Emerging Contaminants and Advanced Water Treatment System

H. Hayashi
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引用次数: 1

Abstract

To investigate the behavior of emerging contaminants in drinking water, we measured the concentration of perfluorooctanoic acid (PFOA), perfluorooctane sulfonate (PFOS) and a number of pharmaceuticals and personal care products (PPCPs) in an advanced water treatment system. PFOA concentration ranged from 4 to 225 ng/L and 5 to 153 ng/L in raw water and final water, respectively, at the Kunijima purification plant. However the concentrations of PFOA had decreased since September, 2007, as the volume of sewerage treatment plant effluents decreased in the same period. It was thought that the consumption of PFOA had decreased in the upstream area. We have also developed an analytical method for 73 PPCPs using LC-MS/MS. The number of PPCPs of which the average concentration was more than the quantification limit at the Kunijima purification plant was 30 in raw water, but fell to two (iopamidol, iohexol) in finished water. The advanced water treatment system, in particular the ozonation process, appears thus to remove PPCPs efficiently.
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新兴污染物和先进的水处理系统
为了研究饮用水中新出现的污染物的行为,我们在一个先进的水处理系统中测量了全氟辛酸(PFOA)、全氟辛烷磺酸(PFOS)和一些药品和个人护理产品(PPCPs)的浓度。国岛净化厂原水和最终水的全氟辛酸浓度分别为4至225纳克/升和5至153纳克/升。然而,自2007年9月以来,随着同期污水处理厂出水量的减少,全氟辛酸的浓度有所下降。据认为,上游地区全氟辛酸的消费量已经减少。我们还开发了一种使用LC-MS/MS分析73 PPCPs的方法。国岛净化厂原水中平均浓度超过限量的PPCPs数为30个,而成品水中平均浓度超过限量的PPCPs数为2个(iopamidol, iohexol)。因此,先进的水处理系统,特别是臭氧化过程,似乎可以有效地去除ppcp。
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