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Experimental Column Setup for Studying Anaerobic Biogeochemical Interactions Between Iron OxyHydroxides, Trace Elements, and Bacteria
Published on: December 19, 2017
Humic and fulvic acid-mediated dissimilatory iron reduction coupled with phosphate solubilizing bacteria inducing
Gongting Wang1, Wenqing Luo2, Zedong Teng3
1College of Environmental Science and Engineering, Beijing Key Lab for Source Control Technology of Water Pollution, Beijing Forestry University, Beijing 100083, China; Engineering Research Center for Water Pollution Source Control & Eco-remediation, College of Environmental Science and Engineering, Beijing Forestry University, Beijing 100083, China; China Energy Water and Environmental Protection Co. Ltd., Beijing 100080, China.
Abstract:
Cadmium (Cd) pollution in sediments has become an urgent environmental problem. Humus mediated dissimilatory iron reduction and phosphorus solubilizing bacteria (PSB) were widely used for Cd immobilization. Here, we utilized humic acid (HA) and fulvic acid (FA) to promote the efficiency of iron reduction by Geobacter metallireducens GS-15 to immobilize Cd with the involvement of PSB. The results showed that both HA and FA can facilitate the reduction of Fe(III) and the release of P in ferric phosphate minerals, and then the immobilization of Cd. The immobilization of dissolved Cd2 + in HA, FA and BCK groups were 76.25 %, 65.25 % and 63.58 %, respectively. HA and FA promoted the growth of PSB and the secretion of acetic acid, high concentration of acetic acid provided sufficient nutrients for the growth of iron-reducing bacteria. Thereby, high concentration of Fe(II) facilitated the recrystallization, which effectively immobilized Cd2+. Compared to the CK group, the HA and the FA groups increased the proportion of exchanged Cd converted to combined Cd in secondary minerals by 25.32 % and 19.16 %, respectively. The findings reveal that enhanced effect of HA on microbial iron reduction coupled with PSB can facilitate the immobilization of Cd, providing a promising strategy for the remediation of Cd-contaminated sediments.
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