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Analysis of the microstructure and elemental occurrence state of residual ash-PM following DPF regeneration by injecting oxygen into non-thermal plasma

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【作者】 施蕴曦卢奕睿蔡忆昔何勇周银崔应欣孙浩铭

【Author】 Yunxi SHI;Yirui LU;Yixi CAI;Yong HE;Yin ZHOU;Yingxin CUI;Haoming SUN;School of Automotive and Traffic Engineering,Jiangsu University;Vehicle Measurement,Control and Safety Key Laboratory of Sichuan Province,School of Automobile and Transportation,Xihua University;

【机构】 School of Automotive and Traffic Engineering,Jiangsu UniversityVehicle Measurement,Control and Safety Key Laboratory of Sichuan Province,School of Automobile and Transportation,Xihua University

【摘要】 Particulate matter (PM) capture tests were carried out on clean diesel particulate filters (DPFs)under different loads (25%,50%,75%and 100%).DPFs were regenerated by a non-thermal plasma (NTP) injection device.Raman spectroscopy and x-ray photoelectron spectroscopy were used to investigate changes in the microstructure and element occurrence state of the sediment in DPF channel before and after regeneration.The order of the PM samples decreased before NTP treatment as the load increased;the amorphous carbon content was high,and the oxidationactivity was higher.After NTP treatment,the carbon atoms at the edge of the microcrystalline structure in the ash-PM samples were oxidized,and the structure was reorganized;in addition,the amorphous carbon content decreased,and the structure was more diversified.Before NTP,the C element of PM samples was the main component,and the content of the O element was relatively low.The C element occurred in the form of C–C,C–OH,and O–C=O functional groups,and O atoms were mainly combined with C–O.After NTP,the content of Na,P,S,Ca,and other inorganic elements in ash-PM samples was prominent because C atoms were removed by NTP active substances.There were two forms of S element occurrence (SO42-and SO32-);the proportion of SO42-was approximately 40%,and the proportion of SO32-was approximately60%.Study of the microstructure and element occurrence of the residues in the DPF channels improved our understanding of the mechanism of the low-temperature regeneration of DPFfrom NTP.

【Abstract】 Particulate matter (PM) capture tests were carried out on clean diesel particulate filters (DPFs)under different loads (25%,50%,75%and 100%).DPFs were regenerated by a non-thermal plasma (NTP) injection device.Raman spectroscopy and x-ray photoelectron spectroscopy were used to investigate changes in the microstructure and element occurrence state of the sediment in DPF channel before and after regeneration.The order of the PM samples decreased before NTP treatment as the load increased;the amorphous carbon content was high,and the oxidationactivity was higher.After NTP treatment,the carbon atoms at the edge of the microcrystalline structure in the ash-PM samples were oxidized,and the structure was reorganized;in addition,the amorphous carbon content decreased,and the structure was more diversified.Before NTP,the C element of PM samples was the main component,and the content of the O element was relatively low.The C element occurred in the form of C–C,C–OH,and O–C=O functional groups,and O atoms were mainly combined with C–O.After NTP,the content of Na,P,S,Ca,and other inorganic elements in ash-PM samples was prominent because C atoms were removed by NTP active substances.There were two forms of S element occurrence (SO42-and SO32-);the proportion of SO42-was approximately 40%,and the proportion of SO32-was approximately60%.Study of the microstructure and element occurrence of the residues in the DPF channels improved our understanding of the mechanism of the low-temperature regeneration of DPFfrom NTP.

【基金】 supported by National Natural Science Foundation of China (No. 51806085);China Postdoctoral Science Foundation (No. 2018M642175);Jiangsu Planned Projects for Postdoctoral Research Fund (No. 2018K101C);Open Research Subject of Key Laboratory of automotive measurement, control and safety (Xihua University) (No. QCCK2021-007);Graduate Student Innovation Fund Project of Jiangsu Province (No. KYCX21_3354)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2021年09期
  • 【分类号】TK421.5
  • 【下载频次】40
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