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Catalytic effect of activated carbon and activated carbon fiber in non-equilibrium plasma-based water treatment

机译:活性炭和活性炭纤维在非平衡等离子体基水处理中的催化作用

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Catalysis and regeneration efficiency of granular activated carbon (GAC) and activated carbon fiber (ACF) were investigated in a non-equilibrium plasma water treatment reactor with a combination of pulsed streamer discharge and GAC or ACF. The experimental results show that the degradation efficiency of methyl orange (MO) by the combined treatment can increase 22% (for GAC) and 24% (for ACF) respectively compared to pulsed discharge treatment alone, indicating that the combined treatment has a synergetic effect. The MO degradation efficiency by the combined treatment with pulsed discharge and saturated GAC or ACF can increase 12% and 17% respectively compared to pulsed discharge treatment alone. Both GAC and ACF show catalysis and the catalysis of ACF is prominent. Meanwhile, the regeneration of GAC and ACF are realized in this process. When H2O2 is introduced into the system, the utilization efficiency of ozone and ultraviolet light is improved and the regeneration efficiency of GAC and ACF is also increased.
机译:在具有脉冲流光放电和GAC或ACF组合的非平衡等离子体水处理反应器中,研究了颗粒活性炭(GAC)和活性炭纤维(ACF)的催化和再生效率。实验结果表明,与单独的脉冲放电处理相比,联合处理对甲基橙(MO)的降解效率分别提高了22%(对于GAC)和24%(对于ACF),表明该联合处理具有协同作用。与单独的脉冲放电处理相比,通过脉冲放电与饱和GAC或ACF的组合处理,MO降解效率可以分别提高12%和17%。 GAC和ACF均显示出催化作用,而ACF的催化作用则很突出。同时,在此过程中实现了GAC和ACF的再生。将H2O2引入系统后,臭​​氧和紫外线的利用效率得到提高,GAC和ACF的再生效率也得到提高。

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