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Co-gasification of Corn and Coconut Residues in Downdraft Gasifier

机译:降下气体化器中玉米和椰子残留的共同气化

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Reliance on a single biomass to generate electrical power can cause disruption due to the inconsistencies in the supply of biomass feedstock. Co-gasification of different biomass can mitigate the problem of inconsistence biomass supply. The aim of this study to investigate thermochemical properties of corn residues (CR) and coconut shells (CS) and syngas performance produced from co-gasification of CR and CS. Biomass materials were characterized in order to understand their physical properties in relation to thermochemical conversion. Co-gasification of CR and CS was carried out in externally heated downdraft gasifier at CR:CS ratio of 50:50, 40:60 and 20: 80. CO composition obtained from blended feedstock is higher as compared to the without blended feedstock. The CO2 and CH4 concentration were increased as CS proportion increased in blend. Biomass with higher moisture content plays important role in the H2 production due to the supercritical water gasification. The blending ratio of CR and CS at 20:80 had a positive synergetic effect as evident by increase in the gas composition for CO, CH4 and H2. It is concluded that co-gasification results of CR and CS is practical and can be considered to complement each other.
机译:依赖于单个生物质产生电力可能导致由于生物质原料供应不一致而导致破坏。不同生物量的共同气化可以减轻生物质供应不一致的问题。该研究的目的是研究玉米残基(Cr)和椰子壳(Cs)和由Cr和Cs的协同气化产生的合成气性能的热化学性质。表征生物质材料以了解其与热化学转化有关的物理性质。 Cr和Cs的协同气化在Cr:Cs比为50:50,40:60和20:80的外部加热的下降气化器中进行。与混合原料中获得的Co组合物与没有混合的原料相比较高。随着Cs比例的混合物增加,CO 2和CH 4浓度升高。由于超临界水气化,具有较高水分含量的生物质在H2生产中起着重要作用。 Cr和Cs在20:80的混合比具有正阳性的协同效果,因为CO,CH 4和H 2的气体组合物增加是显而易见的。得出结论,CR和CS的共同气化结果是实用的,可以认为彼此相互补充。

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