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Comparison of kinetic models for isothermal CO2 gasification of coal char-biomass char blended char

机译:煤焦-生物质炭混合炭等温CO2气化动力学模型比较

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摘要

This study investigated the isothermal gasification reactivity of biomass char (BC) and coal char (CC) blended at mass ratios of 1:3, 1:1, and 3:1 via isothermal thermogravimetric analysis (TGA) at 900, 950, and 1000A degrees C under CO2. With an increase in BC blending ratio, there were an increase in gasification rate and a shortening of gasification time. This could be attributed to the high specific surface area of BC and the high uniformity of carbon structures in CC when compared to those in BC. Three representative gas-solid kinetic models, namely, the volumetric model (VM), grain model (GM), and random pore model (RPM), were applied to describe the reaction behavior of the char. Among them, the RPM model was considered the best model to describe the reactivity of the char gasification reaction. The activation energy of BC and CC isothermal gasification as determined using the RPM model was found to be 126.7 kJ/mol and 210.2 kJ/mol, respectively. The activation energy was minimum (123.1 kJ/mol) for the BC blending ratio of 75%. Synergistic effect manifested at all mass ratios of the blended char, which increased with the gasification temperature.
机译:本研究通过900、950和1000A的等温热重分析(TGA)研究了以1:3、1:1和3:1质量比混合的生物质炭(BC)和煤炭(CC)的等温气化反应性二氧化碳下的摄氏一度。随着BC混合比的增加,气化速率增加并且气化时间缩短。与BC相比,这可归因于BC的高比表面积和CC中碳结构的高度均匀性。三种典型的气固动力学模型,即体积模型(VM),晶粒模型(GM)和随机孔模型(RPM),被用来描述炭的反应行为。其中,RPM模型被认为是描述焦炭气化反应反应性的最佳模型。发现使用RPM模型确定的BC和CC等温气化的活化能分别为126.7 kJ / mol和210.2 kJ / mol。对于75%的BC混合比,活化能最小(123.1 kJ / mol)。在混合炭的所有质量比处均表现出协同作用,其随气化温度增加。

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