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Effect of Residual NAPLs on the Transport of Bisphenol A and Bisphenol S in Saturated Porous Media

机译:残留NAPL对饱和多孔介质中双酚A和双酚S转运的影响

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摘要

Endocrine disrupter, like bisphenol A (BPA) and bisphenol S (BPS), is frequently detected in the subsurface environment, imposing threats to the groundwater quality and public health. However, current understanding of environmental fate and transport of BPA/BPS is still not clear, especially with respect to those in the subsurface media with trapped non-aqueous phase liquids (NAPLs). In this study, the effect of residual NAPLs on the retention and transport of BPA/BPS in the saturated sand and soil media was investigated using column experiments. The results showed that residual NAPLs (i.e., xylene and perchloroethylene (PCE)) inhibited the transport of BPA in the sand columns, and the inhibit effect of xylene was greater than that of PCE. While the presence of NAPLs showed little influence on the transport of BPS in the sand columns, in soil A (sandy soil), the residual NAPLs had similar effect on the retention and transport of BPA and BPS. Both BPA and BPS showed higher retention in the soil B columns than in the sand and soil A columns due to soil B's higher organic matter contents, which can strongly sorb BPA/BPS. The presence of residual NAPLs reduced the retention of BPA/BPS in the soil B columns because the NAPLs blocked the sorption sites of the soil organic matter for BPA/BPS. This study demonstrates the importance of residual NAPLs, types of media, properties of contaminants, and their interactions to the fate and transport of BPA/BPS in saturated porous media.
机译:经常在地下环境中检测到双酚A(BPA)和双酚S(BPS)等内分泌干扰物,对地下水质量和公共健康构成威胁。但是,目前对BPA / BPS的环境命运和运输的了解仍不清楚,尤其是对于那些被困住的非水相液体(NAPL)的地下介质。在这项研究中,使用柱实验研究了残留NAPL对BPA / BPS在饱和砂土和土壤介质中的保留和运输的影响。结果表明,残留的NAPL(即二甲苯和四氯乙烯(PCE))抑制了BPA在砂柱中的传输,二甲苯的抑制作用大于PCE。虽然NAPL的存在对砂柱中BPS的运输几乎没有影响,但在土壤A(沙土)中,残留的NAPL对BPA和BPS的保留和运输具有相似的影响。由于土壤B的有机质含量较高,因此BPA和BPS在土壤B色谱柱中的保留均比在沙子和土壤A色谱柱中的保留高,这可以强烈吸收BPA / BPS。残留NAPL的存在降低了BPA / BPS在土壤B柱中的保留,因为NAPL阻止了土壤有机物对BPA / BPS的吸附。这项研究证明了残留的NAPL,介质的类型,污染物的性质以及它们与饱和多孔介质中BPA / BPS的命运和运输的相互作用的重要性。

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