Beheshti Sayyed Mohsen, Ghassemi Hojat, Shahsavan-Markadeh Rasoul, Fremaux Sylvain
a School of Mechanical Engineering , Iran University of Science and Technology , Tehran 16765-163 , Iran.
Environ Technol. 2015 May-Jun;36(9-12):1327-33. doi: 10.1080/09593330.2014.988185. Epub 2014 Dec 9.
Gasification is a thermochemical process in which solid or liquid fuels are transformed into synthesis gas through partial oxidation. In this paper, a kinetic model of rice husk gasification has been developed, which is interesting for the applications of the syngas produced. It is a zero-dimensional, steady-state model based on global reaction kinetic, empirical correlation of pyrolysis and is capable of predicting hydrogen yield in the presence of sorbent CaO. The model can also be used as a useful tool to investigate the influence of process parameters including steam/biomass ratio, CaO/fuel ratio (CaO/Fuel), and gasification temperature on hydrogen efficiency, CO2 capture ratio (CCR), and average carbonation conversion (Save). Similar to hydrogen formation, CCR also increases with increasing CaO/Fuel, but an opposite trend is exhibited in Save. Model predictions were compared with available data from the literature, which showed fairly good agreement.
气化是一种热化学过程,在该过程中,固体或液体燃料通过部分氧化转化为合成气。本文建立了稻壳气化的动力学模型,该模型对于所产生合成气的应用具有重要意义。它是一个基于全局反应动力学、热解经验关联的零维稳态模型,能够预测在存在吸附剂CaO的情况下氢气产率。该模型还可作为一个有用的工具,用于研究包括蒸汽/生物质比、CaO/燃料比(CaO/Fuel)和气化温度等工艺参数对氢气效率、CO2捕集率(CCR)和平均碳酸化转化率(Save)的影响。与氢气生成情况类似,CCR也随CaO/Fuel的增加而增加,但Save呈现相反的趋势。将模型预测结果与文献中的现有数据进行了比较,结果显示吻合度相当高。