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Sustainable Production of Syngas from Biomass-Derived Glycerol by Steam Reforming over Highly Stable Ni/SiC

机译:通过高度稳定的Ni / SiC的蒸汽重整,通过蒸汽重整获得生物质衍生的甘油的可持续生产

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The production of syngas was investigated by steam reforming glycerol over Ni/Al2O3, Ni/CeO2, and Ni/SiC (which have acidic, basic, and neutral properties) at temperatures below 773 K. The complete and stable conversion of glycerol with a yield (higher than 90?%) of gaseous products (mainly syngas) was achieved over Ni/SiC during a 60 h reaction, whereas the conversion of glycerol continually decreases over Ni/Al2O3 (by 49.8?%) and Ni/CeO2 (by 77.1?%). The deactivation of Ni/Al2O3 and Ni/CeO2 is mainly caused by coke deposition because of the C?C cleavage of the byproducts produced by dehydration over acidic sites and condensation over basic sites. Gaseous products with a 1.01.9 syngas ratio (H2/CO) are produced over Ni/SiC. This ratio is required for the FischerTropsch synthesis. However, a syngas ratio of more than 3.0 was observed over Ni/Al2O3 and Ni/CeO2 because of the high activity of the watergas-shift reaction. Any dissociative or associative adsorption of water on Al2O3 and CeO2 promotes a watergas-shift reaction and produces a higher syngas ratio. H2 and CO were mainly produced by decomposition of glycerol through dehydrogenation and decarbonylation over Ni sites. Thus, SiC promotes an intrinsic contribution of nickel (dehydrogenation, and decarbonylation) without any byproducts from the dehydration and condensation.
机译:通过在低于773k的温度下通过Ni / Al 2 O 3,Ni / CeO 2和Ni / SiC(具有酸性,碱性和中性性质)的蒸汽重整甘油来研究合成气的产生。甘油的完全和稳定转化为产量在60h反应期间在Ni / SiC上实现(主要是合成气)的气态产物(主要是合成气),而甘油的转化在Ni / Al 2 O 3上不断降低(49.8〜%)和Ni / CeO 2(通过77.1 ?%)。 Ni / Al2O3和Ni / CeO2的失活主要是由于焦沉沉引起的,因为C 2 C的副产物脱水产生的副产物和碱性位点上的凝结产生的副产物。具有1.01.9合成气比(H2 / CO)的气态产品通过Ni / SiC产生。 Fischertropsch合成需要该比率。然而,由于水液移反应的高活性,在Ni / Al 2 O 3和Ni / CeO 2上观察到Syngas比例超过3.0的比例。在Al 2 O 3和CeO 2上的任何分离或联合吸附水促进水液移反应,并产生更高的合成气比。 H 2和Co主要通过脱氢和Ni位点的脱氢和脱羰基质分解产生的。因此,SiC促进镍(脱氢和脱羰)的内在贡献,而不从脱水和缩合的任何副产物。

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