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A new technique for non-catalytic after-treatment system of diesel particulates

机译:柴油颗粒非催化处理系统的一种新技术

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Although diesel vehicles have features of low fuel consumption and high durability, stricter diesel emission standards have been set, and the after-treatment of exhaust gas is needed. In this study, as a potential catalyst-free continuous regeneration, the after-treatment system using a carbon-fiber filter was investigated, where diesel particulates are burned by electric heating. In experiments, the vehicle test was conducted to monitor the soot volume fraction and particle size in exhaust gas, in order to evaluate the proposed system. Additionally, the numerical simulation was performed to investigate the deposition and oxidation processes of soot particles in the system. Based on observation of the filter surface, soot adheres to the carbon-fibers, more than doubling their diameter. By equipping the filter, the backpressure increases to promote the soot production in exhaust gas. The backpressure with the filter is the same as that with the packing whose orifice diameter is 26 mm. When the performance of the filter was evaluated under the same pressure condition, the soot emission was greatly reduced. Since it is confirmed that the primary soot particle size in exhaust gas decreases by soot oxidation, most of soot particles are trapped and burned through the after-treatment system. Based on the simulation, soot oxidation is promoted by increasing the filter temperature. Continuous regeneration could be achieved by setting the filter temperature at 800 degrees centigrade or higher.
机译:尽管柴油车具有低燃料消耗的特征和高耐久性,但已经设定了更严格的柴油发射标准,并且需要废气后处理。在该研究中,作为潜在的无催化剂连续再生,研究了使用碳纤维过滤器的后处理系统,其中柴油颗粒通过电加热燃烧。在实验中,进行车辆测试以监测废气中的烟灰体积分数和粒度,以评估所提出的系统。另外,进行数值模拟以研究系统中烟灰颗粒的沉积和氧化过程。基于对过滤表面的观察,烟灰粘附到碳纤维上,比其直径倍增。通过装配过滤器,背压增加以促进废气中的烟灰产生。与过滤器的背压与孔口直径为26mm的填料相同。当在相同的压力条件下评估过滤器的性能时,烟灰发射大大降低。由于证实,通过烟灰氧化降低了废气中的初级烟灰粒度,因此大多数烟灰颗粒被捕获并通过后处理系统燃烧。基于模拟,通过增加滤光温度来促进烟灰氧化。通过在800摄氏度或更高的时间内设定滤光温度,可以实现连续再生。

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