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The removal of Rhodamine B by H2O2 or ClO2 combined with hydrodynamic cavitation

机译:通过H 2 O 2或ClO2除去罗丹明B和流体动力空化

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Rhodamine B (RhB), widely used as an industrial dye, is a toxic organic that is hazardous to human health and can cause water pollution. In this study, the removal rate of RhB was investigated by the following methods: hydrodynamic cavitation (HC) operated individually, and HC combined with oxidants H2O2 or ClO2. The effect of different operating parameters including pressure (2-6 bar) and initial pH (2-8) on the extent of degradation was investigated using an orifice plate as the cavitation device to achieve maximum removal of RhB. Under the parameters of HC, the effect of different loadings was investigated: H2O2 (n(RhB):n(H2O2) was varied from 1:17.60 to 1:211.28) and ClO2 (n(RhB):n(ClO2) was varied from 1:8.87 to 1:177.53). A combination of cavitation and H2O2 or ClO2 resulted in degradations of 80.6% and 95.3%. The results indicated that the combination of HC and oxidants was better than the individual HC process for the degradation of RhB. When combining HC with H2O2 or ClO2, the synergistic coefficients of 62.54 and 74.79 were obtained. The combination of HC and ClO2 was proven to be more effective for the removal of RhB compared to HC alone and the hybrid process of HC and H2O2.
机译:罗丹明B(RHB)广泛用作工业染料,是一种对人体健康有害的有毒有机物,可引起水污染。在该研究中,通过以下方法研究了RHB的去除率:单独操作的流体动力空化(HC),HC与氧化剂H2O2或CLO2合并。使用孔板作为空化装置研究了不同操作参数和初始pH(2-8)对降解程度的初始pH(2-8)的影响,以实现最大地去除RHB。在HC的参数下,研究了不同载荷的效果:H 2 O 2(N(RHB):N(H 2 O 2)在1:17.60至1:211.28中变化,CLO2(n(rhb):n(clo2)变化从1:8.87到1:177.53)。空化和H 2 O 2或ClO2的组合导致降解80.6%和95.3%。结果表明,HC和氧化剂的组合优于rHB降解的单个HC过程。将HC与H 2 O 2或ClO2组合时,获得62.54和74.79的协同系数。将HC和ClO2的组合被证明与单独的HC和HC和H 2 O 2的杂化过程相比,更有效地除去RHB。

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