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A review: Potential and challenges of biologically activated carbon to remove natural organic matter in drinking water purification process

机译:综述:饮用水净化过程中生物活性炭去除天然有机物的潜力和挑战

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摘要

The use of biologically activated carbon (BAC) in drinking water purification is reviewed. In the past BAC is seen mostly as a polishing treatment. However, BAC has the potential to provide solution to recent challenges faced by water utilities arising from change in natural organic matter (NOM) composition in drinking water sources-increased NOM concentration with a larger fraction of hydrophilic compounds and ever increasing trace level organic pollutants. Hydrophilic NOM is not removed by traditional coagulation process and causes bacterial regrowth and increases disinfection by-products (DBPs) formation during disinfection. BAC can offer many advantages by removing hydrophilic fraction and many toxic and endocrine compounds which are not otherwise removed. BAC can also aid the other downstream processes if used as a pre-treatment. Major drawback of BAC was longer empty bed contact time (EBCT) required for an effective NOM removal. This critical review analyses the strategies that have been adopted to enhance the biological activity of the carbon by operational means and summarises the surface modification methods. To maximize the benefit of the BAC, a rethink of current treatment plant configuration is proposed. If the process can be expedited and adopted appropriately, BAC can solve many of the current problems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:综述了在饮用水净化中生物活性炭(BAC)的使用。在过去,BAC主要被视为抛光处理。但是,BAC有潜力为饮用水企业面临的近期挑战提供解决方案,这些挑战是饮用水源中天然有机物(NOM)组成的变化所引起的,NOM的浓度增加了,而亲水性化合物的比例更高,并且痕量有机污染物的含量不断增加。亲水性NOM不能通过传统的凝结工艺去除,并且会导致细菌再生,并在消毒过程中增加消毒副产物(DBP)的形成。 BAC可以通过去除亲水部分以及许多其他没有去除的有毒和内分泌化合物而提供许多优势。如果用作预处理,BAC还可以帮助其他下游过程。 BAC的主要缺点是有效去除NOM需要更长的空床接触时间(EBCT)。这篇重要的评论文章分析了通过操作手段提高碳的生物活性所采用的策略,并总结了表面改性方法。为了使BAC的利益最大化,提出了对当前处理厂配置的重新思考。如果可以加快和适当采用该过程,那么BAC可以解决许多当前的问题。 (C)2016 Elsevier Ltd.保留所有权利。

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