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Hydrogen-rich Syngas Production from Ethanol Dry Reforming on La-doped Ni/Al2O3 Catalysts: Effect of Promoter Loading

机译:掺镧La / Ni / Al2O3催化剂上乙醇干重整制得富氢合成气:促进剂负载的影响

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摘要

Ethanol dry reforming has been studied over La-promoted Ni catalysts supported on Al2O3 with different promoter loadings at varying CO2 partial pressure of 20-50 kPa. Catalysts were prepared via co-impregnation technique and characterized using BET surface area, X-ray diffraction measurement, temperature-programmed calcination and scanning electron microscopy. Doped and undoped catalysts possessed high surface area of about 86-108 m2 g-1 and La promoter was well-dispersed on support surface. Xrayuddiffraction measurements indicated the formation of La2O3, NiO and NiAl2O4 phases in line with temperature-programmedudcalcination results. La-addition enhanced the dispersion of NiO particles and reduced the agglomeration of metal oxides. Both C2H5OH and CO2 conversions improved with increasing CO2 partial pressure rationally due to the growing secondary CO2 reforming of CH4 reaction. The ratio of H2/CO produced from ethanol dry reforming varied from 1.1 to 1.4 favored for usage as feedstocks of Fischer-Tropsch synthesis. The yield of H2 and CO also enhanced with increasing CO2 partial pressure whilst the optimal La loading in terms of C2H5OH conversion was observed at 3%La and catalytic activity increased with promoter additionudreasonably owing to the redox properties of La promoter. CO2 reforming of ethanol reaction appeared via ethanol decomposition to CH4 intermediate product, which was subsequently converted to CO and H2 mixture through CH4 dry reforming reaction.
机译:已经对在20-50 kPa的不同CO2分压下负载在Al2O3上的La促进Ni催化剂进行了乙醇干重整的研究,这些催化剂具有不同的促进剂负载量。通过共浸渍技术制备催化剂,并使用BET表面积,X射线衍射测量,程序升温煅烧和扫描电子显微镜对催化剂进行表征。掺杂和未掺杂的催化剂具有约86-108 m2 g-1的高表面积,并且La助催化剂很好地分散在载体表面上。 X射线衍射分析表明,形成了La2O3,NiO和NiAl2O4相,这与温度编程未煅烧结果一致。镧的添加增强了NiO颗粒的分散性并减少了金属氧化物的团聚。 C2H5OH和CO2转化率均随着合理地增加CO2分压而提高,这是由于CH4反应的二次CO2重整反应不断增长。由乙醇干重整产生的H 2 / CO的比率在1.1至1.4之间变化,适合用作费-托合成的原料。 H2和CO的收率也随着CO2分压的增加而增加,而在C2H5OH转化率方面,最佳的La负载量为3%La,并且催化活性随促进剂的添加而增加,这是由于La促进剂的氧化还原特性所致。乙醇反应的CO2重整是通过乙醇分解为CH4中间产物而出现的,然后通过CH4干重整反应将其转化为CO和H2混合物。

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