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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Integrated gasification and catalytic reforming syngas production from corn straw with mitigated greenhouse gas emission potential
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Integrated gasification and catalytic reforming syngas production from corn straw with mitigated greenhouse gas emission potential

机译:玉米秸秆的综合气化和催化重整合成气与减压温室气体排放潜力

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摘要

The syngas that is produced from waste biomass often has high levels of CH4 and CO2, which are greenhouse gases. This investigation presents an integrated gasification and catalytic reforming process with a closed gas loop that can improve quality of syngas from corn straw and mitigate CH4 and CO2 emission. The effects of the support type, reforming temperature, steam-to-biomass (S/B) ratio, and catalyst-to-biomass ratio (C/B) ratio on gas yield and composition were experimentally examined with waste corn straw as the feedstock gasified at 850 degrees C in the proposed closed-loop apparatus. Reformation of syngas using Ni/gamma-Al2O3 at 850 degrees C, S/B = 1 and C/B = 0.5 yielded 1.16 m(3)/kg of syngas, which contained 48.5% H-2, 33.9% CO, 12.2% CO2 and 5.3% CH4, corresponding to 71.0% and 81.5% enhancements of the first two and -77.8% and -58.1% reductions of the last two components.
机译:废物生物质产生的合成气通常具有高水平的CH 4和CO2,这是温室气体。 该研究介绍了一种综合气化和催化重整过程,具有封闭的气体环,可以从玉米秸秆和减缓CH4和CO2排放的闭合气体回路。 用废玉米秸秆作为原料,用垃圾玉米秸秆实验检查支撑型,重整温度,蒸汽 - 生物质(S / B)比和催化剂 - 生物质比(C / B)比例的影响 在所提出的闭环装置中在850℃下气化。 使用Ni / Gamma-Al2O3在850℃,S / B = 1和C / B = 0.5的合成气的改性得到1.16m(3)/ kg合成气,其含有48.5%H-2,33.9%Co,12.2% CO2和5.3%CH4,对应于前两个和-77.8%的71.0%和81.5%增强,最后两种组分的减少-77.8%和-58.1%。

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