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Sorption and degradation of wastewater-associated pharmaceuticals and personal care products in agricultural soils and sediment

机译:废水相关药物和个人护理产品在农业土壤和沉积物中的吸附和降解

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Pharmaceuticals and personal care products (PPCPs) have drawn popular concerns recently as an emerging class of aquatic contaminants. In this study, adsorption and degradation of four selected PPCPs, metronidazole, tinidazole, caffeine and chloramphenicol, have been investigated in the laboratory using two agricultural soils in China and sediment from Changjiang River. Adsorption tests using a batch equilibrium method demonstrated that adsorption of all tested chemicals in soils could be well described with Freundlich equation, and their adsorption affinity on soil followed the order of chloramphenicol >caffeine> tinidazole> metronidazole. Generally, higher Kf value was associated with soils which had higher organic matter contents (except for caffeine acid in this study). Degradation of selected PPCPs in soils generally followed first-order exponential decay kinetics, and half-lives ranging from 0.97 to 10.21 d. Sterilization generally decreased the degradation rates, indicating that microbial activity played a significant role in the degradation in soils. The degradation rate constant decreased with increasing initial chemical concentrations in soil, implying that the microbial activity was inhibited with high chemical loading levels.
机译:药物和个人护理产品(PPCP)作为一类新兴的水生污染物,最近引起了人们的广泛关注。在这项研究中,在实验室中使用中国的两种农业土壤和长江沉积物对四种选定的PPCP(甲硝唑,替硝唑,咖啡因和氯霉素)的吸附和降解进行了研究。使用间歇平衡法进行的吸附测试表明,所有被测化学物质在土壤中的吸附都可以用Freundlich方程很好地描述,它们对土壤的吸附亲和力遵循氯霉素>咖啡因>替硝唑>甲硝唑的顺序。通常,较高的Kf值与有机物含量较高的土壤有关(本研究中的咖啡因酸除外)。土壤中所选PPCP的降解通常遵循一阶指数衰减动力学,其半衰期为0.97至10.21 d。灭菌通常会降低降解速率,这表明微生物活性在土壤降解中起着重要作用。降解速率常数随土壤中初始化学浓度的增加而降低,这表明在高化学负载水平下微生物活性受到抑制。

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