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Roles of alkali/alkaline earth metals in steam reforming of biomass tar for hydrogen production over perovskite supported Ni catalysts

机译:碱/碱土金属在钙钛矿负载Ni催化剂上生物质焦油蒸汽重整以制氢的作用

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摘要

Biomass steam gasification has a large potential to produce high-purity hydrogen, and perovskites are good candidates to act as catalyst supports in eliminating the biomass tar produced during reforming. However, various alkali and alkaline earth metals are contained in actual biomass, which would be released during reactions and could affect the catalytic performance of perovskite-supported catalysts. To explore potential roles of alkali and alkaline earth metals in the catalysis process, in this work, typical K, Ca and Mg were added into Ni/La0.7Sr0.3AlO3-x catalysts, and their performance in steam reforming of toluene as a model of biomass tar for hydrogen production were investigated comprehensively. Catalytic performance shows that the presence of K, Ca, and Mg leads to a better resistance to coking (a reduction of over 60%) and sintering of the Ni/perovskite catalysts utilized, and this trend becomes more pronounced as the decrease of reaction temperature. Furthermore, a series of catalyst characterizations, including XRF, XRD, SEM, TPR, TPD, and XPS were conducted to understand the action mechanism. And results reveal that the presence of K, Ca, and Mg in catalysts promotes the absorption ability of surface oxygen, which could oxidize reaction intermediates or the carbon deposited, thus enabling good reforming properties of the perovskite-supported Ni catalysts in the reforming of biomass tar.
机译:生物质蒸汽气化具有产生高纯度氢的巨大潜力,钙钛矿是消除重整过程中产生的生物质焦油的良好催化剂候选物。然而,实际的生物质中包含各种碱金属和碱土金属,它们会在反应过程中释放出来,并可能影响钙钛矿负载型催化剂的催化性能。为了探索碱金属和碱土金属在催化过程中的潜在作用,在这项工作中,将典型的K,Ca和Mg添加到Ni / La0.7Sr0.3AlO3-x催化剂中,以及它们在甲苯蒸汽重整中的性能作为模型全面研究了制氢用生物质焦油的含量。催化性能表明,K,Ca和Mg的存在导致更好的抗焦化性(降低60%以上)和烧结所用的Ni /钙钛矿催化剂,并且随着反应温度的降低,这种趋势变得更加明显。 。此外,进行了一系列催化剂表征,包括XRF,XRD,SEM,TPR,TPD和XPS,以了解其作用机理。结果表明,催化剂中钾,钙和镁的存在促进了表面氧的吸收能力,可氧化反应中间体或沉积的碳,从而使钙钛矿负载型镍催化剂在生物质重整中具有良好的重整性能。柏油。

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