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Characterization of the Diesel Soot Oxidation Process through an Optimized Thermogravimetric Method

机译:优化热重法表征柴油机烟So氧化过程

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摘要

A thermogravimetric analyzer (TGA) was used to oxidize real diesel soot produced in a modern four-cylinder, turbo-charged, diesel engine equipped with a common rail injection system. In the first part of the study, a large amount of soot produced with a variety of diesel fuels of current and future interest and in typical engine modes was collected. A thorough test matrix was designed and executed in the TGA to develop an optimized oxidation method, which allows for the determination of oxidation profiles, characteristic temperatures, and Arrhenius kinetic parameters. Such parameters are critical for modeling diesel filter regeneration and designing more efficient regeneration techniques. A comparison of this method to others proposed in previous literature is made, and the advantages are pointed out. In the second part, diesel and biodiesel soot produced in three engine operating modes (low, medium, and high load) was evaluated with the proposed method. The results showed that the effect of the fuel on the oxidation process was more significant than that of the engine mode. Biodiesel soot* oxidation occurred at lower temperatures, proving die possibilities that this fuel offers for achieving more efficient filter regeneration. Although differences in the activation energy of diesel and biodiesel soot were not large, the oxidation rates of biodiesel soot were, on average, 1 order of magnitude above those of diesel soot.
机译:使用热重分析仪(TGA)氧化配备了共轨喷射系统的现代四缸涡轮增压柴油发动机中产生的真实柴油机烟灰。在研究的第一部分中,收集了使用当前和将来感兴趣的各种柴油燃料以及典型发动机模式产生的大量烟灰。在TGA中设计并执行了全面的测试矩阵,以开发一种优化的氧化方法,该方法可以确定氧化曲线,特征温度和Arrhenius动力学参数。这些参数对于建模柴油滤清器再生和设计更有效的再生技术至关重要。将该方法与先前文献中提出的其他方法进行了比较,并指出了其优点。在第二部分中,使用提出的方法评估了在三种发动机工作模式(低,中和高负荷)下产生的柴油和生物柴油烟灰。结果表明,燃料对氧化过程的影响比发动机模式更为显着。生物柴油烟ot *氧化发生在较低的温度下,证明这种燃料为实现更有效的过滤器再生提供了可能性。尽管柴油和生物柴油烟灰的活化能差异不大,但是生物柴油烟灰的氧化速率平均比柴油烟灰的氧化速率高1个数量级。

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