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首页> 外文期刊>International Journal of Automotive Technology >Measurement of soot oxidation with No2-O2-H2O in a flow reactor simulating diesel engine DPF
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Measurement of soot oxidation with No2-O2-H2O in a flow reactor simulating diesel engine DPF

机译:模拟柴油机DPF的流动反应器中No2 -O2 -H2 O的烟尘氧化测量

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Understanding the mechanism of carbon oxidation is important for the successful modeling of diesel particulate filter regeneration. Characteristics of soot oxidation were investigated with carbon black (Printex-U). A flow reactor system that could simulate the condition of a diesel particulate filter and diesel exhaust gas was designed. Kinetic constants were derived and the reaction mechanisms were proposed using the experimental results and a simple reaction scheme, which approximated the overall oxidation process in TPO as well as CTO. From the experiments, the apparent activation energy for carbon oxidation with NO2-O2-H2O was determined to be 40±2 kJ/mol, with the first order of carbon in the range of 10~90% oxidation and a temperature range of 250~500°C. This value was exceedingly lower than the activation energy of NO2-O2 oxidation, which was 60±3 kJ/mol. When NO2 exists with O2 and H2O, the reaction rate increases in proportion to NO2. It increases nonlinearly with O2 or H2O concentration when the other two oxidants are fixed.
机译:了解碳氧化的机理对于成功地对柴油机微粒过滤器再生进行建模非常重要。用炭黑(Printex-U)研究了烟尘氧化特性。设计了一种能够模拟柴油机微粒过滤器和柴油机废气条件的流动反应器系统。通过实验结果和简单的反应方案推导了动力学常数,并提出了反应机理,该反应方案近似于TPO和CTO中的整个氧化过程。根据实验确定,用NO2 -O2 -H2 O进行碳氧化的表观活化能为40±2 kJ / mol,碳的第一阶为具有10〜90%的氧化性,温度范围为250〜500°C。该值远远低于NO2 -O2 氧化的活化能60±3 kJ / mol。当NO2 与O2 和H2 O存在时,反应速率与NO2 成正比。当其他两种氧化剂固定时,它随O2或H2O浓度非线性增加。

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