首页> 外文会议>2011 IEEE First Conference on Clean Energy and Technology >Effect of iron loading on the physicochemical properties and catalytic activity of Fe/CeO2 catalysts in palm kernel shell steam gasification to hydrogen
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Effect of iron loading on the physicochemical properties and catalytic activity of Fe/CeO2 catalysts in palm kernel shell steam gasification to hydrogen

机译:铁负载量对棕榈仁壳蒸汽气化制氢中Fe / CeO 2 催化剂的理化性质和催化活性的影响

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Hydrogen has emerged as one of the sustainable fuels in the next future that can be used in internal-combustion engine. Hydrogen produced from catalytic gasification of biomass generates clean and higher efficiencies automotive fuel. The use of catalyst in the biomass gasification is effective to elevate hydrogen content and to reduce tar formation. This work presents the development of Fe supported Ceria catalysts for palm kernel shell (PKS) steam gasification to hydrogen. 2.5–10wt% Fe/CeO2 catalysts have been prepared using incipient wetness impregnation method for 6 hours, dried at 120 °C for 16 hours and later calcined at 500 °C for 16 hours. The catalysts were characterized for their crystal structures using Powder X-Ray Diffraction (XRD), reducibility using Temperature Programmed Reduction (TPR), surface area, pore size and pore volume using N2 adsorption-desorption isotherm and morphology using Field Emission Scanning Electron Microscopy (FESEM). XRD results confirmed the formation of solid solution of iron-cerium oxide, with cubic CeO2 structure which is in agreement with FESEM images. As evaluated by surface area and pore analyzer, it was established that the Fe/CeO2 catalysts are nonporous and its surface area increases with increasing of Fe loading. TPR profiles show the overlapping of two reduction peaks, related to the surface Fe and CeO2. A shoulder peak evolved, attributed to the reduction of Fe3O4 to Fe. The 2.5wt % Fe/CeO2 catalyst indicates the maximum H2 production with the least formation of CO2 and CH4 from PKS steam gasification. It is likely that the formation of H2 reduces with increasing of Fe loading.
机译:氢已成为可用于内燃机的可持续燃料之一。生物质催化气化产生的氢气可产生清洁高效的汽车燃料。在生物质气化中使用催化剂可有效提高氢含量并减少焦油形成。这项工作介绍了用于棕榈仁壳(PKS)蒸汽气化成氢的铁负载二氧化铈催化剂的开发。使用初湿浸渍法制备了2.5-10wt%的Fe / CeO 2 催化剂6小时,在120°C下干燥16小时,然后在500°C下煅烧16小时。使用粉末X射线衍射(XRD),使用程序升温还原(TPR)的还原性,使用N 2 吸附-解吸等温线的表面积,孔径和孔体积表征催化剂的晶体结构。场发射扫描电子显微镜(FESEM)进行形态学分析。 XRD结果证实了铁-铈氧化物固溶体的形成,具有立方CeO 2 结构,与FESEM图像相符。通过表面积和孔隙分析仪评估,确定Fe / CeO 2 催化剂是无孔的,并且表面积随Fe负载的增加而增加。 TPR谱显示两个还原峰的重叠,这两个峰与表面Fe和CeO 2 有关。出现了肩峰,这是由于Fe 3 O 4 还原为Fe所致。 Fe / CeO 2 的重量百分比为2.5wt%,表明H 2 的产量最高,而CO 2 和CH 4 < / inf>来自PKS蒸汽气化。 H 2 的形成可能随着铁负载的增加而减少。

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