首页> 外文期刊>Journal of the Japan Petroleum Institute >Effect of Sn Addition on n-Butane Dehydrogenation over Alumina-supported Pt Catalysts Prepared by Co-impregnation and Sol-gel Methods
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Effect of Sn Addition on n-Butane Dehydrogenation over Alumina-supported Pt Catalysts Prepared by Co-impregnation and Sol-gel Methods

机译:锡对共浸渍法和溶胶-凝胶法制备的氧化铝负载Pt催化剂上正丁烷脱氢的影响

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摘要

n-Butane dehydrogenation was investigated over alumina-supported Pt catalysts modified with Sn. Preparation of this catalyst by conventional co-impregnation method with H2PtCl6 and SnCl2 mixed solution (Pt-Sn/Al2O3 catalyst), resulted in considerable loss of amount of Sn during calcination. Therefore, SnO2-Al2O3 was prepared by the sol-gel method and Pt was then deposited on this support (Pt/SnO2-Al2O3 catalyst). This procedure prevented loss of Sn at the calcination step. In addition, Pt/SnO2-Al2O3 demonstrated a remarkable promotion effect of Sn compared with Pt-Sn/Al2O3. CO adsorption was higher on Pt/SnO2-Al2O3 than on Pt-Sn/Al2O3. Sn present in the oxidized state was dispersed on the support surface of Pt/SnO2-Al2O3. XRD measurements suggested that an inactive PtSn2 phase was formed and particle growth occurred in Pt-Sn/Al2O3. XRD peaks from Pt were not observed for Pt/SnO2-Al2O3, suggesting the formation of highly dispersed Pt3Sn. This study showed that highly dispersed tin oxides on the support surface retarded side reactions and formation of Sn-rich PtSn2 particles, resulting in high activity for re-butane dehydrogenation.
机译:在用Sn改性的氧化铝负载的Pt催化剂上研究了正丁烷的脱氢作用。通过常规共浸渍法与H2PtCl6和SnCl2混合溶液(Pt-Sn / Al2O3催化剂)制备该催化剂,导致煅烧过程中大量的Sn损失。因此,通过溶胶-凝胶法制备SnO2-Al2O3,然后将Pt沉积在该载体上(Pt / SnO2-Al2O3催化剂)。该程序防止了在煅烧步骤中锡的损失。另外,与Pt-Sn / Al2O3相比,Pt / SnO2-Al2O3表现出显着的Sn促进作用。 Pt / SnO2-Al2O3上的CO吸附高于Pt-Sn / Al2O3上的CO吸附。以氧化态存在的Sn分散在Pt / SnO2-Al2O3的载体表面上。 XRD测量表明,形成了惰性的PtSn2相,并且在Pt-Sn / Al2O3中发生了颗粒生长。对于Pt / SnO2-Al2O3,未观察到来自Pt的XRD峰,表明形成了高度分散的Pt3Sn。这项研究表明,在载体表面上高度分散的氧化锡可阻止副反应和富Sn的PtSn2颗粒的形成,从而提高了丁烷脱氢活性。

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