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首页> 外文期刊>ChemCatChem >Highly Selective Bimetallic Pt-Cu/Mg(Al)O Catalysts for the Aqueous-Phase Reforming of Glycerol
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Highly Selective Bimetallic Pt-Cu/Mg(Al)O Catalysts for the Aqueous-Phase Reforming of Glycerol

机译:高选择性双金属PT-Cu / Mg(Al)O催化剂用于甘油的水相重整

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摘要

Monometallic Pt and bimetallic Pt-Cu catalysts supported on Mg(Al)O mixed oxides, obtained by calcination of the corresponding layered double hydroxides (LDHs), were prepared and tested in the aqueous-phase reforming (APR) of glycerol. The effect of the Mg/Al ratio and calcination temperature of the LDH support, as well as the effect of varying Pt and Cu amounts on glycerol reforming, was investigated. The use of a basic support increases the selectivity to hydrogen and the use of a Pt-Cu bimetallic catalyst results in a decrease in alkane formation. The 0.9wt.% Pt-0.4wt.% Cu/Mg(Al)O_2.95 catalyst system with an Mg(Al)O mixed oxide support obtained by the calcination of the corresponding LDH material with Mg/Al ratio of 2.95 at 673K, showed higher hydrogen selectivity (55.3%) and lower methane production (1.9%) after 5h reaction than the benchmark Pt/Al2O3 catalyst (49.4% and 5.6%, respectively). Catalyst characterization by extended X-ray absorption fine structure (EXAFS) spectroscopy showed a bimetallic interaction between Pt and Cu. The bimetallic interaction is thought to be responsible for the lowered methane formation and, ultimately, the high hydrogen selectivity observed.
机译:在Mg(Al)O混合氧化物上,通过煅烧相应的层状双氢氧化物(LDH)获得的Mg(Al)O和双金属PT-Cu催化剂在甘油水相重整(APR)中制备并测试。研究了LDH载体的Mg / Al比和煅烧温度的影响,以及改变Pt和Cu量对甘油重整的影响。基本支持的使用增加了对氢的选择性,并且使用PT-Cu双金属催化剂的使用导致烷烃形成的降低。 0.9wt%pt-0.4wt。%Cu / mg(Al)O_2.95催化剂体系,其具有Mg(Al)O的混合氧化物载体通过煅烧相应的LDH材料,Mg / Al比为2.95在673K处获得在5h反应后,表现出较高的氢选择性(55.3%)和低于基准Pt / Al2O3催化剂(分别为49.4%和5.6%)后的甲烷生产(1.9%)。通过延长X射线吸收细结构(EXAFS)光谱表征催化剂表征在Pt和Cu之间的双金属相互作用。认为双金属相互作用是对降低的甲烷形成负责,最终观察到的高氢选择性。

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