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Effects of temperature and equivalence ratio on mass balance and energy analysis in loblolly pine oxygen gasification

机译:温度和当量比对火炬松氧气气化过程中质量平衡和能量分析的影响

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Abstract The purpose of this study was to evaluate the effects of temperature and equivalence ratios (ERs) on the distribution of products (primary gases carbon monoxide [CO], H 2 , CH 4 , CO 2 ), gas phase contaminants (tar, NH 3 , HCN, H 2 S, HCl), char, carbon, and inorganics), and energy flows on an oxygen-blown bubbling fluidized bed gasifier system using loblolly pine. The goal and value of this study was to provide quantitative and qualitative performance analysis and data for process engineering and optimization of these fledgling biomass conversion systems. As temperature and ER increased, mass balance closures also increased from 94.73% to 96.72% for temperature and 89.82?¢????96.93% for ER. In addition, the carbon closures ranged from 80.77% to 92.29% and from 79.09% to 87.13% as temperature and ER increased, respectively. Carbon conversion efficiency to gas product ranged from 72.26% to 84.32% as temperature increased and from 72.26% to 84.66% as ER increased. Carbon flow analysis showed that the char product streams retained 10.26?¢????6.94% and 8.82?¢????2.13% of the carbon fed to the gasifier as temperature and ER increased, respectively. The carbon content in the liquid condensate was minimal compared to the carbon in other product streams and accounted for less than 0.1% of the carbon input to the gasifier at all conditions. The cold and hot gas efficiencies increased from 56.12% to 67.45% and from 67.51% to 83.83% as temperature increased due to higher production of CO and hydrogen (H 2 ). In contrast, cold and hot gas efficiencies decreased from 63.85% to 52.84% and from 78.06% to 73.00% as ER increased, respectively, due to enhanced oxidation of gas products resulting in a net decrease in heating value.
机译:摘要这项研究的目的是评估温度和当量比(ERs)对产物(主要气体一氧化碳[CO],H 2,CH 4,CO 2),气相污染物(焦油,NH)分布的影响3(HCN,H 2 S,HCl),炭,碳和无机物)和能量在使用火炬松的吹氧鼓泡流化床气化炉系统上流动。这项研究的目的和价值是为过程设计和这些羽翼未丰的生物质转化系统的优化提供定量和定性的性能分析和数据。随着温度和ER的增加,温度的质量平衡闭合度也从94.73%增加到96.72%,ER的质量平衡闭合度也从89.82%增加到96.93%。此外,随着温度和ER的增加,碳封闭率分别为80.77%至92.29%和79.09%至87.13%。随着温度的升高,向气体产品的碳转化效率在72.26%至84.32%的范围内,而随着ER的增加,其从72.26%至84.66%的范围。碳流量分析表明,随着温度和ER的增加,焦炭产物流分别保留了进料到气化炉的碳的10.26%的6.94%和8.82%的2.13%。与其他产品物流中的碳相比,液体冷凝物中的碳含量极低,并且在所有条件下占到气化炉中碳输入量的不到0.1%。随着温度的升高,由于较高的CO和氢气(H 2)产生,冷热气体效率从56.12%增至67.45%,从67.51%增至83.83%。相反,随着ER的增加,冷气和热气的效率分别从63.85%下降到52.84%,从78.06%下降到73.00%,这是由于气体产品氧化增强导致热值净下降。

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