首页> 外文期刊>Environmental Science: Water Research & Technology >Correction: Deep-bed filters as post-treatment for ozonation in tertiary municipal wastewater treatment: impact of design and operation on treatment goals
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Correction: Deep-bed filters as post-treatment for ozonation in tertiary municipal wastewater treatment: impact of design and operation on treatment goals

机译:校正:深层床过滤器作为臭氧处理后的臭氧处理污水处理:设计与运作对治疗目标的影响

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Ozonation followed by biological post-treatment is an established technology for abatement of organic micropollutants (OMP) from municipal wastewater. Although the necessity of biological post-treatment for oxidation by-product (OBP) removal is widely accepted, there is still discussion about the appropriate design and operation. The presented pilot-study investigates the impact of filter material and contact time on the removal efficiency of bulk organics, OMP, and OBP in three different deep-bed filters operated in parallel as post-treatment after ozonation (biological activated carbon (BAC) filter, dual-media filter sand/BAC and dual-media filter sand/anthracite). The use of BAC instead of non-adsorptive filter material resulted in higher removal of DOC and dissolved oxygen which indicates increased biological activity. Moreover, both BAC containing filters showed additional removal for a number of OMP even at high treated bed volumes of 50 000 whereas no removal was observed in the sand/anthracite filter. Analysis of N-nitrosodimethylamine (NDMA) and several carbonyl compounds revealed a clear formation of these biodegradable OBP during ozonation. A strong correlation was found between carbonyl formation and the specific ozone dose. Removal of OBP in the sand/BAC and the sand/anthracite filter was tested at different empty bed contact times (EBCT). While NDMA was efficiently removed independent of EBCT changes, there was a slightly negative impact of shorter EBCT on the reduction of carbonyl compounds. Furthermore, it was demonstrated that the integration of enhanced phosphorus removal into post-treatment is feasible with relatively low efforts by inline coagulant dosing (FeCl3) in the filter influent.
机译:臭氧化合物,然后是生物后处理是一种既定的,用于削减来自市政废水的有机微污染物(OMP)。虽然氧化副产品(OBP)去除的生物后处理的必要性被广泛接受,但仍然讨论了适当的设计和操作。所提出的试验研究调查了过滤器材料的影响,并接触散装有机物,OMP和OBP在三种不同的深层过滤器中的去除效率作为臭氧处理后的后处理(生物活性炭(BAC)过滤器,双介质过滤砂/ BAC和双介质过滤砂/无烟煤)。使用BAC代替非吸附过滤材料,导致较高的DOC和溶解氧的去除,表明生物活性增加。此外,含Bac的过滤器也表明,即使在高处理的床体积> 50 000,也显示出许多OMP的另外的除去,而在砂/无烟煤过滤器中不观察到去除。 N-硝基氧二甲酰胺(NDMA)和几种羰基化合物的分析显示在臭氧期间这些可生物降解的OBP的清晰形成。在羰基形成和特定臭氧剂量之间发现了强的相关性。在不同的空床接触时间(EBCT)上测试在砂/ BAC和砂/无烟煤过滤器中除去OBP。虽然NDMA与EBCT变化无关,但较短的EBCT对羰基化合物的还原存在略有负面影响。此外,证明了增强的磷去处理的整合在后处理后可行,通过在过滤器流入物中通过内联凝结剂剂量(FECL3)相对较低。

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    Berliner Wasserbetriebe Neue Juedenstr 1 D-10179 Berlin Germany;

    Adam Mickiewicz Univ Fac Chem Ul Uniwersytetu Poznanskiego 8 PL-61614 Poznan Poland;

    Berliner Wasserbetriebe Neue Juedenstr 1 D-10179 Berlin Germany;

    Kompetenzzentrum Wasser Berlin Cicerostr 24 D-10709 Berlin Germany;

    Kompetenzzentrum Wasser Berlin Cicerostr 24 D-10709 Berlin Germany;

    Berliner Wasserbetriebe Neue Juedenstr 1 D-10179 Berlin Germany;

    Berliner Wasserbetriebe Neue Juedenstr 1 D-10179 Berlin Germany;

    Rhein Westfal TH Aachen Inst Siedlungswasserwirtschaft Mies van der Rohe Str 1 D-52074 Aachen Germany|Univ Appl Sci & Arts Northwestern Switzerland Inst Ecopreneurship Sch Life Sci Hofackerstr 40 CH-4132 Muttenz Switzerland;

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  • 入库时间 2022-08-18 23:28:10

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