Geological Survey, China University of Geosciences, Wuhan, 430074, PR China.
Geological Survey, China University of Geosciences, Wuhan, 430074, PR China; School of Environmental Studies, China University of Geosciences, Wuhan, 430074, PR China.
J Hazard Mater. 2019 Apr 5;367:109-119. doi: 10.1016/j.jhazmat.2018.12.087. Epub 2018 Dec 23.
Determining the temporal variation of microbial communities in groundwater systems is essential to improve our understanding of hydrochemical dynamics in aquifers, particularly as it relates to the fate of redox-sensitive contaminants like arsenic (As). Therefore, a high-resolution hydrobiogeochemical investigation was conducted in the As-affected alluvial aquifer systems of the Jianghan Plain. In two 25 m-deep monitoring wells, the seasonal variation in the composition of groundwater microbial communities was positively correlated with the change in groundwater level (R = 0.47 and 0.39 in NH03B and NH05B, respectively, P < 0.01), implying that the latter could be a primary driver of the seasonal microbial dynamics. In response to the fluctuating groundwater level, iron (Fe) reducers within the Desulfuromonadales were dominant (9.9 ± 4.7% among different sampling sites) in groundwater microbial communities during the monsoon season and associated with high concentrations of Fe(II) and As, while the predominance (16.7 ± 15.2% among different sampling sites) of iron-oxidizers the Gallionellaceae was accompanied by low Fe(II) and As in the non-monsoon season. These results suggest that microbially-mediated iron reduction/oxidation may have governed the seasonal mobilization/scavenging of As in groundwater. Our results provide new insights into mechanisms responsible for seasonal variations in groundwater As concentrations in similar aquifer systems.
确定地下水系统中微生物群落的时间变化对于提高我们对含水层水化学动态的理解至关重要,特别是与砷(As)等氧化还原敏感污染物的命运有关。因此,在江汉平原受 As 影响的冲积含水层系统中进行了高分辨率的水文生物地球化学调查。在两个 25 米深的监测井中,地下水微生物群落组成的季节性变化与地下水位的变化呈正相关(NH03B 和 NH05B 中的 R 值分别为 0.47 和 0.39,P < 0.01),这意味着后者可能是季节性微生物动态的主要驱动因素。受地下水位波动的影响,脱硫单胞菌目中的铁还原菌在季风季节主导地下水微生物群落(不同采样点的比例为 9.9 ± 4.7%),与高浓度的 Fe(II)和 As 有关,而在非季风季节,铁氧化菌中嘉利翁氏菌的优势(不同采样点的比例为 16.7 ± 15.2%)伴随着低浓度的 Fe(II)和 As。这些结果表明,微生物介导的铁还原/氧化可能控制了地下水 As 的季节性迁移/捕获。我们的结果为类似含水层系统中地下水 As 浓度季节性变化的机制提供了新的见解。