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首页> 外文期刊>Ecotoxicology and Environmental Safety >Microbial reactions and environmental factors affecting the dissolution and release of arsenic in the severely contaminated soils under anaerobic or aerobic conditions
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Microbial reactions and environmental factors affecting the dissolution and release of arsenic in the severely contaminated soils under anaerobic or aerobic conditions

机译:在厌氧或好氧条件下,影响砷在严重污染土壤中溶解和释放的微生物反应和环境因素

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摘要

The soils near the abandoned Shimen Realgar Mine are characterized by containing extremely high contents of total and soluble arsenic. To determine the microbial reactions and environmental factors affecting the mobilization and release of arsenic from soils phase into pore water, we collected 24 soil samples from the representative points around the abandoned Shimen Realgar Mine. They contained 8310.84 mg/kg total arsenic and 703.21 mg/kg soluble arsenic in average. The soluble arsenic in the soils shows significant positive and negative correlations with environmental SO42-/TOC/pH/PO43-, and Fe/Mn, respectively. We found that diverse dissimilatory As(V)-respiring prokaryotes (DARPs) and As(III)-oxidizing bacteria (AOB) exist in all the examined soil samples. The activities of DARPs led to 65-1275% increase of soluble As(III) in the examined soils after 21.0 days of anaerobic incubation, and the microbial dissolution and releases of arsenic show significant positive and negative correlations with the environmental pH/TN and NH4+/PO43-, respectively. In comparison, the activities of AOB led to 24-346% inhibition of the dissolved oxygen-mediated dissolution of arsenic in the soils, and the AOB-mediated releases of As(V) show significant positive and negative correlations with the environmental SO42- and pH/NH4+, respectively. The microbial communities of 24 samples contain 54 phyla of bacteria that show extremely high diversities. Total arsenic, TOC, NO3- and pH are the key environmental factors that indirectly controlled the mobilization and release of arsenic via influencing the structures of the microbial communities in the soils. This work gained new insights into the mechanism for how microbial communities catalyze the dissolution and releases of arsenic from the soils with extremely high contents of arsenic.
机译:被废弃的石门雄黄矿附近的土壤的特征是总砷和可溶性砷含量极高。为了确定影响砷从土壤相中迁移和释放到孔隙水中的微生物反应和环境因素,我们从废弃的石门雄黄矿周围的代表点收集了24个土壤样品。它们平均含有8310.84 mg / kg的总砷和703.21 mg / kg的可溶性砷。土壤中的可溶性砷分别与环境SO42- / TOC / pH / PO43-和Fe / Mn呈显着正相关和负相关。我们发现在所有被检查的土壤样品中都存在多种异化的As(V)呼吸原核生物(DARPs)和As(III)氧化细菌(AOB)。 DARPs的活性导致厌氧培养21.0天后被测土壤中可溶性As(III)的增加65-1275%,微生物的溶解和砷的释放与环境pH / TN和NH4 +呈显着正相关和负相关性/ PO43-。相比之下,AOB的活性导致溶解氧介导的砷在土壤中的溶解的抑制率为24-346%,并且AOB介导的As(V)的释放与环境SO42-和pH / NH4 +。 24个样品的微生物群落包含54种细菌,表现出极高的多样性。总砷,TOC,NO3-和pH值是通过影响土壤微生物群落结构间接控制砷的迁移和释放的关键环境因素。这项工作对微生物群落如何催化砷含量极高的土壤中溶解和释放砷的机理有了新的认识。

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