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NOx Adsorber Catalysts with Improved Desulfation Properties and Enhanced Low-Temperature Activity

机译:具有改善的脱硫性能和增强的低温活性的NOx吸附剂催化剂

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NOx adsorber catalyst technology has been successfully applied on diesel vehicles to enable them to satisfy stringent NOx emission regulations. One limitation of this technology is the requirement to regularly desulfate the adsorber to maintain high NOx conversion efficiency. In addition to adding significant engine and calibration complexity, these high temperature desulfation events accelerate the thermal degradation of the exhaust system components. Minimization of the severity and the frequency of the desulfation events is highly desirable. Laboratory studies to understand desulfation processes and to identify improved NOx Adsorber washcoat compositions are described. These studies led to a new generation of NOx adsorber catalysts with reduced desulfation temperatures, faster desulfation rates and enhanced low-temperature activity. The new generation of catalysts also enabled the potential for PGM thrifting, especially for applications with low engine-out NOx emissions. These PGM thrifted catalysts demonstrated excellent performance after exposure to long-term sulfation/desulfation/thermal aging cycles.
机译:NOx吸附催化剂技术已成功应用于柴油车辆,以使其满足严格的NOx排放法规。该技术的局限性之一是需要定期对吸附器进行脱硫以保持较高的NOx转化效率。这些高温脱硫事件不仅增加了发动机和校准的复杂性,还加速了排气系统组件的热降解。使脱硫事件的严重性和频率最小化是非常需要的。描述了了解脱硫过程并确定改进的NOx Adsorber修补基面涂料组成的实验室研究。这些研究导致了新一代的NOx吸附器催化剂具有更低的脱硫温度,更快的脱硫速率和更高的低温活性。新一代的催化剂还为PGM节流提供了潜力,特别是对于低发动机输出NOx排放的应用而言。这些经过PGM精制的催化剂在长期的硫酸化/脱硫/热老化循环后表现出优异的性能。

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