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Preliminary study on the performance of biomorphic silicon carbide as substrate for diesel particulate filters

机译:生物质碳化硅作为柴油机微粒捕集器基材的性能初步研究

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This paper presents the results of a preliminary experimental study to assess the performance of biomorphic silicon carbide when used for the abatement of soot particles in the exhaust of Diesel engines. Given its optimal thermal and mechanical properties, silicon carbide is one of the most popular substrates in commercial diesel particulate filters. Biomorphic silicon carbide is known for having, be-sides, a hierarchical porous microstructure and the possibility of tailoring that microstructure through the selection of a suitable wood precursor. An experimental rig was designed and built to be integrated within an engine test bench that allowed to characterizing small lab-scale biomorphic silicon carbide filter samples. A particle counter was used to measure the particles distribution before and after the samples, while a differential pressure sensor was used to measure their pressure drop during the soot loading process. The experimental campaign yielded promising results: for the flow rate conditions that the measuring devices imposed (1 litre per minute; space velocity = 42,000 L/h), the samples showed initial efficiencies above 80%, pressure drops below 20 mbar, and a low increase in the pressure drop with the soot load which allows to reach almost 100% efficiency with an increase in pressure drop lower than 15%, when the soot load is still less than 0.01 g/L. It shows the potential of this material and the interest for advancing in more complex diesel particle filter designs based on the results of this work.
机译:本文介绍了初步实验研究的结果,以评估生物形态碳化硅用于减少柴油机排气中烟尘颗粒的性能。鉴于其最佳的热和机械性能,碳化硅是商用柴油机微粒过滤器中最受欢迎的基材之一。众所周知,生物形态碳化硅具有分级的多孔微结构,并且可以通过选择合适的木材前体来调整该微结构。设计并建造了一个试验台,以集成到发动机试验台中,从而可以表征小型实验室规模的生物形碳化硅过滤器样品。颗粒计数器用于测量样品前后的颗粒分布,而压差传感器则用于测量烟loading加载过程中的压降。实验活动取得了令人鼓舞的结果:对于测量设备施加的流速条件(每分钟1升;空速= 42,000 L / h),样品的初始效率高于80%,压降低于20 mbar,压力较低当烟灰负荷仍小于0.01 g / L时,烟灰负荷的压降增加,效率几乎达到100%,而压降增加低于15%。它显示了这种材料的潜力,并基于这项工作的结果显示出对推进更复杂的柴油颗粒过滤器设计的兴趣。

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