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(00416)Combined use of Anaerobic and Aerobic Moving Bed Biofilm Reactors for Micropollutants' Removal from Wastewater

机译:(00416)组合使用厌氧和有氧运动床生物膜反应器进行微核性劳顿的污水去除

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A novel laboratory-scale continuous flow wastewater treatment system, consisting of an anaerobic moving bed biofilm reactor (AnMBBR)and an aerobic MBBR, was used for investigating the removal of hydroxybenzothiazole (OH-BTH)and selected benzotriazoles from municipal wastewater. The system was operated under three different Experimental Phases where different organic loadings were applied: 0.82 kg COD m~(-3)d~(-1)(Phase A), 0.2 kg COD m~(-3)d~(-1)(Phase B)and 2.1 kg COD m~(-3)d~(-1)(Phase C). The system achieved sufficient COD removal, nitrification and biogas production. All target micropollutants were partially removed during the experiments. Total removal efficiencies ranged from 32% for 5-methyl-1H-benzotriazole (5TTR)to 97% for OH-BTH. The contribution of the strictly anaerobic bioreactor was important for 5TTR, 5-chlorobenzotriazole (CBTR)and xylytriazole (XTR), while the use of aerobic bioreactors resulted to important increase of target compounds removal and it was exclusively responsible for the removal of OH-BTH and benzotriazole (BTR).
机译:一种新的实验室规模连续流浪废水处理系统,由厌氧移动床生物膜反应器(ANMBBR)和有氧MBBR组成,用于研究除去羟基苯噻唑(OH-BTH)和从城市废水中选择的苯并三唑。该系统在三个不同的实验相下操作,其中施加不同的有机载量:0.82kg COD m〜(-3)D〜( - 1)(相A),0.2kg COD m〜(-3)d〜(-1 )(相b)和2.1kg COD m〜(-3)d〜(-1)(相c)。该系统实现了足够的鳕鱼去除,硝化和沼气生产。在实验期间,所有靶微型液体均分离。总去除效率范围为5-甲基-1H-苯并三唑(5TTR)的32%至OH-BTH的97%。严格的厌氧生物反应器的贡献对于5TTR,5-氯苯唑(CBTR)和XYLYTRIAZOLE(XTR)很重要,而使用有氧生物反应器导致靶化合物的偏差增加,并且它专门负责去除OH-BTH和苯并三唑(BTR)。

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