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Investigation into Micropollutant Removal from Wastewaters by a Membrane Bioreactor

机译:膜生物反应器去除废水中的微污染物的研究

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摘要

Direct potable reuse of wastewater is attractive as the demand for potable water increases. However, the presence of organic micropollutants in industrial and domestic wastewater is a major health and environmental concern. Conventional wastewater treatment processes are not designed to remove these compounds. Further many of these emerging pollutants are not regulated. Membrane bioreactor based biological wastewater treatment has recently become a preferred method for treating municipal and other industrial wastewaters. Here the removal of five selected micropollutants representing different classes of emerging micropollutants has been investigated using a membrane bioreactor. Acetaminophen, amoxicillin, atrazine, estrone, and triclosan were spiked into wastewaters obtained from a local wastewater treatment facility prior to introduction to the membrane bioreactor containing both anoxic and aerobic tanks. Removal of these compounds by adsorption and biological degradation was determined for both the anoxic and aerobic processes. The removal as a function of operating time was investigated. The results obtained here suggest that removal may be related to the chemical structure of the micropollutants.
机译:随着对饮用水的需求增加,直接将饮用水用于饮用水的方法很有吸引力。但是,工业和生活废水中存在有机微量污染物是对健康和环境的重大关注。常规废水处理工艺并未设计为去除这些化合物。此外,许多这些新兴污染物均未受到监管。基于膜生物反应器的生物废水处理最近已成为处理市政和其他工业废水的首选方法。在这里,已经使用膜生物反应器研究了去除代表不同类别新兴微污染物的五种选定微污染物的方法。将对乙酰氨基酚,阿莫西林,阿特拉津,雌酮和三氯生加标到从当地废水处理设施获得的废水中,然后再引入包含缺氧和好氧槽的膜生物反应器。对于缺氧和好氧过程,都通过吸附和生物降解来去除这些化合物。研究了作为操作时间函数的去除量。此处获得的结果表明去除可能与微污染物的化学结构有关。

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