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Advanced oxidative processes and membrane separation for micropollutant removal from biotreated domestic wastewater

机译:生物排雷国内废水的微润肤剂去除的先进氧化方法和膜分离

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摘要

The presence of micropollutants in sewage is already widely known, as well as the effects caused by natural and synthetic hormones. Thus, it is necessary to apply treatments to remove them from water systems, such as advanced oxidation processes (AOPs) and membrane separation processes, which can oxidize and remove high concentrations of organic compounds. This work investigated the removal of 17 beta-estradiol (E2), 17 alpha-ethinylestradiol (EE2), and estriol (E3) from biotreated sewage. Reverse osmosis processes were conducted at three recoveries (50, 60, and 70 %). For E2 and EE2, the removals were affected by the recovery. The best results for RO were as follows: the E2 compound removal was 89 % for 60 % recovery and the EE2 compound removal was 57 % for 50 % recovery. The RO recovery did not impact the E3 removal. It was concluded that the interaction between the evaluated estrogens, and the membrane was the major factor for the hormone separation. The AOP treatment using H2O2/UV was carried out in two sampling campaigns. First, we evaluated the variation of UV doses (24.48, 73.44, 122.4, and 244.8 kJ m(-2)) with 18.8mg L-1 of H2O2 in the reaction. EE2 showed considerable removals (around 70 %). In order to optimize the results, an experimental design was applied. The best result was obtained with higher UV dose (122.4 kJ m(-2)) and lower H2O2 concentration (4 mg L-1), achieving removal of 91 % for E3 and 100 % for E2 and EE2.
机译:污水中微拷贝体的存在已经广为人知,以及由天然和合成激素引起的效果。因此,需要施加处理以将它们从水系统中除去,例如先进的氧化方法(AOP)和膜分离过程,其可以氧化和去除高浓度的有机化合物。该工作研究了从生物加权污水中去过了17个β-雌二醇(E2),17个α-乙烯烯醇二醇(EE2)和雌醇(E3)。反渗透过程以三个回收率(50,60和70%)进行。对于E2和EE2,去除受恢复的影响。 RO的最佳结果如下:60%回收率的E2化合物除去89%,EE2复合除去50%回收率为57%。 RO恢复不会影响E3删除。结论是,评估雌激素与膜之间的相互作用是激素分离的主要因素。使用H2O2 / UV的AOP治疗是在两个采样运动中进行的。首先,我们评估了在反应中为18.8mg L-1的UV剂量(24.48,73.44,12.4,12.4和244.8kJ m(-2))的变化。 EE2表现出相当多的去除(约70%)。为了优化结果,应用了实验设计。用较高的UV剂量(122.4kJ m(-2))和低温H 2 O 2浓度(4mg L-1)获得最佳结果,实现E2和EE2的E3和100%的去除91%。

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