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Pilot scale degradation study of 16 selected volatile organic compounds by hydroxyl and sulfate radical based advanced oxidation processes

机译:基于羟基和硫酸根自由基的高级氧化工艺对16种挥发性有机化合物的中试降解研究

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The studies of effective technologies for complete degradation of the volatile organic compounds (VOCs), are very important due to the high biotoxicity of the VOCs which makes the biological technologies ineffective. It also increases the risk of VOCs emission instead of their treatment when using open air biological technologies. In the present study, different types of Advanced Oxidation Processes (AOPs) were investigated for the degradation of several VOCs in a model pilot scale effluent, simulating effluents from bitumen production. The goal of this paper is to reach effective VOCs and wastewater degradation to make the bitumen production a cleaner process. O-3, H2O2, O-3/H2O2 (the so called peroxone), persulfate (PS) and peroxymonosulfate (PMS) were processes chosen for this work. Heat activation enhanced the total VOCs degradation in PS and PMS technologies, which achieved higher effectiveness than H2O2. Peroxone process at 40 degrees C achieved the highest efficiency of all processes studied needing only 60 min to completely degrade all compounds without any oxidation by-products. Sulfur containing VOCs (VSCs) were completely degraded in a shorter treatment time and nitrogen containing VOCs (VNCs) needed more time of treatment in all technologies studied. The preference of the hydroxyl and sulfate radicals for degradation of oxygen containing VOCs (O-VOCs) had different behavior depending on the group of compounds and should be considered in future research for combined radical processes. (C) 2018 Elsevier Ltd. All rights reserved.
机译:由于挥发性有机化合物的高生物毒性,使生物技术无效,因此研究挥发性有机化合物(VOC)完全降解的有效技术非常重要。当使用露天生物技术时,这也增加了VOC排放的风险,而不是对其进行处理。在本研究中,对不同类型的高级氧化工艺(AOP)进行了研究,以研究模型中试规模废水中几种VOC的降解情况,模拟了沥青生产过程中的废水。本文的目的是达到有效的VOC和废水降解,使沥青生产过程更清洁。 O-3,H2O2,O-3 / H2O2(所谓的过氧化物),过硫酸盐(PS)和过氧一硫酸盐(PMS)是用于这项工作的工艺。热活化促进了PS和PMS技术中总VOC的降解,其有效性高于H2O2。在所有研究的过程中,仅需60分钟即可完全降解所有化合物而无任何氧化副产物,在40℃下的Peroxone工艺达到了最高效率。在所有研究的技术中,含硫的VOC(VSC)在较短的处理时间内即可完全降解,而含氮的VOC(VNC)需要更长的处理时间。羟基和硫酸根自由基对降解含氧VOC(O-VOCs)的偏好取决于化合物的种类而有不同的行为,应在未来的组合自由基过程研究中加以考虑。 (C)2018 Elsevier Ltd.保留所有权利。

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