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Removal of algal taste and odour compounds by granular and biological activated carbon in full-scale water treatment plants

机译:大型水处理厂中的颗粒状和生物活性炭去除藻味和臭味化合物

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摘要

The occurrence and severity of cyanobacterial and algal blooms in water supplies has been increasing due to the effects of eutrophication and climate change, resulting in more frequent taste and odour (T&O) events. Conventional treatment processes have been found to be inefficient in removing the two most commonly detected algal T&O compounds, geosmin and 2-methylisoborneol (MIB), though granular activated carbon (GAC) and biological activated carbon (BAC) contactors have achieved high T&O removal rates. Literature on the performance of GAC and BAC for T&O removal in full-scale treatment plants, however, is limited. This review collates and assesses pilot-scale and full-scale studies which focus on removal of geosmin and MIB, with the aim of understanding the factors which influence T&O removal and determining knowledge gaps in the use of GAC and BAC. Age and empty bed contact time (EBCT) were found to have a significant impact on GAC performance, with removal efficiency decreasing with increased age and increasing with longer EBCTs. BAC contactors have achieved higher removal rates than non-biologically active GAC contactors and were not impacted by age, EBCT and/or carbon type. From these observations, implementation of BAC for T&O removal would be favourable; however, further investigations are required to understand full-scale performance of BAC and service life modelling.
机译:由于富营养化和气候变化的影响,供水中蓝细菌和藻华的发生和严重性一直在增加,导致更多的味觉和气味(T&O)事件。尽管颗粒活性炭(GAC)和生物活性炭(BAC)接触器已经实现了很高的T&O去除率,但传统的处理工艺无法有效去除两种最常见的藻类T&O化合物,土工土和2-甲基异冰片(MIB)。 。然而,有关GAC和BAC在大规模处理厂中去除T&O的性能的文献有限。这篇综述整理和评估了侧重于去除土臭素和MIB的中试规模和全面研究,目的是了解影响T&O去除的因素并确定GAC和BAC使用中的知识差距。发现年龄和空床接触时间(EBCT)对GAC性能有重大影响,去除效率随年龄的增长而降低,而随着EBCT的延长而提高。 BAC接触器比非生物活性GAC接触器具有更高的去除率,并且不受年龄,EBCT和/或碳类型的影响。从这些观点来看,实施BAC消除T&O是有利的;但是,需要进一步研究以了解BAC的全面性能和使用寿命模型。

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