Biological S0 reduction at neutral and acidic conditions: Performance and microbial community shifts in a H2/CO2-fed bioreactor

被引:0
|
作者
Hidalgo-Ulloa, Adrian [1 ]
Graaf, Charlotte M. van der [2 ,3 ]
Sanchez-Andrea, Irene [2 ,4 ]
Weijma, Jan [1 ]
Buisman, Cees J. N. [1 ]
机构
[1] Wageningen Univ & Res, Dept Environm Technol, Wageningen, Netherlands
[2] Wageningen Univ & Res, Lab Microbiol, Wageningen, Netherlands
[3] Delft Univ Technol, Dept Geosci & Engn, Delft, Netherlands
[4] IE Univ, Dept Environm Sci Sustainabil, Segovia, Spain
基金
荷兰研究理事会;
关键词
Elemental sulfur reduction; Microbial sulfur reduction; Microbial diversity changes; Biological resource recovery; Evaluation process conditions; SP-NOV; ELEMENTAL SULFUR; SP; NOV; EPSILON-PROTEOBACTERIA; SULFIDE PRODUCTION; GEN; LOW PH; SULFATE; METAL; POLYSULFIDE;
D O I
10.1016/j.watres.2024.122156
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Sulfidogenesis is a promising technology for the selective recovery of chalcophile bulk metals (e.g. Cu, Zn, and Co) from metal-contaminated waters such as acid mine drainage (AMD) and metallurgy waste streams. The use of elemental sulfur (S0) instead of sulfate (SO42- ) as electron acceptor reduces electron donor requirements fourfold, lowering process costs, and expanding the range of operating conditions to a more acidic pH. We previously reported autotrophic S0 reduction using an industrial mesophilic granular sludge as inoculum under thermoacidophilic conditions. Here, we examined the effect of pH on the S0 reduction performance of the same inoculum, in a gas-lift reactor run at 30 degrees C under neutral (pH 6.9) and acidic (pH 3.8) conditions, continuously fed with mineral media and H2 and CO2. Steady-state volumetric sulfide production rates (VSPR) dropped 2.5-fold upon transition to acidic pH, from 1.79 f 0.18 g S2- & sdot;L- 1 & sdot;d- 1 to 0.71 f 0.07 g S2- & sdot;L- 1 & sdot;d- 1. Microbial community composition was analyzed using 16S rRNA gene amplicon sequencing. At neutral pH (6.9), the high relative abundance of the S0-reducing genus Sulfurospirillum, previously known only for heterotrophic members, combined with the presence of Acetobacterium and detection of acetate, suggests an important role for heterotrophic S0 reduction facilitated by acetogenesis. Conversely, at acidic pH (3.9), S0 reduction appeared autotrophic, as indicated by the high relative abundance of Desulfurella.
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页数:9
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