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首页> 外文期刊>Journal of environmental monitoring: JEM >The fate of metals in wastewater treated by the activated sludge process and membrane bioreactors: A brief review
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The fate of metals in wastewater treated by the activated sludge process and membrane bioreactors: A brief review

机译:活性污泥法和膜生物反应器处理的废水中金属的命运:简述

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The fate of metals in wastewater treatment by the conventional activated sludge process (ASP) and membrane bioreactors (MBRs) is reviewed. The review outlines the environmental and health impacts of metals, but focuses primarily on data reported for removal of toxic metals, and some other high-profile inorganic micropollutants such as aluminium and arsenic, by wastewater treatment processes. Information from pilot and full scale plants is included, with corroboratory reports from bench-scale tests. General trends in removal across different metals are considered, along with the impact of the key process operating determinant of solids retention time. It is concluded that the only consistent trend in metals removal is that it is most effectively achieved through efficient solids separation, and that this represents the primary advantage offered by the MBR. As such, MBRs achieve averaged metals removals which are consistently but not dramatically higher than the ranges reported by the ASP: 64-92% vs. 51-87%, with no more than a 55% decrease on average in effluent concentration. The slightly greater removal attained is attributable to the additional suspended solids retention attained by the membrane process. In either case, further removal of metals would demand a tertiary process for removal of the dissolved material.
机译:综述了通过常规活性污泥法(ASP)和膜生物反应器(MBR)处理废水中金属的命运。审查概述了金属对环境和健康的影响,但主要侧重于所报告的通过废水处理过程去除有毒金属以及其他一些引人注目的无机微量污染物(如铝和砷)的数据。包括来自中试和大型工厂的信息,以及来自台式测试的确证报告。考虑了在不同金属上去除的总体趋势,以及对固体保留时间的关键过程操作决定因素的影响。结论是,金属去除的唯一一致趋势是通过有效的固体分离最有效地实现了金属去除,这代表了MBR的主要优势。因此,MBR实现的平均金属去除率始终如一但不显着高于ASP所报告的范围:64-92%对51-87%,废水浓度平均降低不超过55%。去除率略高归因于通过膜法获得的额外悬浮固体保留。在任一种情况下,进一步去除金属都将需要第三步工艺来去除溶解的材料。

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