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Removal of antibiotics in wastewater: Effect of hydraulic and solid retention times on the fate of tetracycline in the activated sludge process

机译:去除废水中的抗生素:活性污泥过程中水力和固体停留时间对四环素命运的影响

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A study was conducted to examine the influence of hydraulic retention time (HRT) and solid retention time (SRT) on the removal of tetracycline in the activated sludge processes. Two lab-scale sequencing batch reactors (SBRs) were operated to simulate the activated sludge process. One SBR was spiked with 250 mu g/L tetracycline, while the other SBR was evaluated at tetracycline concentrations found in the influent of the wastewater treatment plant (WWTP) where the activated sludge was obtained. The concentrations of tetracyclines in the influent of the WWTP ranged from 0.1 to 0.6 mu g/L. Three different operating conditions were applied during the study (phase 1-HRT: 24 h and SRT: 10 days; phase 2-HRT: 7.4 h and SRT: 10 days; and phase 3-HRT: 7.4 h and SRT: 3 days). The removal efficiency of tetracycline in phase 3 (78.4 +/- 7.1%) was significantly lower than that observed in phase 1 (86.4 +/- 8.7%) and phase 2 (85.1 +/- 5.4%) at the 95% confidence level. The reduction of SRT in phase 3 while maintaining a constant HRT decreased tetracycline removal efficiency. Sorption kinetics reached equilibrium within 24 h. Batch equilibrium experiments yielded an adsorption coefficient (K-ads) of 8400 +/- 500 mL/g and a desorption coefficient (K-des) of 22 600 +/- 2200 mL/g. No evidence of biodegradation for tetracycline was observed during the biodegradability test, and sorption was found to be the principal removal mechanism of tetracycline in activated sludge.
机译:进行了一项研究,以研究水力停留时间(HRT)和固体停留时间(SRT)对活性污泥工艺中四环素去除的影响。运行了两个实验室规模的顺序批处理反应器(SBR),以模拟活性污泥过程。一个SBR掺入了250μg / L四环素,而另一种SBR则在获得活性污泥的废水处理厂(WWTP)进水中发现的四环素浓度下进行评估。污水处理厂进水口中四环素的浓度范围为0.1至0.6μg / L。在研究期间应用了三种不同的操作条件(1-HRT阶段:24小时和SRT:10天; 2-HRT阶段:7.4小时和SRT:10天; 3-HRT阶段:7.4小时和SRT:3天) 。在95%置信水平下,阶段3中四环素的去除效率(78.4 +/- 7.1%)显着低于阶段1(86.4 +/- 8.7%)和阶段2(85.1 +/- 5.4%)的去除效率。在保持恒定的HRT的同时,阶段3中SRT的降低会降低四环素的去除效率。吸附动力学在24小时内达到平衡。间歇平衡实验得出的吸附系数(K-ads)为8400 +/- 500 mL / g,解吸系数(K-des)为22600 +/- 2200 mL / g。在生物降解性试验过程中,未观察到四环素生物降解的迹象,吸附是活性污泥中四环素的主要去除机理。

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