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DOC+DPF系统对柴油机污染物排放特性的影响
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作者 李顺利 蔡忆昔 +2 位作者 施蕴曦 卢奕睿 朱衎 《江苏大学学报(自然科学版)》 CAS 北大核心 2024年第1期16-23,共8页
对装有氧化催化器(diesel oxidation catalyst,DOC)和颗粒捕集器(diesel particulate filter,DPF)后处理系统的柴油机进行台架试验,利用烟气分析仪(Testo 350XL)和发动机废气排放颗粒物粒径谱仪(TSI EEPS 3090)研究不同负荷下柴油机原机... 对装有氧化催化器(diesel oxidation catalyst,DOC)和颗粒捕集器(diesel particulate filter,DPF)后处理系统的柴油机进行台架试验,利用烟气分析仪(Testo 350XL)和发动机废气排放颗粒物粒径谱仪(TSI EEPS 3090)研究不同负荷下柴油机原机、DOC后和DPF后排气中氮氧化物(NO_(x))和颗粒物(particulate matter,PM)的变化规律.结果表明:负荷大于50.0%时,DOC后的NO_(2)体积分数φ(NO_(2))显著增加,柴油机原机氮氧化物中NO_(2)体积分数φ(NO_(2)/NO_(x))随负荷增加而减小,DOC后和DPF后的φ(NO_(2))、φ(NO_(2)/NO_(x))随负荷增加先减小、后增大;柴油机原机PM排放取决于柴油机的运行工况,不同负荷下DOC的PM去除率为15%~30%,50.0%负荷下DOC的PM去除率最高,为26%;DPF的PM去除率超过90%,经过DPF后核态颗粒体积分数明显增加,聚集态颗粒体积分数明显减小. 展开更多
关键词 柴油机 氧化催化器 颗粒捕集器 颗粒物 排放
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NTP再生DPF孔道内沉积颗粒物的理化特性 被引量:1
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作者 卢奕睿 施蕴曦 +3 位作者 蔡忆昔 朱衎 何勇 周银 《内燃机学报》 EI CAS CSCD 北大核心 2023年第4期307-314,共8页
利用低温等离子体(NTP)喷射系统对已捕集颗粒物(PM)的柴油机颗粒捕集器(DPF)进行了低温(100℃)再生试验,并对DPF孔道内不同再生阶段的颗粒沉积物取样分析,通过热重分析仪(TGA)、透射电子显微镜(TEM)及拉曼光谱分析仪探究了DPF孔道内颗... 利用低温等离子体(NTP)喷射系统对已捕集颗粒物(PM)的柴油机颗粒捕集器(DPF)进行了低温(100℃)再生试验,并对DPF孔道内不同再生阶段的颗粒沉积物取样分析,通过热重分析仪(TGA)、透射电子显微镜(TEM)及拉曼光谱分析仪探究了DPF孔道内颗粒沉积物的氧化特性、纳米结构及石墨化程度的理化特性变化规律.结果表明:随着NTP再生DPF阶段的推进,DPF孔道内颗粒沉积物中元素碳(EC)组分的最大氧化速率温度(T_(max))和燃尽温度(T_(e))均明显降低.颗粒物团絮结构中较为薄弱的部分在NTP氧化作用下先断裂,分解成链状结构;初级碳颗粒的平均微晶长度减小,平均微晶层面间距增大.由于NTP活性物质O不断键入PM中,在PM微晶边缘处生成新的含氧官能团,使得PM样品的无序程度及无定型碳含量增加,PM的氧化活性提高. 展开更多
关键词 柴油机颗粒捕集器 低温等离子体 再生 颗粒物
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Experimental study on the parameter optimization and application of a packed-bed dielectric barrier discharge reactor in diesel particulate filter regeneration 被引量:2
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作者 施蕴曦 卢奕睿 +4 位作者 蔡忆昔 何勇 周银 陈祎 邱华荣 《Plasma Science and Technology》 SCIE EI CAS CSCD 2021年第11期128-138,共11页
To compensate for the shortcomings of the thermal and catalytic regeneration of the diesel particulate filter(DPF),a self-designed packed-bed dielectric barrier discharge(DBD)reactor for DPF regeneration was developed... To compensate for the shortcomings of the thermal and catalytic regeneration of the diesel particulate filter(DPF),a self-designed packed-bed dielectric barrier discharge(DBD)reactor for DPF regeneration was developed.The DBD reactor with the main active substance of nonthermal plasma(NTP)as the target parameter was optimized by adjusting the feed gas,packing particles(material or size),and cooling water temperature.Moreover,a set of optimal working parameters(gas source,O_2;packing particles,1.2–1.4 mm ZrO_(2);and cooling water temperature,20℃)was selected to evaluate the effect of different O_(3) concentrations on DPF regeneration.The research results showed that selecting packing particles with high dielectric constant and large particles,as well as reducing the cooling water temperature,with oxygen as the feed gas,contributed to an increase in O_(3) concentration.During DPF regeneration,the following changes were observed:the power of the NTP reactor decreased to lower than 100 W,the O_(3) concentration increased from 15 g m^(-3) to 45 g m^(-3),the CO and CO_2 volume fractions of the particulate matter decomposition products increased,and the peak regeneration temperature increased to 173.4℃.The peak temperature arrival time was 60 min earlier,indicating that the regeneration rate of DPF increased with the increase in O_(3) concentration.However,the O_(3) utilization rate(the amount of carbon deposit removed per unit volume O_(3))initially increased and then decreased;when the O_(3) concentration was set to 25 g m^(-3),the highest O_(3) utilization rate was reached.The packed-bed DBD technology contributed to the increase in the concentration of NTP active substances and the regeneration efficiency of DPF.It provides a theoretical and experimental basis for high-efficiency regeneration of DPF at low temperatures(<200℃). 展开更多
关键词 dielectric barrier discharge packing particles OZONE diesel particulate filter nonthermal plasma
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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 被引量:1
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作者 施蕴曦 卢奕睿 +4 位作者 蔡忆昔 何勇 周银 崔应欣 孙浩铭 《Plasma Science and Technology》 SCIE EI CAS CSCD 2021年第9期163-175,共13页
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 spectro... 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. 展开更多
关键词 diesel particulate filter REGENERATION non-thermal plasma ash-PM MICROSTRUCTURE occurrence state
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Effects of packing particles on the partial discharge behavior and the electrical characterization of oxygen PBRs 被引量:1
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作者 倪思佳 蔡忆昔 +3 位作者 施蕴曦 王为凯 赵楠 卢奕睿 《Plasma Science and Technology》 SCIE EI CAS CSCD 2021年第1期81-90,共10页
Packed-bed reactors(PBRs)hold great promise for environmental applications,but a deeper understanding of the behavior of plasma discharge within PBRs is required.To this end,a partial-discharge alternative equivalent ... Packed-bed reactors(PBRs)hold great promise for environmental applications,but a deeper understanding of the behavior of plasma discharge within PBRs is required.To this end,a partial-discharge alternative equivalent circuit for PBRs was established in this work.Dielectric particles(glass beads or glass sand)were used to place focus on the effects of the particle size and shape on the partial discharge behavior of the oxygen PBRs.Some electrical characterizations were explored(e.g.the effective dielectric capacitance,partial discharge coefficient,and corrected burning voltage)that may differ from long-standing interpretations.The findings indicate that the suppressive effect of surface discharge on filament discharge is stronger with the decrease of the particle size.For partial discharge,the effective dielectric capacitance is always less than the dielectric capacitance.The corrected burning voltage and partial discharge tendency increase with the decrease of the particle size.As compared to an empty reactor,the average electric field in the PBR was found to be improved by 3–4 times,and the ozone energy efficiency and production were promoted by more than 20%and 15%,respectively.The plasma processing capacity can therefore be improved by choosing a relatively large size or a complex,irregularly-shaped packing material that is suitable for the discharge gap. 展开更多
关键词 packed-bed reactor alternative equivalent circuit partial discharge packing particles OZONE
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