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Micropollutant removal with saturated biological activated carbon (BAC) in ozonation-BAC process

机译:臭氧化-BAC工艺中用饱和生物活性炭(BAC)去除微污染物

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The objective of this study is to evaluate the adsorption capacity of BAC saturated with natural organic matter (NOM) for micropollutant removal which intermittently enter into water sources and to compare this to sand filtration that has no adsorbability but has biodegradability. The removal of intermittently applied micropollutants was examined with two BAC and sand filters. Two BAC filters which have been operated for 6 and 20 months and a sand filter being used for 6 months for the treatment of reservoir water were used in this experiment, EBCT of these BAC and sand filter were 15 minutes. Bromophenol (highly adsorbable but refractory) and phenol (adsorbable and biodegradable) were used instead of targeted micropollutants. Bromophenol and phenol of about 200 mu g.1(-1) were applied for 24 hours. The BAC 1, which was used for 20 months had already lost its adsorbability because it was saturated with NOM. BAC 2 filter which was used for 6 months had small adsorption capacity for NOM, As a result, either BAC 2 or BAC 1 removed bromophenol (160 mu g.1(-1)) completely for 24 hours spike, but sand filter did not removed at all, Bromophenol can be removed only by adsorption, therefore bromophenol might be removed through adsorption by BAC. On the other hand, phenol (220 mu g.1(-1)) whose adsorbability is lower than bromophenol, was removed completely by both BAC 1 and BAC 2. These results indicate that micropollutants with similar adsorbability as that of phenol and bromophenol can be removed by BAC even after a long period of operation and saturation with NOM.
机译:这项研究的目的是评估天然有机物(NOM)饱和的BAC对间歇性进入水源的微量污染物去除的吸附能力,并将其与没有吸附性但具有生物降解性的砂滤进行比较。用两个BAC和砂滤器检查了间歇施加的微污染物的去除情况。在该实验中,使用了两个分别工作了6个月和20个月的BAC过滤器和一个用于滤池水处理的沙滤器6个月,这些BAC和沙滤器的EBCT为15分钟。使用溴苯酚(高度吸附,但难熔)和苯酚(可吸附和可生物降解)代替目标微污染物。施加约200μg.1(-1)的溴苯酚和苯酚24小时。使用了20个月的BAC 1已因NOM饱和而失去了吸附能力。使用了6个月的BAC 2过滤器对NOM的吸附能力较小,因此,BAC 2或BAC 1可以在24小时内完全去除溴酚(160μg.1(-1)),但砂滤器没有如果完全除去溴酚,则只能通过吸附除去溴酚,因此可以通过BAC吸附除去溴酚。另一方面,BAC 1和BAC 2完全去除了吸附性低于溴苯酚的苯酚(220μg.1(-1))。这些结果表明,与苯酚和溴苯酚具有相似吸附性的微污染物可以即使经过长时间的操作并被NOM饱和,也可以通过BAC将其去除。

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