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首页> 外文期刊>Science of the total environment >Removal of selected Pharmaceuticals, personal care products and artificial sweetener in an aerated sewage lagoon
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Removal of selected Pharmaceuticals, personal care products and artificial sweetener in an aerated sewage lagoon

机译:去除曝气池中的部分药品,个人护理产品和人造甜味剂

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A sewage lagoon serving the small municipality of Lakefield in Ontario, Canada was monitored in the summer, fall and winter to determine removals of carbamazepine, trimethoprim, sulfamethoxazole, ibuprofen, gemfibrozil, triclosan, sucralose, HHCB and AHTN. Concentrations of these compounds in untreated and treated wastewater were estimated by deploying POCIS and SPMD passive samplers in the sewage lagoon. Passive samplers were also deployed at several points upstream and downstream of the point of discharge from the lagoon into the Otonabee River. LC-MS/MS and GC-MS were utilized to determine the concentrations of Pharmaceuticals and personal care products (PPCPs) and sucralose, an artificial sweetener. Among PPCPs sampled by POCIS, the highest estimated concentration in untreated wastewater was ibuprofen sampled during the fall, at an estimated concentration of 60.3 ng/L The estimated average concentration of sucralose was 13.6 ng/L in the untreated wastewaters. Triclosan, HHCB and AHTN in SPMDs were highest during fall season, at 30,1677 and 109 ng/L, respectively. For all compounds except gemfibrozil, carbamazepine and sucralose, removals were highest in the summer (83.0 to 98.8%) relative to removals in the fall (48.4 to 91.4%) and winter (14.0 to 78.3%). Finally, the estimated concentrations of carbamazepine, sulfamethoxazole, triclosan and HHCB were compared with predicted values obtained through application of the WEST~® modeling tool, with a new model based on the River Water Quality Model No. 1 and extended with dynamic mass balances describing the fate of chemicals of emerging concern subject to a variety of removal pathways. The model was able to adequately predict the fate of these four compounds in the lagoon in summer and winter, but the model overestimated removals of three of the four test compounds in the fall sampling period. This lagoon was as effective at removing PPCPs as many conventional WWTPs, but removals were better during the summer.
机译:在夏季,秋季和冬季,对服务于加拿大安大略省莱克菲尔德小市政当局的污水泻湖进行了监测,以确定卡马西平,甲氧苄啶,磺胺甲恶唑,布洛芬,吉非贝齐,三氯生,三氯蔗糖,六氯苯酚和AHTN的去除量。通过在污水池中部署POCIS和SPMD无源采样器,可以估算未处理和处理过的废水中这些化合物的浓度。在从泻湖到奥托纳比河的排放点的上游和下游的几个点也部署了无源采样器。 LC-MS / MS和GC-MS用于确定药品和个人护理产品(PPCP)和三氯蔗糖(一种人造甜味剂)的浓度。在POCIS采样的PPCP中,未处理废水的最高估计浓度是秋天期间布洛芬采样,估计浓度为60.3 ng / L。三氯蔗糖的估计平均浓度为未处理废水中的13.6 ng / L。在秋季,SPMDs中的三氯生,HHCB和AHTN最高,分别为30,1677和109 ng / L。对于除吉非贝齐,卡马西平和三氯蔗糖以外的所有化合物,相对于秋季(48.4至91.4%)和冬季(14.0至78.3%)的去除率,夏季的去除率最高(83.0至98.8%)。最后,将估计的卡马西平,磺胺甲恶唑,三氯生和六氯环己烷的浓度与通过应用WEST〜®建模工具获得的预测值进行了比较,并使用了基于河流水质模型1的新模型并扩展了动态质量平衡受到关注的化学品的命运受到各种清除途径的影响。该模型能够充分预测夏季和冬季泻湖中这四种化合物的命运,但该模型高估了秋季采样期间四种测试化合物中三种化合物的去除量。这个泻湖在清除PPCP方面与许多传统的污水处理厂一样有效,但夏季的清除效果更好。

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