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Copper-Cobalt-Cerium Ternary Oxide as an Additive to a Conventional Platinum-Group-Metal Catalyst for Automotive Exhaust Catalysis

机译:铜 - 钴 - 铈三元氧化物作为常规铂族金属催化剂的添加剂,用于汽车排气催化剂

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Recently, we reported on a ternary mixed-oxide catalyst that showed low-temperature CO oxidation activity under lean exhaust conditions without inhibition by hydrocarbons such as propene. However, the hydrocarbon oxidation activity of this Cu-Co-Ce (CCC) catalyst cannot be considered as a stand-alone solution to low-temperature automotive exhaust catalysis. To achieve both low-temperature oxidation of pollutants and a reduction in the total platinum-group-metal (PGM) content, we examined a 50% physical mixture of traditional Pt/Al2O3 and our CCC catalyst in two simulated exhaust protocols. Using this physical mixture, we were able to obtain equivalent or better hydrocarbon activity than the baseline Pt/Al2O3 catalyst with half the total PGM content as well as increased sulfur tolerance for the CCC component of the mixture. Diffuse reflectance infrared Fourier transform spectroscopy data confirmed that despite exposure of sulfur-sensitive CCC to SO2, Cu+-carbonyl binding sites could still be seen if the catalyst was mixed with Pt/Al2O3.
机译:最近,我们在稀氧化物催化剂上报道,在稀余条件下显示出低温CO氧化活性,而不通过丙烯如丙烯的碳氢化合物抑制。然而,该Cu-CO-CE(CCC)催化剂的烃氧化活性不能被认为是低温汽车排气催化的独立溶液。为了实现污染物的低温氧化和总铂族金属(PGM)含量的降低,我们在两个模拟的排气方案中检查了传统Pt / Al2O3和我们的CCC催化剂的50%物理混合物。使用这种物理混合物,我们能够获得与基线Pt / Al2O3催化剂的等效剂或更好的烃类活性,其总PGM含量的一半以及对混合物的CCC组分的硫耐受性增加。弥漫性反射率红外傅里叶变换光谱数据证实,尽管将硫敏感的CCC暴露于SO 2,但是如果将催化剂与Pt / Al 2 O 3混合,则仍然可以看到Cu +-羰基结合位点。

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