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Process modeling for parametric study on oil palm empty fruit bunch steam gasification for hydrogen production

机译:油棕空果串蒸汽气化制氢参数化工艺模型

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摘要

Biomass steam gasification with in-situ carbon dioxide capture using CaO exhibits good prospects for the production of hydrogen rich gas. The present work focuses on the process modeling for hydrogen production from oil palm empty fruit bunch (EFB) using MATLAB for parametric study. The model incorporates the reaction kinetics calculations of the steam gasification of EFB (C_(3.4)H_(4.1)O_(3.3)) with in-situ CO2 capture, as well as mass and energy balances calculations. The developed model is used to investigate the effect of temperature and steam/biomass ratio on the hydrogen purity, yield and efficiency. Based on the results, hydrogen purity of more than 76.1 vol.% can be achieved. The maximum hydrogen yield predicted at the outlet of the gasifier is 102.6 g/kg of EFB. It is found that increment in temperature and steam/biomass ratio promotes hydrogen production. However, it is also predicted that the efficiency decreases when using more steam. Due to the still on-going empirical work, the results are compared with published literatures on different systems. The comparison shows that the results are in agreement to some extent due to the different basis.
机译:使用CaO原位捕获二氧化碳的生物质蒸汽气化技术在生产富氢气体方面具有良好的前景。目前的工作集中在使用MATLAB进行参数研究的油棕空果束(EFB)生产氢气的过程模型中。该模型结合了具有原位CO2捕集功能的EFB(C_(3.4)H_(4.1)O_(3.3))的蒸汽气化反应动力学计算以及质量和能量平衡计算。所开发的模型用于研究温度和蒸汽/生物质比对氢气纯度,产率和效率的影响。基于该结果,可以实现大于76.1体积%的氢纯度。在气化炉出口处预测的最大氢气产量为102.6 g / kg EFB。发现温度和蒸汽/生物质比的增加促进了氢的产生。然而,还预测当使用更多的蒸汽时效率会降低。由于仍在进行实证研究,因此将结果与有关不同系统的已发表文献进行了比较。比较表明,由于基础不同,结果在一定程度上是一致的。

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