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Fate Transformation and Toxicological Impacts of Pharmaceutical and Personal Care Products in Surface Waters

机译:药品和个人护理产品在地表水中的命运转化和毒理学影响

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摘要

With the growth of the human population, a greater quantity of pharmaceutical and personal care products (PPCPs) have been released into the environment. Although research has addressed the levels and the impact of PPCPs in the environment, the fate of these compounds in surface waters is neither well known nor characterized. In the environment, PPCPs can undergo various transformations that are critically dependent on environmental factors such as solar radiation and the presence of soil particles. Given that the degradation products of PPCPs are poorly characterized, these “secondary residues” can be a significant environmental health hazard due to their drastically different toxicologic effects when compared with the parent compounds. To better understand the fate of PPCPs, we studied the degradation of selected PPCPs, including ibuprofen and clofibric acid, in aqueous solutions that contained kaolinite clay and were irradiated with a solar simulator. The most abundant degradation products were identified and assessed for their toxicologic impact on selected microorganisms. The degraded mixtures showed lower toxicity than the starting compounds; however, as these degradation products are capable of further transformation and interaction with other PPCPs in natural waters, our work highlights the importance of additionally characterizing the PPCP degradation products.
机译:随着人口的增长,越来越多的药品和个人护理产品(PPCP)被释放到环境中。尽管研究已经解决了PPCPs在环境中的含量和影响,但是这些化合物在地表水中的命运既不为人所知,也不为特征。在环境中,PPCP可能会经历各种转变,这些转变严重取决于环境因素,例如太阳辐射和土壤颗粒的存在。鉴于PPCP的降解产物表征不佳,这些“次要残留物”与母体化合物相比,由于其毒理学效应大不相同,因此可能对环境健康构成重大危害。为了更好地了解PPCP的命运,我们研究了含有高岭石粘土并用太阳模拟器照射的水溶液中选定的PPCP的降解,包括布洛芬和氯纤维酸。鉴定出最丰富的降解产物,并评估其对选定微生物的毒理学影响。降解的混合物显示出比起始化合物低的毒性。但是,由于这些降解产物能够在天然水中进一步转化并与其他PPCP相互作用,因此我们的工作突出了另外表征PPCP降解产物的重要性。

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