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Effect of particle size and temperature on gasification performance of coconut and palm kernel shells in downdraft fixed-bed reactor

机译:粒径和温度对下沉式固定床反应器中椰子壳和棕榈仁壳气化性能的影响

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摘要

Gasification of coconut shell (CS) and palm kernel shell (PKS) is conducted in a batch type downdraft fixed-bed reactor to evaluate the effect of particle size (1-3 mm, 4-7 mm, and 8-11 mm) and temperature (700, 800, and 900 degrees C) on gas composition and gasification performance. The response surface methodology integrated variance-optimal design is used to identify the optimum condition for gasification. Gas composition, which is measured using the biomass particle size of 1-11 mm at 700-900 degrees C, are 8.20-14.6 vol% (H-2), 13.0-17.4 vol% (CO), 14.7-16.7 vol% (CO2), and 2.82-4.23 vol% (CH4) for CS and 7.01-13.3 vol% (H-2), 13.3-17.8 vol% (CO), 14.9-17.1 vol% (CO2), and 2.39-3.90 vol% (CH4) for PKS. At similar conditions, the syngas higher heating value, dry gas yield, carbon conversion efficiency, and cold gas efficiency are 4.01-5.39 MJ/Nm(3), 1.50-1.95 Nm(3)/kg, 52.2-75.9%, and 30.9-56.4% for CS, respectively, and 3.82-5.09 MJ/Nm(3), 1.48-1.92 Nm(3)/kg, 59.0-81.5%, and 33.0-57.1% for PKS, respectively. Results reveal that temperature has a greater role than particle size in influencing the gasification reaction rate. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在间歇式下沉式固定床反应器中进行椰子壳(CS)和棕榈仁壳(PKS)的气化,以评估粒径(1-3毫米,4-7毫米和8-11毫米)的影响,以及温度(700、800和900摄氏度)对气体组成和气化性能的影响。响应面方法综合方差优化设计用于确定气化的最佳条件。在700-900摄氏度下使用1-11毫米的生物质粒径测量的气体成分为8.20-14.6体积%(H-2),13.0-17.4体积%(CO),14.7-16.7体积%( CO和CS的2.82-4.23体积%(CH4)和7.01-13.3体积%(H-2),13.3-17.8体积%(CO),14.9-17.1体积%(CO2)和2.39-3.90体积% (CH4)for PKS。在类似条件下,合成气的更高热值,干气产率,碳转化效率和冷气效率分别为4.01-5.39 MJ / Nm(3),1.50-1.95 Nm(3)/kg、52.2-75.9%和30.9 CS分别为-56.4%,PKS分别为3.82-5.09 MJ / Nm(3),1.48-1.92 Nm(3)/kg、59.0-81.5%和33.0-57.1%。结果表明,温度在影响气化反应速率方面比粒度具有更大的作用。 (C)2019 Elsevier Ltd.保留所有权利。

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