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MODELING BIOMASS GASIFICATION: A NEW APPROACH TO UTILIZE RENEWABLE SOURCES OF ENERGY

机译:建模生物量气化:一种利用可再生能源来源的新方法

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Thennochemical equilibrium modeling is the basis of the numerical method implemented in this study to predict the performance of a biomass gasifier. To validate the model, a close agreement is shown between numerical and experimental results. The model is then used in order to optimize the selection procedure of a specific biomass for a certain application. For this purpose, the minimum and maximum amount of carbon, hydrogen, and oxygen for 55 different biomass materials are extracted to calculate the range of variation of oxygen content and carbon/hydrogen ratio. The influences of such variations on syngas characteristics are then studied. Syngas characteristics are comprised of syngas calorific value, outlet gas temperature, gasification efficiency, and the volume of syngas obtained. The results are plotted in a generalized format that may be used for a wide range of biomass materials. These plots can be used for the selection of a biomass material based on desired conditions. Therefore, the developed model in this study provides a tool for design optimization of a biomass downdrafl gasifier.
机译:然后,NNOchemical平衡建模是本研究中实施的数值方法的基础,以预测生物质气化器的性能。为了验证模型,在数值和实验结果之间显示了密切的协议。然后使用该模型以优化特定应用的特定生物量的选择过程。为此目的,提取55种不同生物质材料的最小和最大量的碳,氢气和氧气以计算氧含量和碳/氢气比的变化范围。然后研究了这种变化的影响特征的影响。合成气特性由合成气热值,出口气体温度,气化效率和获得的合成气量组成。结果以广义形式绘制,可用于各种生物质材料。这些图可以用于基于所需条件选择生物质材料。因此,该研究中的开发模型提供了一种用于设计优化生物量Downdrafl气化器的工具。

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