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Generation of soluble microbial products by bio-activated carbon filter during drinking water advanced treatment and its influence on spectral characteristics

机译:饮用水深度处理过程中生物活性炭过滤器产生的可溶性微生物产物及其对光谱特性的影响

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摘要

In order to improve our understanding of bio-activated carbon (BAC) filter, the water quality of influent and effluent treated with BAC in a drinking water treatment plant (DWTP) of Shanghai during 2015 was valued. Combining the results from UV_(254), SUVA_(254), dissolved organic carbon (DOC) and scanning electron microscopic (SEM), it is found that performance of BAC treatment will be affected by characteristics of activated carbon (AC), which is relevant to the type of activated carbon (including shape and operating time) in this study. Fluorescence excitation-emission matrix (FEEM) shows that the humification index (HIX) and index of recent autochthonous contribution (BIX) is a reliable indicator to descript the variation of dissolved organic matter (DOM) during BAC process. The pattern of variation in BIX and HIX implies that soluble microbial products (SMPs) are formed and humic-like substances are removed during BAC treatment, which is also confirmed by the change of peaks of FEEM in BAC effluent Large, positive correlations between SUVA_(254) and disinfection by-products formation potential yield (DBPFP yield) demonstrate that UV-absorbing DOM is directly related to the generation of DBPs. Poor correlations of HIX with DBPFP suggest that non-humic substances with UV-absorbing properties play an important role in the generation of DBPs in water with low SUVA_(254). Finally, strong but negative correlations between BIX and DBPFP suggest that vigorous microbial metabolism of BAC results in a decrease in DBPFP. However, the DBPFP yield will be enhanced for the generation of SMPs by BAC especially in summer.
机译:为了增进我们对生物活性炭(BAC)过滤器的了解,我们对2015年上海饮用水处理厂(DWTP)中使用BAC处理过的进水和出水的水质进行了评估。结合UV_(254),SUVA_(254),溶解性有机碳(DOC)和扫描电子显微镜(SEM)的结果,发现BAC处理的性能将受到活性炭(AC)特性的影响。与本研究中的活性炭类型(包括形状和工作时间)有关。荧光激发发射矩阵(FEEM)表明,增湿指数(HIX)和最近的自发贡献指数(BIX)是描述BAC过程中溶解有机物(DOM)变化的可靠指标。 BIX和HIX的变化模式表明在BAC处理过程中形成了可溶性微生物产物(SMP)并去除了腐殖质样物质,这也由BAC废水中FEEM峰的变化所证实。SUVA_( 254)和消毒副产物形成潜力产量(DBPFP产量)证明,吸收紫外线的DOM与DBP的产生直接相关。 HIX与DBPFP的差相关性表明,具有UV吸收特性的非腐殖质物质在SUVA_(254)低的水中DBP的生成中起着重要作用。最后,BIX与DBPFP之间的强但负相关性表明BAC的强烈微生物代谢会导致DBPFP降低。但是,BAC生成SMP的DBPFP产量将提高,尤其是在夏季。

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