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Synthesis Gas Production via Biomass Catalytic Gasification

机译:通过生物质催化气化的合成气产物

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摘要

The biomass-derived synthesis gas production via co-reforming of biogas and H_2-rich syngas produced by biomass air-steam gasification has been investigated in a bubbling bed biomass gasifier with the ultra-stable NiO-MgO catalyst packed in a downstream reactor. The effects of reactor temperature, steam to biomass ratio, equivalence ratio ER, biomass particle size and the biogas feeding rate on the synthesis gas composition and yield was investigated. The results indicated that the composition of synthesis gas was adjusted by co-reforming reaction to meet the desired stoichiometri factor. The H_2/CO ratio of biomass synthesis gas was above 1.5. It contained trace CH_4 and CO_2. With the biogas addition of 0.91-1.21Nm~3 per Kg of biomass, the yield of synthesis gas was 3.93-4.20Nm~3 per Kg of biomass.
机译:通过填充在下游反应器中的超稳定的NiO-MgO催化剂,通过填充的血液气体气化器产生的生物量和H_2-富含生物气体和H_2的合成气的生物量衍生的合成气产量。研究了反应器温度,蒸汽对生物质比,等效比ER,生物质粒度和沼气饲养率对合成气体组成和产率的影响。结果表明,通过共重整反应来调节合成气体的组成,以满足所需的STOICHIOMetri因子。生物质合成气的H_2 / CO比在1.5以上。它含有痕量CH_4和CO_2。通过沼气添加0.91-1.21nm〜3的生物质,合成气的产率为每千克生物质为3.93-4.20nm〜3。

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