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Wet scrubber coupled with UV/PMS process for efficient removal of gaseous VOCs: Roles of sulfate and hydroxyl radicals

机译:湿式洗涤器与UV / PMS工艺相结合,以有效去除气态VOCS:硫酸盐和羟基的作用

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In this study, wet scrubber coupled with UV/peroxymonosulfate (PMS) was used as a semi-batch process for' removing gaseous VOCs. Both ethyl acetate and toluene could be removed efficiently using this coupled process due to the generation of SO4'_ and HO'. The mass-transfer coefficients in this coupled process were larger than in wet scrubbing only process. The roles of SO4' ~ and HO' were investigated, in which SO4'_ acted as the predominant radical for toluene degradation while HO' was major for ethyl acetate. This could be further, confirmed by simultaneous degradation of ethyl and toluene. Moreover, the reaction solution reused at least four, times still showed excellent performance for VOCs removal via re-adding PMS. A possible mechanism on toluene degradation was proposed based on the evolutions of intermediates during the process. This study clarified the roles of non-selective radical (i.e. HO~-) and selective radical (i.e. SO4' ~ and CI) in the removal of a continuous-. flow gaseous VOCs by this coupled process.
机译:在该研究中,将湿式洗涤器与UV /过氧键硫酸盐(PMS)偶联用作“去除气态VOCs的半批量处理。由于SO4'_和HO'的产生,可以使用该耦合过程有效地除去乙酸乙酯和甲苯。该偶联过程中的传质系数大于仅湿擦洗过程。研究了SO4'〜和HO'的作用,其中SO4'_作为甲苯降解的主要自由基,而HO'是乙酸乙酯的主要。通过同时降解乙基和甲苯,可以进一步证实。此外,反应溶液重复使用至少四次,次数仍然显示出通过重新添加PMS的VOCS去除的优异性能。基于该方法的中间体的演进,提出了一种可能的甲苯降解机制。本研究阐明了非选择性自由基(即HO〜 - )和选择性自由基(即SO4'〜和CI)的作用在去除连续的 - 。通过该耦合过程流动气态VOC。

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