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Inhibition effect of chlorine ion on hydroxyl radical generation in UV-H2O2 process

机译:氯离子对UV-H2O2工艺中羟基自由基产生的抑制作用

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UV-H2O2 process is widely used as an advanced oxidation process (AOP) for the treatment of chlorine volatile organic compounds (CVOCs) such as dichloromethane (DCM) with strong oxidativity of hydroxyl radical generated from photolysis of H2O2. The result of DCM degradation rate at different initial concentrations in UV-H2O2 processes indicated the inhibition effect of produced chlorine ions on DCM oxidation processes, because the first-order degradation rate constant increased with lower initial concentrations. A spin trapping adduct of hydroxyl radical with 5,5-dimethyl-1-pyrroline-n-oxide (DMPO) was quantified by ESR spectrometer after UV irradiation in the presence of different amounts of chlorine ion, and as a result, the chlorine ion was found to act as a hydroxyl radical scavenger, which resulted in decreasing DCM degradation rate. An UV-H2O2 reactor equipped with ion exchangers for removing chlorine ion achieved higher DCM degradation rate than that without ion exchangers. [References: 5]
机译:UV-H2O2工艺被广泛用作高级氧化工艺(AOP),用于处理氯挥发性有机化合物(CVOC),例如二氯甲烷(DCM),其具有由H2O2的光解产生的强羟基自由基。在UV-H2O2工艺中,不同初始浓度下DCM降解速率的结果表明,所产生的氯离子对DCM氧化过程具有抑制作用,因为一阶降解速率常数随较低的初始浓度而增加。在存在不同量氯离子的情况下,在紫外线照射后,通过ESR光谱仪对5,5-二甲基-1-吡咯啉-n-氧化物(DMPO)捕获的羟自由基自旋捕获加合物进行了定量,结果氯离子被发现充当羟基自由基清除剂,导致降低的DCM降解率。配备有用于除去氯离子的离子交换剂的UV-H2O2反应器比没有离子交换剂的反应器具有更高的DCM降解率。 [参考:5]

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