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Millisecond autothermal steam reforming of cellulose for synthetic biofuels by reactive flash volatilization

机译:通过反应性闪蒸使合成生物燃料纤维素的毫秒自动热蒸汽重整

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摘要

Three biomass-to-liquid process steps (volatilization of cellulose, tar-cleaning of organic products, and water-gas-shift of the gaseous effluent) have been integrated into a single autothermal catalytic reactor for the production of high quality synthesis gas at millisecond residence times (~30 ms). Particles of cellulose (~300 μm) were directly impinged upon the hot, catalytic bed of Rh-Ce/γ-Al2O3 catalyst on 1.3 mm α-Al2O3 spheres in the presence of O2, N2, and steam in a continuous flow fixed-bed reactor at 500-1100 °C. Complete conversion to gases was observed for all experimental parameters including N2/O2, S/C, the total flow rate of cellulose, and the fuel-to-oxygen ratio (C/O). The addition of steam increased the selectivity to H2 and decreased the selectivity to CO in agreement with water-gas-shift equilibrium. Optimal conditions produced a clean gaseous effluent which exhibited ~80% selectivity to H2 at a synthesis gas ratio of H2/CO = 2.3 with no dilution from N2 at a fuel efficiency of ~75%. Carbon-free processing was explained by relating the domain of experimental parameters to the thermodynamic prediction for the formation of solid carbon, C_s.
机译:三个生物质到液体的处理步骤(纤维素的挥发,有机产品的焦油清洁和气态废水的水煤气变换)已集成到单个自动热催化反应器中,可在毫秒内生产高质量的合成气停留时间(〜30 ms)。在连续流动固定床中存在氧气,氮气和蒸汽的情况下,纤维素颗粒(〜300μm)直接撞击在1.3 mmα-Al2O3球上的Rh-Ce /γ-Al2O3催化剂的热催化床上反应器在500-1100°C下。对于所有实验参数,包括N2 / O2,S / C,纤维素的总流速以及燃料与氧气的比率(C / O),都观察到完全转化为气体。蒸汽的加入增加了对H 2的选择性,并降低了对CO的选择性,这符合水煤气变换平衡。最佳条件产生了清洁的气态流出物,在合成气比为H2 / CO = 2.3时,对H2的选择性为〜80%,而在燃料效率为〜75%的情况下,不被N2稀释。通过将实验参数的范围与形成固体碳C_s的热力学预测联系起来,对无碳工艺进行了解释。

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