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Barium promoted palladium catalysts for the emission control of natural gas driven vehicles and biofuel combustion systems

机译:钡促进钯催化剂,用于控制天然气驱动车辆和生物燃料燃烧系统的排放

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Pd/ and Pd-Ba/alumina catalysts were prepared and tested for their activities in the removal of pollutants released from stoichiometrically operated natural gas vehicles (NGVs) and from the combustion of biofuels in small-scale stoves. The addition of barium to the Pd/alumina catalyst resulted in improved fresh and aged activities by widening the lambda window in NGV applications and by lowering the T-50% for methane in biofuel combustion applications. An attempt to slow down the detrimental effect of sulfur toward methane oxidation was carried out by arranging Pd-Ba/alumina, Ba/alumina, and Pd/alumina in three separate layers. Ba species were believed to act as a sulfur sink or trap, leaving the active PdO partially free for methane oxidation. XPS technique was used to investigate the nature of sulfur species on the catalyst as well as the state of the precious metal. In addition, the catalysts were characterized by means of XRD, XRF, H-2-adsorption, N-2-physisorption, SO2/O-2/C10H8-TPD, and CH4-TPR. (C) 2002 Elsevier Science (USA). [References: 26]
机译:制备了Pd /和Pd-Ba /氧化铝催化剂,并测试了它们在去除化学计量操作的天然气车辆(NGVs)和小型火炉中燃烧生物燃料释放的污染物中的活性。通过在NGV应用中加宽Lambda窗并降低生物燃料燃烧应用中甲烷的T-50%,向Pd /氧化铝催化剂中添加钡可改善新鲜和老化活性。通过将Pd-Ba /氧化铝,Ba /氧化铝和Pd /氧化铝布置在三个独立的层中,试图减缓硫对甲烷氧化的有害作用。人们认为Ba物种起着硫汇或陷阱的作用,使活性PdO部分自由地被甲烷氧化。 XPS技术用于研究催化剂上硫物种的性质以及贵金属的状态。另外,通过XRD,XRF,H-2-吸附,N-2-物理吸附,SO2 / O-2 / C10H8-TPD和CH4-TPR对催化剂进行了表征。 (C)2002 Elsevier Science(美国)。 [参考:26]

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