首页> 外文期刊>Journal of Water and Environment Technology >Field Survey on the Removal of Endocrine Disrupting Chemicals and Pharmaceutical Residues in Oxidation Ponds and Constructed Wetlands in Tropical Areas
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Field Survey on the Removal of Endocrine Disrupting Chemicals and Pharmaceutical Residues in Oxidation Ponds and Constructed Wetlands in Tropical Areas

机译:去除热带地区氧化塘和人工湿地中内分泌干扰化学物质和药物残留的现场调查

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Field surveys were conducted to obtain fundamental information on the removal of endocrine disrupting chemicals (EDCs) and pharmaceutical residues (PRs) with conventional water quality parameters in wastewater treatment plants (WWTPs) in Thailand. Oxidation ponds and constructed wetlands were focused on because these systems are adapted in about 60% of municipalities. In the field surveys, water samples including the influent and effluent as well as water at the middle part of plants were taken from 6 WWTPs receiving municipal sewage or hospital wastewater. Totally 11 EDCs and PRs which have been detected frequently in public water body in Thailand were measured by LC-MS/MS. It was found that the EDCs and PRs were present in the range of 0.001 to 102 μg/L and 0.001 to 1 μg/L in the influents and effluents of WWTPs, respectively. Every pollutant was removed by WWTPs in different manner. More than 80% of naproxen and 70% of estrone were removed, while those of other pollutants such as p-acetaminophen, ibuprofen, DEET, and gemfibrozil were different among WWTPs. It was shown that oxidation ponds and constructed wetlands are effective to remove EDCs and PRs concurrently. However, a further study will be needed to evaluate precise removal performances and relations to design and operation parameters.
机译:进行了现场调查,以获取有关在泰国的污水处理厂(WWTP)中去除具有常规水质参数的内分泌干扰物(EDC)和药物残留(PR)的基本信息。重点关注氧化池和人工湿地,因为这些系统已在大约60%的城市中得到了适应。在现场调查中,从6个接受城市污水或医院废水的污水处理厂采集了水样,包括进水和污水以及工厂中部的水。通过LC-MS / MS对泰国公共水域中经常发现的11种EDC和PR进行了测量。发现污水处理厂的进水和出水中的EDC和PRs分别为0.001至10 2 μg/ L和0.001至1μg/ L。污水处理厂以不同方式去除了每种污染物。废水处理厂中,除去了超过80%的萘普生和70%的雌酮,而其他污染物如对乙酰氨基酚,布洛芬,DEET和吉非贝齐的污染物则有所不同。结果表明,氧化池和人工湿地可以有效地同时去除EDC和PR。但是,需要进一步的研究来评估精确的去除性能以及与设计和操作参数的关系。

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