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The impact of fuel sulfur level on FTP emissions - Effect of PGM catalyst type

机译:燃料硫水平对FTP排放的影响 - PGM催化剂类型的影响

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With the advent of stricter vehicle emission standards, the improvement of three way catalyst performance and durability remains a pressing issue. A critical consideration in catalyst design is the potential for variations in fuel sulfur levels to have a significant impact on the ability to reach TLEV, LEV, and ULEV emission levels. As a result, a better understanding of the role of PGM composition in the interplay between thermal durability and sulfur tolerance is required. Three way catalysts representative of standard Pd-only, Pd/Rh and Pt/Rh formulations were studied over a variety of aging and evaluation conditions. The parameters investigated included aging temperature, air fuel ratio and sulfur level. Evaluations were performed on a 1994 TLEV vehicle using different sulfur level fuels. The effect of PGM loading was also included within the study. As expected, PD-only catalysts generally had superior hydrocarbon performance under all conditions, however significant deterioration in carbon monoxide and nitric oxide performance was noted in the presence of high sulfur level fuels. In particular, low temperature aging coupled with high sulfur levels produced the poorest performance from Pd-only catalysts. Under these conditions, however, the Rh containing catalysts exhibited far superior nitric oxide and carbon monoxide performance. The loading study revealed a significant effect on nitric oxide conversion, notably a different relationship was observed when comparing the Pd-only and Rh containing catalysts. The PD-only catalyst exhibited a larger conversion efficiency improvement from relatively low to medium loading. Several sulfur recovery experiments were performed and conditions under which catalyst activity is regained were determined. For Pt/Rh, and Pd/Rh catalysts, the deactivation of the nitric oxide and carbon monoxide performance was partially reversible.
机译:随着更严格的车辆排放标准的出现,提高三种催化剂性能和耐用性仍然是一个压迫问题。催化剂设计中的批判性考虑是燃料硫水平变化的可能性对达到TLEV,LEV和ULEV排放水平的能力产生重大影响。结果,需要更好地理解PGM组成在热耐久性和硫耐受之间的相互作用中的作用。在各种老化和评估条件下研究了仅代表标准PD,PD / RH和Pt / Rh配方的三种催化剂。参数研究包括老化温度,空燃比和硫水平。使用不同的硫含量燃料对1994年TLEV载体进行评估。 PGM载荷的效果也包括在研究中。如所预期的,Pd-ock催化剂通常在所有条件下具有优异的烃性能,然而,在高硫水平燃料存在下,注意到一氧化碳和一氧化氮性能的显着劣化。特别地,低温老化与高硫水平相结合,产生了仅来自PD催化剂的最糟糕的性能。然而,在这些条件下,RH的催化剂表现出远远优异的一氧化氮和一氧化碳性能。加载研究揭示了对一氧化氮转化的显着影响,特别是当比较仅PD和RH的含氢催化剂时观察到不同的关系。仅PD催化剂从相对较低到中等负载均有更大的转化效率改善。进行了几种硫恢复实验,并测定催化剂活性的条件。对于Pt / RH和Pd / RH催化剂,一氧化氮和一氧化碳性能的失活部分是可逆的。

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