首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Steam reforming of biomass tar model compound at relatively low steam-to-carbon condition over CaO-doped nickel-iron alloy supported over iron-alumina catalysts
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Steam reforming of biomass tar model compound at relatively low steam-to-carbon condition over CaO-doped nickel-iron alloy supported over iron-alumina catalysts

机译:在铁铝催化剂上负载CaO掺杂的镍铁合金上,在相对较低的汽碳条件下,对生物质焦油模型化合物进行蒸汽重整

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CaO doped iron-alumina-supported nickel-iron alloy catalysts were tested in a fixed-bed reactor for steam reforming of toluene as a biomass tar model compound at a relatively low steam-to-carbon (S/C) ratio of 2. The influence of doping CaO to iron-alumina support was also explored for the steam reforming reaction. Ni supported on a CaO(1.5)-Fe2O3-Al2O3 support (Ni/Ca(1.5)-Fe-Al) gave superior catalytic performance in terms of activity and stability over other catalysts. Ni/Ca(1.5)-Fe-Al gave a toluene conversion of more than 80% for a period of 22 h testing at a S/C ratio of 2. XRD analysis showed that the Ni-Fe alloys formed were stable throughout the reforming reaction. It was observed from XPS results that the surface of the reduced Ni/Ca(1.5)-Fe-Al catalyst was enriched with Fe species compared to other catalysts. These enriched surface Fe species play the role of co-catalysts by increasing the coverage of oxygen species during the reforming reaction to enhance the reaction of toluene and to suppress coke formation. The temperature-programmed surface reaction (TPSR) with water reveals that the Ni/Ca(1.5)-Fe-Al catalyst can activate water molecule at relatively lower temperature over other CaO doped catalysts. TGA analysis on spent catalysts reveals that all CaO-containing catalysts generally result in lower carbon formation rates as compared to Ni/Fe-Al catalyst. (C) 2014 Elsevier B.V. All rights reserved.
机译:在固定床反应器中测试了CaO掺杂的铁-氧化铝负载的镍铁合金催化剂,以相对较低的蒸汽碳比(S / C)为2对甲苯作为生物质焦油模型化合物进行蒸汽重整。还探讨了掺杂CaO对铁-氧化铝载体的影响,以进行水蒸气重整反应。负载在CaO(1.5)-Fe2O3-Al2O3载体上的Ni(Ni / Ca(1.5)-Fe-Al)在活性和稳定性方面优于其他催化剂。 Ni / Ca(1.5)-Fe-Al在22的S / C比为22的测试中,甲苯转化率超过80%。XRD分析表明,形成的Ni-Fe合金在整个重整过程中都是稳定的反应。从XPS结果可以看出,与其他催化剂相比,还原的Ni / Ca(1.5)-Fe-Al催化剂的表面富含铁。这些富集的表面铁物种通过在重整反应过程中增加氧物种的覆盖率来增强甲苯的反应并抑制焦炭的形成,从而起到助催化剂的作用。与水进行程序升温的表面反应(TPSR)表明,与其他掺杂CaO的催化剂相比,Ni / Ca(1.5)-Fe-Al催化剂可以在相对较低的温度下活化水分子。对废催化剂的TGA分析表明,与Ni / Fe-Al催化剂相比,所有含CaO的催化剂通常导致较低的碳形成速率。 (C)2014 Elsevier B.V.保留所有权利。

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