Bio-precipitation of arsenic and antimony in a sulfate-reducing bioreactor treating real acid mine drainage water

被引:5
作者
Laroche, Elia [1 ,2 ]
Joulian, Catherine [1 ]
Duee, Cedric
Casiot, Corinne [2 ]
Hery, Marina [2 ]
Battaglia-Brunet, Fabienne [1 ,3 ,4 ]
机构
[1] Bur Rech Geol & Minieres, F-45060 Orleans, France
[2] Univ Montpellier, CNRS, IRD, Hydrosci Montpellier, F-34090 Montpellier, France
[3] Univ Orleans, CNRS, ISTO, BRGM,UMR7327, F-45071 Orleans, France
[4] Bur Rech Geol & Minieres, 3 Ave Claude Guillemin, F-54060 Orleans, France
关键词
acid mine drainage; antimony; arsenic; bioremediation; Desulfosporosinus; sulfate-reducing bacteria; MICROBIAL COMMUNITY; SP NOV; LOW PH; BACTERIAL DIVERSITY; REMOVAL; SEDIMENTS; SYSTEMS; SB(III); GEOCHEMISTRY; ENVIRONMENT;
D O I
10.1093/femsec/fiad075
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
An acid-tolerant microbial community efficiently removed arsenic and antimony from real acid mine water in a bioreactor operating under sulfate-reducing conditions. Arsenic (As) and antimony (Sb) from mining sites can seep into aquatic ecosystems by acid mine drainage (AMD). Here, the possibility of concomitantly removing As and Sb from acidic waters by precipitation of sulfides induced by sulfate-reducing bacteria (SRB) was investigated in a fixed-bed column bioreactor. The real AMD water used to feed the bioreactor contained nearly 1 mM As, while the Sb concentrations were increased (0.008 & PLUSMN; 0.006 to 1.01 & PLUSMN; 0.07 mM) to obtain an Sb/As molar ratio = 1. Results showed that the addition of Sb did not affect the efficiency of As bio-precipitation. Sb was removed efficiently (up to 97.9% removal) between the inlet and outlet of the bioreactor, together with As (up to 99.3% removal) in all conditions. Sb was generally removed as it entered the bioreactor. Appreciable sulfate reduction occurred in the bioreactor, which could have been linked to the stable presence of a major SRB operational taxonomic unit affiliated with the Desulfosporosinus genus. The bacterial community included polymer degraders, fermenters, and acetate degraders. Results suggested that sulfate reduction could be a suitable bioremediation process for the simultaneous removal of Sb and As from AMD.
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页数:11
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