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Arsenic release metabolically limited to permanently water-saturated soil in Mekong Delta

机译:代谢释放的砷仅限于湄公河三角洲的永久含水饱和土壤

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Microbial reduction of arsenic-bearing iron oxides in the deltas of South and Southeast Asia produces widespread arsenic-contaminated groundwater. Organic carbon is abundant both at the surface and within aquifers, but the source of organic carbon used by microbes in the reduction and release of arsenic has been debated, as has the wetland type and sedimentary depth where release occurs. Here we present data from fresh-sediment incubations, in situ model sediment incubations and a controlled field experiment with manipulated wetland hydrology and organic carbon inputs. We find that in the minimally disturbed Mekong Delta, arsenic release is limited to near-surface sediments of permanently saturated wetlands where both organic carbon and arsenic-bearing solids are sufficiently reactive for microbial oxidation of organic carbon and reduction of arsenic-bearing iron oxides. In contrast, within the deeper aquifer or seasonally saturated sediments, reductive dissolution of iron oxides is observed only when either more reactive exogenous forms of iron oxides or organic carbon are added, revealing a potential thermodynamic restriction to microbial metabolism. We conclude that microbial arsenic release is limited by the reactivity of arsenic-bearing iron oxides with respect to native organic carbon, but equally limited by organic carbon reactivity with respect to the native arsenic-bearing iron oxides.
机译:在南亚和东南亚三角洲,微生物还原含砷的氧化铁会产生广泛的砷污染的地下水。有机碳在地表和含水层中都很丰富,但是微生物在减少和释放砷中所使用的有机碳来源,以及发生释放的湿地类型和沉积深度,也都存在争议。在这里,我们介绍了来自新鲜沉积物培养,原位模型沉积物培养以及控制的湿地水文学和有机碳输入的现场实验数据。我们发现,在受到最小干扰的湄公河三角洲,砷的释放仅限于永久饱和湿地的近地表沉积物,其中有机碳和含砷固体均具有足够的反应性,可以微生物氧化有机碳并还原含砷的氧化铁。相反,在较深的含水层或季节性饱和的沉积物中,只有当添加反应性更高的外源形式的氧化铁或有机碳时,才能观察到氧化铁的还原溶解,从而揭示了微生物代谢的潜在热力学限制。我们得出的结论是,微生物砷的释放受含砷的氧化铁相对于天然有机碳的反应性的限制,但同等地受有机碳的相对于含砷的天然氧化铁的反应性的限制。

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