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Mathematical model and experimental tests of hydrogen diffusion in the porous system of biomass

机译:氢在生物质多孔系统中扩散的数学模型和实验测试

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The paper deals with mathematical model and experimental tests of hydrogen (pure or mixed) diffusion in the porous system of biomass. A mathematical model has been developed for gas diffusion in a porous system and based on it a numerical simulation for hydrogen absorption gas been carried out. The results are presented graphically and they point out that the concentration variation inside the pore decreases with the increases of pore length and increases with the increase of hydrogen flux. Also, the absorbed hydrogen quantity decreases with the increase of the pore length and for a given pore length the absorbed hydrogen quantity increases with the increases of hydrogen flux and internal pore surface. Research regarding hydrogen diffusion in the porous system of biomass is part of wider research focusing on using hydrogen as an active medium for solid biomass combustion. In parallel with hydrogen diffusion in solid biomass, tests regarding biomass combustion previously subjected to a hydrogen flux will be carried out.
机译:本文研究了生物质多孔系统中氢(纯或混合)扩散的数学模型和实验测试。建立了用于多孔系统中气体扩散的数学模型,并基于此模型对吸氢气体进行了数值模拟。结果以图形方式显示,并指​​出孔内的浓度变化随孔长度的增加而减小,并随氢通量的增加而增加。而且,吸收的氢量随着孔长度的增加而减少,并且对于给定的孔长,吸收的氢量随着氢通量和内部孔表面的增加而增加。关于氢在生物质多孔系统中扩散的研究是更广泛研究的一部分,该研究集中于使用氢作为固体生物质燃烧的活性介质。与氢在固体生物质中的扩散同时,将进行有关先前经历氢通量的生物质燃烧的测试。

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