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Behaviour of arsenic species in batch activated sludge process: biotransformation and removal

机译:间歇活性污泥法中砷物质的行为:生物转化和去除

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摘要

The behaviour of As(III), As(V), MMA(V) and DMA(V) in batch activated sludge process were investigated. Experiments were carried out by using aerobic and anoxic reactors with an initial As concentration of 100 mu g l(-1). Under aerobic condition, As(III) was oxidized to As(V) within 9 hours, some part of MMA(V) was methylated to DMA(V) and some other part was demethylated to As(III), which in turn was immediately oxidized to As(V). Under anoxic condition, As(V) was reduced to As(III) within the same time-course. No significant transformation occurred during experiments conducted with DMA'. It was found that all reactions were biologically mediated. The overall As removal was low (< 20%) during the experiments. Although a relationship seems to exist between the sludge concentration and As removal, it is concluded, under the conditions of our study, that the activated sludge process cannot remove arsenicals efficiently. However, it can control their transformations well. Thus, if associated with an appropriate technology, the activated sludge can be used for As pre-oxidation to treat As contaminated wastewaters. Finally, care must be taken on possible presence of MMA(V) in the influent of any wastewater treatment plant as it can be easily oxidized by the activated sludge.
机译:研究了间歇活性污泥法中As(III),As(V),MMA(V)和DMA(V)的行为。实验是通过使用有氧和缺氧反应器进行的,最初的As浓度为100μg l(-1)。在好氧条件下,As(III)在9小时内被氧化为As(V),MMA(V)的一部分被甲基化为DMA(V),而另一部分被脱甲基为As(III),这又立即被氧化为As(V)。在缺氧条件下,As(V)在相同的时间过程中被还原为As(III)。在使用DMA'进行的实验过程中,没有发生明显的转化。发现所有反应都是生物学介导的。在实验过程中,总的砷去除率很低(<20%)。尽管污泥浓度与砷去除量之间似乎存在关系,但可以得出结论,在我们的研究条件下,活性污泥工艺无法有效去除砷。但是,它可以很好地控制其转换。因此,如果与适当的技术关联,则可以将活性污泥用于As预氧化处理As污染的废水。最后,必须小心任何废水处理厂的进水中可能存在的MMA(V),因为它很容易被活性污泥氧化。

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