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Mono- and bimetallic Rh and Pt NSR-catalysts prepared by controlled deposition of noble metals on support or storage component

机译:通过受控沉积在载体或储存组件上受到控制沉积制备的单和BimetallicRH和Pt NSR催化剂

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摘要

Mono- and bimetallic Rh and Pt based NOx storage-reduction (NSR) catalysts, where the noble metals were deposited on the Al2O3 support or BaCO3 storage component, have been prepared using a twin flame spray pyrolysis setup. The catalysts were characterized by nitrogen adsorption, CO chemisorption combined with diffuse reflectance infrared Fourier transform spectroscopy, X-ray diffraction, and scanning transmission electron microscopy combined with energy dispersive X-ray spectroscopy. The NSR performance of the catalysts was investigated by fuel lean/rich cycling in the absence and presence of SO2 (25 ppm) as well as after H2 desulfation at 750 °C. The performance increased when Rh was located on BaCO3 enabling good catalyst regeneration during the fuel rich phase. Best performance was observed for bimetallic catalysts where the noble metals were separated, with Pt on Al2O3 and Rh on BaCO3. The Rh-containing catalysts generally showed much higher tolerance to SO2 during fuel rich conditions and lost only little activity during thermal aging at 750 °C.
机译:通过双火焰喷雾热解设置制备,在Al 2 O 3载体或Baco3储存组件上沉积惰性金属的单核和基于Bimetallic RH和Pt基于NOx储存 - 还原(NSR)催化剂。催化剂的特征在于氮吸附,共同化学与漫反射红外傅里叶变换光谱,X射线衍射和扫描透射电子显微镜结合,与能量分散X射线光谱相结合。通过在没有和存在SO 2(25ppm)的情况下,通过燃料稀耐循环以及750℃下的H 2脱硫后,研究催化剂的NSR性能。当Rh位于Baco3上时,性能增加,在富含燃料中的良好的催化剂再生过程中。对于双金属催化剂,观察到最佳性能,其中贵金属分离,Pt在Al 2 O 3和BaCO 3上的RH。含氢催化剂通常在富含燃料的条件下对SO 2耐受较高的耐受性,并且在750℃的热老化期间仅损失很少的活性。

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