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首页> 外文期刊>Current Pollution Reports >An Experimental Investigation into the Effect of NO 2 and Temperature on the Passive Oxidation and Active Regeneration of Particulate Matter in a Diesel Particulate Filter
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An Experimental Investigation into the Effect of NO 2 and Temperature on the Passive Oxidation and Active Regeneration of Particulate Matter in a Diesel Particulate Filter

机译:NO <下标> 2 和温度对柴油颗粒过滤器中颗粒物质无源氧化和活性再生的实验研究

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Abstract The kinetics of particulate matter (PM) oxidation in a catalyzed particulate filter (CPF) under different exhaust temperature and NO~(2)conditions is presented along with a literature review of the related PM kinetic studies. The study was conducted with a 2013 heavy-duty engine that had NO~(2)levels significantly higher than engines that met the earlier 2007/2010 EPA standards, and the results show a significant increase in PM oxidation rate that is possible under normal vehicle operating conditions, to diminish the need to actively regenerate the DPF. The detailed procedure for determining the PM oxidized during the experiments is described. Two types of tests were conducted to determine the NO~(2)assisted as well as the thermal oxidation kinetics. Passive Oxidation (PO) tests were conducted for selected engine conditions that would cover the range of exhaust NO~(2)concentrations (137 to 1013?ppm tested) and temperatures (299 to 388?°C tested) during regular engine operation. Active regeneration (AR) tests were conducted to determine the thermal oxidation kinetics at exhaust temperatures from 498 to 575?°C which was induced by post fueling. The CPF was first loaded with PM to a target loading, and then the PM was oxidized under specific exhaust temperature and NO~(2)/O~(2)concentration conditions. The data obtained in this study can also be used to calibrate a CPF model. The activation energies and pre-exponential factors for NO~(2)assisted and thermal oxidation were developed from the PO and AR data. It was also found that PM reactivity during PM loading was greater than for the passive oxidation tests.
机译:摘要在不同排气温度下催化的颗粒过滤器(CPF)中颗粒物(PM)氧化的动力学以及NO〜(2)条件以及相关的PM动力学研究的文献综述。该研究是用2013年重型发动机进行的,没有〜(2)水平明显高于2007/2010 EPA标准的发动机,结果显示出在正常车辆下可能的PM氧化率显着增加经营条件,减少主动再生DPF的需要。描述了确定在实验期间氧化的PM的详细程序。进行两种类型的试验以确定辅助〜(2)辅助以及热氧化动力学。对所选择的发动机条件进行了被动氧化(PO)测试,该发动机条件将覆盖排气不〜(2)浓度(137至1013μpm,测试)和温度(在常规发动机操作期间测试的温度(299至388°C)。进行活性再生(Ar)试验以确定通过燃料后诱导的498至575℃的排气温度下的热氧化动力学。首先将CPF加载PM至靶载荷,然后PM在特定的排气温度下氧化,NO〜(2)/ O〜(2)浓度条件下氧化。本研究中获得的数据也可用于校准CPF模型。从PO和AR数据中开发了NO〜(2)辅助和热氧化的激活能量和预指数因素。还发现PM负载期间的PM反应性大于被动氧化试验。

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