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固定化 Alishewanella sp. WH16-1 与藻酸盐-莲房固定化在 Cd 污染稻田土壤的盆栽实验中固定镉。

Immobilization of cadmium by immobilized Alishewanella sp. WH16-1 with alginate-lotus seed pods in pot experiments of Cd-contaminated paddy soil.

机构信息

Department of State Key Laboratory of Agricultural Microbiology and College of Basic Sciences, Huazhong Agricultural University, Wuhan, Hubei, 430070, China.

Department of State Key Laboratory of Agricultural Microbiology and College of Basic Sciences, Huazhong Agricultural University, Wuhan, Hubei, 430070, China.

出版信息

J Hazard Mater. 2018 Sep 5;357:431-439. doi: 10.1016/j.jhazmat.2018.06.027. Epub 2018 Jun 12.

Abstract

This study prepared immobilized Alishewanella sp. WH16-1 using alginate and lotus seed pods as a matrix and investigated the effects of its immobilization on Cd in a culture solution and in soil. Compared with the free WH16-1 strain, the immobilized WH16-1 strain possessed greater stability for long-term use and storage and higher removal ability for Cd in the culture solution. A model of Cd removal by the immobilized WH16-1 strain was proposed. The immobilized WH16-1 strain was incubated in the pot experiments of Cd-contaminated paddy soil for 120 days, and the pot experiments of Cd-contaminated paddy soil without the immobilized WH16-1 strain were used as a control. Compared with the control, the exchangeable and carbonate-bound Cd in the paddy soil incubated with the immobilized WH16-1 strain significantly decreased by 33.6% (P < 0.05) and 17.36%, respectively, and the Cd concentrations in the rice significantly decreased by 78.31% (P < 0.05). The results indicate that alginate-lotus seed pods can be used as excellent cost-effective cell carriers for the immobilization of Alishewanella sp. WH16-1 and that the immobilized WH16-1 strain may be applicable for the biological stabilization of Cd in Cd-contaminated paddy soil.

摘要

本研究采用海藻酸钠和莲子作为载体固定化希瓦氏菌(Alishewanella sp.)WH16-1,并考察了其在培养液和土壤中固定化对镉的影响。与游离 WH16-1 菌株相比,固定化 WH16-1 菌株具有更好的长期使用和储存稳定性,以及更高的培养液中镉去除能力。提出了一种固定化 WH16-1 菌株去除镉的模型。将固定化 WH16-1 菌株在含镉污染稻田的盆栽实验中培养 120 天,并用不含固定化 WH16-1 菌株的含镉污染稻田盆栽实验作为对照。与对照相比,固定化 WH16-1 菌株处理的土壤中可交换态和碳酸盐结合态镉分别显著降低了 33.6%(P<0.05)和 17.36%,水稻中镉浓度也显著降低了 78.31%(P<0.05)。结果表明,海藻酸钠-莲子可以作为固定化希瓦氏菌 WH16-1 的优良、经济高效的细胞载体,固定化 WH16-1 菌株可能适用于镉污染稻田中镉的生物稳定化。

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