Removal of Endocrine-Disrupting Chemicals in Activated Sludge Treatment Works

雌酮 流出物 活性污泥 烷基酚 雌三醇 环境化学 污水处理 污水 化学 微观世界 壬基酚 内分泌系统 活性炭 双酚A 炔雌醇 污水污泥 废物管理 环境科学 激素 环境工程 吸附 有机化学 生物化学 医学 烷基 人口 环氧树脂 研究方法 环境卫生 工程类
作者
Andrew C. Johnson,John P. Sumpter
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:35 (24): 4697-4703 被引量:618
标识
DOI:10.1021/es010171j
摘要

The release of endocrine-disrupting chemicals into the aquatic environment has raised the awareness of the central role played by sewage treatment in lowland water quality. This review focuses on the activated sludge process, which is commonly used to treat sewage in large towns and cities and which successfully removes the bulk of the organic compounds that enter the works. However, not all compounds are completely broken down or converted to biomass. For example, the estrogenic alkylphenols and steroid estrogens found in effluent are the breakdown products of incomplete breakdown of their respective parent compounds. Batch microcosm studies have indicated that estrone, ethinylestradiol, and alkylphenols will not be completely eliminated in activated sludge over typical treatment times. Field data suggest that the activated sludge treatment process can consistently remove over 85% of estradiol, estriol, and ethinylestradiol. The removal performance for estrone appears to be less and is more variable. Because of its relatively high hydrophobicity, the accumulation of alkylphenol in sludge has been observed. Although it has not been examined, accumulation of ethinylestradiol in sludge is a possibility due to its recalcitrance and hydrophobicity. A comparison between the concentrations of some of the major endocrine-active chemicals in effluents and their biological potencies has been made, to direct attention to the chemicals of most concern. While water purification techniques such as UV or activated charcoal could significantly remove these microorganic contaminants, the high costs involved suggest that research into the potential for treatment optimization should receive more attention.
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