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中性和酸性条件下的生物 S 还原:H/CO 进料生物反应器中的性能和微生物群落变化。

Biological S reduction at neutral and acidic conditions: Performance and microbial community shifts in a H/CO-fed bioreactor.

机构信息

Department of Environmental Technology, Wageningen University & Research, the Netherlands.

Laboratory of Microbiology, Wageningen University & Research, the Netherlands.

出版信息

Water Res. 2024 Oct 1;263:122156. doi: 10.1016/j.watres.2024.122156. Epub 2024 Jul 29.

DOI:10.1016/j.watres.2024.122156
PMID:39121561
Abstract

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 (S) instead of sulfate (SO) as electron acceptor reduces electron donor requirements four-fold, lowering process costs, and expanding the range of operating conditions to a more acidic pH. We previously reported autotrophic S reduction using an industrial mesophilic granular sludge as inoculum under thermoacidophilic conditions. Here, we examined the effect of pH on the S reduction performance of the same inoculum, in a gas-lift reactor run at 30°C under neutral (pH 6.9) and acidic (pH 3.8) conditions, continuously fed with mineral media and H and CO. Steady-state volumetric sulfide production rates (VSPR) dropped 2.5-fold upon transition to acidic pH, from 1.79 ± 0.18 g S·L·d to 0.71 ± 0.07 g S·L·d. Microbial community composition was analyzed using 16S rRNA gene amplicon sequencing. At neutral pH (6.9), the high relative abundance of the S-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 S reduction facilitated by acetogenesis. Conversely, at acidic pH (3.9), S reduction appeared autotrophic, as indicated by the high relative abundance of Desulfurella.

摘要

硫化作用是一种有前途的技术,可从受金属污染的水中(例如酸性矿山排水和冶金废水)选择性回收亲硫块状金属(例如 Cu、Zn 和 Co)。与使用硫酸盐(SO)作为电子受体相比,使用元素硫(S)作为电子受体可将电子供体的需求降低四倍,从而降低了工艺成本,并扩大了操作条件的范围,使其更偏向于酸性 pH 值。我们之前曾报道过在嗜热嗜酸条件下使用工业中温颗粒污泥作为接种物进行自养 S 还原。在这里,我们研究了相同接种物在气体升力反应器中的 pH 值对 S 还原性能的影响,该反应器在 30°C 下运行,在中性(pH 6.9)和酸性(pH 3.8)条件下连续进料,采用矿物培养基和 H 和 CO。在过渡到酸性 pH 值时,稳定状态下的体积硫化物产生速率(VSPR)下降了 2.5 倍,从 1.79±0.18 g S·L·d 下降到 0.71±0.07 g S·L·d。使用 16S rRNA 基因扩增子测序分析微生物群落组成。在中性 pH 值(6.9)下,先前仅在异养成员中发现的硫还原属 Sulfurospirillum 的相对丰度很高,加上存在乙酰杆菌和检测到乙酸,表明在产乙酸的作用下,异养 S 还原发挥了重要作用。相反,在酸性 pH 值(3.9)下,S 还原似乎是自养的,这表明 Desulfurella 的相对丰度很高。

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