Optimization approach for kinetics parameters determination for oil palm waste steam gasification with in-situ CO2 capture for hydrogen production

A. Inayat, M. M. Ahmad, M. Mutalib, S. Yusup
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引用次数: 2

Abstract

Biomass steam gasification with in-situ carbon dioxide capture using CaO exhibits good prospects for the production of hydrogen rich gas. The present work focused on the determination of reaction rate kinetics for hydrogen production from oil palm waste steam gasification using optimization approach in MATLAB. The kinetics parameters were calculated by fitting experimental data to kinetics model and minimization of least squared error between the model predictions and experimental results. The model was validated and showed good agreement with the literature. The developed model was used to investigate the effect of temperature and steam/biomass ratio on the product gas composition. Based on the results, hydrogen purity of more than 70 mol% can be achieved. It was found that increment in temperature and steam/biomass ratio is in favor of hydrogen production. The study provided a useful optimization approach for the determination of kinetics parameters for a specific biomass in future experimental work.
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油棕废蒸汽就地捕集气化制氢动力学参数的优化研究
CaO原位捕集生物质蒸汽气化在生产富氢气方面具有良好的应用前景。研究了油棕废蒸汽气化制氢反应速率动力学的MATLAB优化方法。通过将实验数据拟合到动力学模型中,并使模型预测值与实验结果之间的最小二乘误差最小化来计算动力学参数。模型经过验证,与文献吻合较好。利用所建立的模型研究了温度和蒸汽/生物质比对产物气体组成的影响。结果表明,氢纯度可达70 mol%以上。结果表明,温度和蒸汽/生物质比的增加有利于制氢。该研究为今后实验中确定特定生物质的动力学参数提供了一种有益的优化方法。
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