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首页> 外文期刊>Water Science and Technology >Enhanced treatment of secondary municipal wastewater effluent: comparing (biological) filtration and ozonation in view of micropollutant removal, unselective effluent toxicity, and the potential for real-time control
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Enhanced treatment of secondary municipal wastewater effluent: comparing (biological) filtration and ozonation in view of micropollutant removal, unselective effluent toxicity, and the potential for real-time control

机译:次级城市废水污水的增强治疗:比较(生物)过滤和臭氧化,考虑到微拷贝,不耐受性排出毒性,以及实时控制的潜力

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摘要

Ozonation and three (biological) filtration techniques (trickling filtration (TF), slow sand filtration (SSF) and biological activated carbon (BAC) filtration) have been evaluated in different combinations as tertiary treatment for municipal wastewater effluent. The removal of 18 multi-class pharmaceuticals, as model trace organic contaminants (TrOCs), has been studied. (Biological) activated carbon filtration could reduce the amount of TrOCs significantly (>99%) but is cost-intensive for full-scale applications. Filtration techniques mainly depending on biodegradation mechanisms (TF and SSF) are found to be inefficient for TrOCs removal as a stand alone technique. Ozonation resulted in 90% removal of the total amount of quantified TrOCs, but a post-ozonation step is needed to cope with an increased unselective toxicity. SSF following ozonation showed to be the only technique able to reduce the unselective toxicity to the same level as before ozonation. In view of process control, innovative correlation models developed for the monitoring and control of TrOC removal during ozonation, are verified for their applicability during ozonation in combination with TF, SSF or BAC. Particularly for the poorly ozone reactive TrOCs, statistically significant models were obtained that correlate TrOC removal and reduction in UVA254 as an online measured surrogate parameter.
机译:已经在不同的组合中评估了臭氧化和三种(生物)过滤技术(滴流过滤(TF),缓慢砂过滤(SSF)和生物活性炭(BAC)过滤)作为城市废水流出物的三级处理。已经研究了去除18种多级药物,作为模型痕量有机污染物(TROC)。 (生物)活性炭过滤可显着降低TROC的量(> 99%),但对于满量程应用是成本均可的。过滤技术主要取决于生物降解机制(TF和SSF)对于TROC作为独立技术的去除是低效的。臭氧化导致90%除去量化的TROC的总量,但需要后臭氧处理步骤来应对增加的不可选择的毒性。 Ozonation之后的SSF显示是唯一能够将不可选择的毒性降低到与臭氧之前相同水平的技术。考虑到过程控制,开发用于监测和控制臭氧过程中TROC去除的创新相关模型,在臭氧组合结合TF,SSF或BAC期间验证了它们的适用性。特别是对于臭氧的反应性TROC,获得统计学上显着的模型,其将TROC去除和减少UVA254作为在线测量的替代参数。

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