首页> 外文期刊>Journal of Environmental Management >Spatiotemporal evolvement and factors influencing natural and synthetic EDCs and the microbial community at different groundwater depths in the Chaobai watershed: A long-term field study on a river receiving reclaimed water
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Spatiotemporal evolvement and factors influencing natural and synthetic EDCs and the microbial community at different groundwater depths in the Chaobai watershed: A long-term field study on a river receiving reclaimed water

机译:潮白流域不同地下水深度天然和合成EDCs和微生物群落的时空演变及其影响因素:对接受再生水的河流进行的长期田间研究

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In this long-term field study, to restore a dried river ecosystem, reclaimed water was used as a supplementary water source. The main aim of this study was to investigate the accumulation and migration potential of EDCs in groundwater during long-term utilization of reclaimed water and the changes in microbial community during the removal of EDCs. A long-term field study was conducted in order to ascertain the temporal and spatial distribution of four selected endocrine-disrupting chemicals (EDCs) in an underground aquifer in the Chaobai watershed, where reclaimed water is the primary water source. Anew, the microbial community structure at different groundwater depths, along with related environmental factors were also determined. Based on the results obtained from this long-term study, it was found that the EDCs in the surface water of the Chaobai river have entered a depth of 80 m in the groundwater aquifers, within a distance of 360 m from the river. The vertical profiles of the concentrations of bisphenol A (BPA), 4-nonylphenol (NP), estrone (E1), and estriol (E3) decreased significantly from the surface to different groundwater depths with first-order attenuation rates of 0.0416, 0.0343, 0.0498, and 0.0173 m(-1). The aquifer depth, water temperature, conductivity, and coexisting anions correlated well with the distribution of EDCs in groundwater.
机译:在这项长期的田间研究中,为了恢复干旱的河流生态系统,使用再生水作为补充水源。这项研究的主要目的是调查长期使用再生水期间EDC在地下水中的积累和迁移潜力,以及去除EDC期间微生物群落的变化。为了确定潮白流域地下含水层中地下蓄水层中四种选定的破坏内分泌的化学物质(EDC)的时空分布,进行了长期的现场研究。重新确定了不同地下水深度的微生物群落结构,以及相关的环境因素。根据这项长期研究获得的结果,发现潮白河表层水中的EDC已进入地下水含水层80 m的深度,距该河360 m。从地面到不同的地下水深度,双酚A(BPA),4-壬基酚(NP),雌酮(E1)和雌三醇(E3)的浓度的垂直分布显着降低,其一阶衰减率为0.0416、0.0343, 0.0498和0.0173 m(-1)。含水层深度,水温,电导率和共存阴离子与地下水中EDC的分布密切相关。

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