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Accelerated oxidation of VOCs via vacuum ultraviolet photolysis coupled with wet scrubbing process
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作者 Ruijie Xie Dongxue Lei +5 位作者 Xiaowen Xie ziyi suo Dennis Y.C.Leung Jianping Cao Fang Ruimei Haibao Huang 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2023年第12期55-64,共10页
Vacuum ultraviolet(VUV) photolysis is a facile method for volatile organic compounds(VOCs) elimination, but is greatly limited by the relatively low removal efficiency and the possible secondary pollution. To overcome... Vacuum ultraviolet(VUV) photolysis is a facile method for volatile organic compounds(VOCs) elimination, but is greatly limited by the relatively low removal efficiency and the possible secondary pollution. To overcome above drawbacks, we developed an efficient method for VOCs elimination via VUV photolysis coupled with wet scrubbing process. In this coupled process, volatile toluene, a representative of VOCs, was oxidized by the gas-phase VUV photolysis, and then scrubbed into water for further oxidation by the liquid-phase VUV photolysis. More than 96% of toluene was efficiently removed by this coupled process, which was 2 times higher than that in the gas-phase VUV photolysis. This improvement was attributed to the synergistic effect between gas-phase and liquid-phase VUV photolysis. O3and HO·are the predomination reactive species for the toluene degradation in this coupled process, and the generation of O3in gas-phase VUV photolysis can efficiently enhance the HO·production in liquid-phase VUV photolysis. The result from in-situ proton transfer reaction ionization with mass analyzer(PTR-MS) further suggested that most intermediates were trapped by the wet scrubbing process and efficiently oxidized by the liquid-phase VUV photolysis, showing a high performance for controlling the secondary pollution. Furthermore, the result of stability test and the reuse of solution demonstrated that this coupled process has a highly stable and sustainable performance for toluene degradation. This study presents an environmentally benign and highly efficient VUV photolysis for gaseous VOCs removal in the wet scrubbing process. 展开更多
关键词 Volatile organic compounds(VOCs) Vacuum ultraviolet(VUV)photolysis Wet scrubbing process Toluene degradation Intermediates analysis
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中国海洋水色业务卫星揭示我国近海溢油污染状况 被引量:2
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作者 刘建强 陆应诚 +2 位作者 丁静 锁子易 梁超 《科学通报》 EI CAS CSCD 北大核心 2022年第33期3997-4008,共12页
溢油是海洋环境监测的重点对象.光学遥感能为海洋溢油的精细化监测提供技术支持,实现不同溢油污染类型的识别分类与量化估算.开展海洋溢油光学遥感业务化应用,光学载荷不仅要有高空间分辨率、高信噪比、大辐射动态范围等技术特点,还要... 溢油是海洋环境监测的重点对象.光学遥感能为海洋溢油的精细化监测提供技术支持,实现不同溢油污染类型的识别分类与量化估算.开展海洋溢油光学遥感业务化应用,光学载荷不仅要有高空间分辨率、高信噪比、大辐射动态范围等技术特点,还要满足大幅宽、高时间分辨率等要求.中国自主研发的海洋水色业务卫星——海洋一号C/D(Haiyang-1C/D, HY-1C/D)卫星,搭载有适宜于溢油监测的海岸带成像仪(coastal zone imager, CZI),双星组网后能为中国近海环境监测提供3 d两次的观测数据,具备开展溢油业务化监测应用的能力.本研究基于HY-1C/D卫星CZI载荷近3年观测数据,利用研发的国产海洋水色业务卫星溢油监测算法,对中国近海及相关海域开展溢油光学遥感监测与分析. HY-1C/D卫星CZI数据能有效识别不同耀光反射条件下的非乳化油膜与乳化油等溢油污染类型,为溢油类型鉴别提供新的参考.研究结果阐明了中国近海溢油污染状况,近3年来共监测到溢油事件57次,渤海、黄海、南海是溢油发生的主要海域,部分地区近海环境监管压力较大. HY-1C/D卫星对中国近海溢油具有大范围、高频次、动态监测能力,能识别不同溢油污染类型及面积,有利于溢油污染类型判定与溢油量估算,提高了海洋溢油监测精度,为中国海洋环境监测提供可靠的卫星数据支持. 展开更多
关键词 海洋一号C/D卫星 海岸带成像仪 中国近海 海洋溢油 光学遥感
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