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首页> 外文期刊>Journal of Hazardous Materials >Perfluoroalkyl substances and pharmaceuticals removal in full-scale drinking water treatment plants
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Perfluoroalkyl substances and pharmaceuticals removal in full-scale drinking water treatment plants

机译:全氟烷基物质和药物在全规模饮用水处理厂中去除

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The concentrations of 14 perfluoroalkyl substances (PFASs) and 46 pharmaceuticals in raw water and drinking water from five drinking water treatment plants were determined to assess removal of the chemicals during treatment. 10 out of 14 PFASs were detected in the raw and drinking water samples. The mean perfluorohexane sulfonate concentrations in raw and drinking water were the highest with levels of 106 and 69.6 ng L-1, respectively and the other PFAS concentrations were lower. The Sigma(14)PFAS and individual PFAS removal efficiencies for the treatment plants were -36.9% to 70.7% (mean 31.3%) but the granular activated carbon process removed 80% of the total amount of long-chain PFASs that was removed. The removal efficiency increased as the perfluorocarbon chain length increased. The removal efficiencies increased by 14.2% and 11.2% from the shortest to the longest perfluoroalkyl carboxylic acid and perfluoroalkyl sulfonic acid chain lengths, respectively. 20 out of 46 pharmaceuticals were detected in the raw water samples, but most were removed completely during treatment. Only caffeine, carbamazepine, crotamiton, fenbendazole, metformin, and sulfamethoxazole were detected in the drinking water samples. Oxidation processes contributed 90% of the overall treatment plant removal efficiency except for metformin.
机译:确定从五个饮用水处理厂的原水和饮用水中的14种全氟烷基物质(PFASS)和46药物的浓度,以评估治疗过程中的化学品。在原料和饮用水样品中检测到14个PFASS中的10个。原料和饮用水中的平均全氟己烷磺酸盐浓度分别是106和69.6ng的最高水平,另外的PFA浓度较低。治疗植物的Sigma(14)PFA(14)PFA和单独的PFA去除效率为-36.9%至70.7%(平均31.3%),但除去的长链PFASS总量的粒状活性炭加工> 80%。随着全氟化碳链长增加,去除效率增加。去除效率分别从最短到最短的全氟烷基羧酸和全氟烷基磺酸链长度增加了14.2%和11.2%。在原水样中检测到46个药物中的20个,但在治疗过程中大多数完全除去。在饮用水样品中检测到仅咖啡因,卡巴马嗪,克拉胺,芬苯唑,二甲双胍和磺胺甲恶唑。除了二甲双胍外,氧化过程有助于整个治疗植物去除效率的90%。

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