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首页> 外文期刊>Journal of Hazardous Materials >Application of a ceramic membrane contacting process for ozone and peroxone treatment of micropollutant contaminated surface water
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Application of a ceramic membrane contacting process for ozone and peroxone treatment of micropollutant contaminated surface water

机译:陶瓷膜接触法在臭氧和过氧松处理微污染地表水中的应用

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This study investigates the performance of membrane-based ozonation and peroxone processes, regarding the transformation of carbamazepine (CBZ), benzotriazole (BZT), p-chlorobenzoic acid (pCBA) and atrazine (ATZ) in natural surface waters, as well as the formation of bromates. Ozonation, performed with the use of ceramic membrane contactor, was able to diminish CBZ concentration below 0.1 μM at 0.4 mg O3/mg DOC, i.e. presenting >90% removal rate, whereas the transformation of BZT, pCBA and ATZ was not exceeded 70%, 57% and 49%, respectively, under the same experimental conditions. The addition of H2O2reduced the removal efficiency of CBZ, since up to -8% transformation values were observed at 0.1 mg O3/mg DOC. In contrast, the transformation of ozone-resistant compounds pCBA and ATZ was slightly improved by approximately 5–10%, at 0.8 mg O3/mg DOC. Membrane-based oxidative treatment of surface water resulted to high bromate concentrations (49 μg/L and 28 μg/L for ozone and peroxone process, respectively, at 0.8 mg O3/mg DOC). The results obtained by using the membrane contactor were also compared with the corresponding from conventional batch experiments. These results suggest that the implementation of membrane contactors with the highest possible inner surface per volume along with the use of low ozone gas concentration are required to improve the removal of micropollutants and diminish bromate formation.
机译:这项研究调查了在自然地表水中卡马西平(CBZ),苯并三唑(BZT),对氯苯甲酸(pCBA)和阿特拉津(ATZ)转化过程中基于膜的臭氧化和过氧化物处理的性能溴酸盐。使用陶瓷膜接触器进行的臭氧化处理能够在0.4μmgO3 / mg DOC下将CBZ浓度降低至0.1μm以下,即去除率> 90%,而BZT,pCBA和ATZ的转化率不超过70%在相同的实验条件下,分别为57%和49%。加入H2O2降低了CBZ的去除效率,因为在0.1 mg O3 / mg DOC下观察到高达8%的转化值。相比之下,抗臭氧化合物pCBA和ATZ的转化略微提高了约5-10%,为0.8μmgO3 / mg DOC。以膜为基础的地表水氧化处理导致溴酸盐浓度较高(臭氧和过氧化物处理过程的浓度分别为0.8μmgO3 / mg DOC,分别为49μg/ L和28μg/ L)。通过使用膜接触器获得的结果也与常规分批实验的结果进行了比较。这些结果表明,需要采用具有尽可能高的内表面/体积的膜接触器,以及使用低浓度的臭氧气体来改善微污染物的去除并减少溴酸盐的形成。

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