Technology, Xiangtan, 411201, People's Republic of China.

Hunan Provincial Key Laboratory of Shale Gas Resource Utilization, Xiangtan, 411201, People's Republic of China.

出版信息

Curr Microbiol. 2020 Sep;77(9):2071-2083. doi: 10.1007/s00284-020-02025-z. Epub 2020 May 30.

Abstract

How to effectively remove excess Sb(III) in the water environment by biosorption is receiving close attention in the international scientific community. To obtain the maximum biosorption efficiency, response surface methodology (RSM) was employed to optimize a total of 13 factors for biosorption of Sb(III) onto living Rhodotorula mucilaginosa DJHN070401. The mechanism of biosorption and bioaccumulation was also studied. The results showed that biosorption reached 56.83% under the optimum conditions. Besides, pH, Fe, and temperature are significant influencing factors, and control of Ca and Fe has a beneficial impact on Sb(III) biosorption. The characterization explained that physical adsorption occurred readily on the loose and porous surface of DJHN070401 where carboxyl, amidogen, phosphate group, and polysaccharide C-O functional groups facilitated absorption by complexation with Sb(III), accompanied by ion exchange of Na, Ca ions with Sb(III). It was also noted that the living cell not only improved the removal efficiency in the presence of metabolic inhibitors but also prevented intracellular Sb(III) being re-released into the environment. The results of this study underpin improved and efficient methodology for biosorption of Sb(III) from wastewater.

摘要

如何通过生物吸附有效去除水环境中的过量 Sb(III) 受到国际科学界的密切关注。为了获得最大生物吸附效率,采用响应面法 (RSM) 对活的粘红酵母 DJHN070401 对 Sb(III) 的生物吸附的总共 13 个因素进行了优化。还研究了生物吸附和生物积累的机制。结果表明,在最佳条件下生物吸附率达到 56.83%。此外,pH、铁和温度是显著影响因素,控制钙和铁对 Sb(III) 的生物吸附有有益影响。表征解释说,物理吸附很容易发生在 DJHN070401 的松散多孔表面上,其中羧基、氨基、磷酸基团和多糖 C-O 官能团通过与 Sb(III) 络合促进吸收,同时伴随着 Na、Ca 离子与 Sb(III) 的离子交换。还注意到,活细胞不仅在存在代谢抑制剂的情况下提高了去除效率,而且还防止了细胞内的 Sb(III) 重新释放到环境中。本研究结果为改进和高效的从废水中生物吸附 Sb(III) 的方法提供了依据。

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