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Colloid-Mediated Transport of Pharmaceutical and Personal Care Products through Porous Media

机译:胶体介导的药物和个人护理产品通过多孔介质的运输

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摘要

Pharmaceutical and personal care products (PPCPs) enter soils through reclaimed water irrigation and biosolid land applications. Colloids, such as clays, that are present in soil may interact with PPCPs and thus affect their fate and transport in the subsurface environment. This study addresses the influence of soil colloids on the sorption and transport behaviors of PPCPs through laboratory column experiments. Results show that the affinities of PPCPs for colloids vary with their molecular chemistry and solution ionic strength. The presence of colloids promotes the breakthrough of ciprofloxacin (over 90% sorbed on colloids) from ~4% to 30–40%, and the colloid-facilitated effect was larger at lower ionic strength (e.g., 2 mM). In comparison, the net effect of colloids on the transport of tetracycline (~50% sorbed on colloids) could be facilitation or inhibition, depending on solution chemistry. This dual effect of colloids is primarily due to the opposite response of migration of dissolved and colloid-bound tetracycline to the change in solution ionic strength. Colloids could also facilitate the transport of ibuprofen (~10% sorbed on colloids) by ~50% due likely to exclusion of dispersion pathways by colloid straining. This study suggests that colloids are significant carriers or transport promoters of some PPCPs in the subsurface environment and could affect their off-site environmental risks.
机译:药品和个人护理产品(PPCP)通过再生水灌溉和生物固体土地施用进入土壤。土壤中存在的胶体(例如粘土)可能与PPCP相互作用,从而影响其在地下环境中的命运和运输。这项研究通过实验室柱实验解决了土壤胶体对PPCPs吸附和迁移行为的影响。结果表明,PPCP对胶体的亲和力随其分子化学和溶液离子强度的变化而变化。胶体的存在促进环丙沙星(吸附在胶体上的90%以上)从约4%突破到30-40%,并且在较低的离子强度(例如2μmM)下,促进胶体作用更大。相比之下,取决于溶液化学性质,胶体对四环素运输的净作用(〜50%吸附在胶体上)可能是促进作用或抑制作用。胶体的双重作用主要是由于溶解的和胶体结合的四环素的迁移对溶液离子强度的变化产生了相反的响应。胶体也可能促进布洛芬的运输(约10%吸附在胶体上)约50%,这是由于胶体拉紧可能排除了分散途径所致。这项研究表明,胶体是地下环境中某些PPCP的重要载体或运输促进剂,并可能影响其场外环境风险。

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