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On the evolution of pore microstructure during coal char activation with steam/CO2 mixtures

机译:蒸汽/二氧化碳混合物煤炭活化过程中孔隙微观结构的演变

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The present work develops a novel mathematical model for coal char activation with CO2, steam, and a CO2/steam mixture. The main assumption is that CO2 and steam react with distinct active sites, considered by attributing a unique char structure effect to each gasifying agent; the CO2-char reaction increases the pore length, whereas the steam-char reaction increases the pore radius. Additionally, pore overlapping effect was taken into account and the radial pore growth was computed by means of a population balance equation. Model predictions of both the pore size distribution and specific surface area changes were compared with experimental data, resulting in an outstanding fit. This supports the model main assumption, which reconciles discrepancies between various authors regarding the overall reaction rate during activation of coal chars with CO2/steam mixtures. Finally, the maximum specific surface area occurs under chemically-controlled conditions, where all particle zones reach their maximum surface areas simultaneously, while for activation with diffusional limitations each particle zone attains its maximum specific surface area at a different time. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本作者开发了一种用于CO2,蒸汽和CO2 /蒸汽混合物的煤炭活化的新数学模型。主要假设是CO 2和蒸汽通过将独特的炭结构效应归因于每个气化剂来考虑的不同活性位点; CO2-CHAR反应增加孔径,而蒸汽炭反应增加了孔径。另外,考虑孔重叠效果,通过群体平衡方程计算径向孔生长。将孔径分布和特定表面积变化的模型预测与实验数据进行了比较,导致优异的合适。这支持模型主要假设,该主机在用CO 2 /蒸汽混合物的激活过程中对各作者之间的各种作者之间的差异进行调和。最后,在化学控制的条件下发生最大特异性表面积,其中所有粒子区域同时到达其最大表面区域,同时为了与扩散限制激活,每个颗粒区在不同时间达到其最大比表面积。 (c)2019年elestvier有限公司保留所有权利。

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