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Ozone removal by diesel particulate matter

机译:柴油颗粒物去除臭氧

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The most significant removal mechanisms for tropospheric ozone (O_3) include dry deposition, photolysis, and photochemical reactions. This study examines another mechanism potentially important in urban areas: sorption and removal on diesel particulate matter (DPM). Tests were performed to determine O_3 breakthrough and the amount of O_3 removed by the DPM generated by a heavy-duty diesel engine. Teflon filters loaded with 0.7-1.8 mg of DPM were exposed to a test atmosphere of humidified and ozonated air designed to represent realistic ambient air conditions. In addition, soot samples with the organic fraction removed were tested to determine whether the organic or elemental fraction contributed to O_3 removal. For comparison, activated carbon (AC) samples were also tested. The DPM-loaded filters removed 5.6±1.8 wt% of O_3. Considerably more ozone, 31 ±4wt %, was removed by the DPM after removal of its soluble organic fraction. Removal capacities of DPM were small relative to AC, which removed >38±3 wt% of O_3. Of the Lagergren pseudo-first-order, pseudo-second-order, Elovich, and Ritchie chemisorption models tested, the Ritchie model provided the best fit to the breakthrough data. Preliminary estimates drawn from laboratory results suggest that diesel soot present at typical urban levels will remove only a small portion of O_3 from urban or tropospheric air. In air cleaning applications, DPM-loaded filters are also expected to remove only a small portion of indoor O_3.
机译:对流层臭氧(O_3)的最重要去除机制包括干法沉积,光解和光化学反应。这项研究研究了在城市地区潜在重要的另一种机制:柴油颗粒物(DPM)的吸附和去除。进行了测试以确定O_3突破和由重型柴油机产生的DPM去除的O_3量。将装有0.7-1.8 mg DPM的聚四氟乙烯过滤器暴露于设计为代表实际环境空气条件的潮湿和臭氧化空气的测试气氛中。另外,测试去除了有机部分的烟灰样品,以确定有机或元素部分是否有助于去除O_3。为了进行比较,还对活性炭(AC)样品进行了测试。装有DPM的过滤器去除了5.6±1.8 wt%的O_3。在除去其可溶性有机部分后,DPM除去了相当多的臭氧,为31±4wt%。相对于AC,DPM的去除能力很小,从而去除了> 38±3 wt%的O_3。在测试的Lagergren伪一阶,伪二阶,Elovich和Ritchie化学吸附模型中,Ritchie模型提供了最适合突破数据的模型。根据实验室结果得出的初步估计表明,典型城市水平的柴油机烟灰只能从城市或对流层空气中去除一小部分O_3。在空气净化应用中,装有DPM的过滤器也有望仅去除室内O_3的一小部分。

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