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Interaction between CO2 and H2O on char structure evolution during coal char gasification

机译:CO2和H2O与煤炭气化过程中炭结构演变的相互作用

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Alternating gasifying agents is an effective way to study the interaction between CO2 and H2O and is helpful to reveal competitive, independent and synergistic effect between CO2 and H2O in the co-gasification process. A bituminous coal was used in this study. And the alternate process is as follows: demineralized coal was first gasified in the presence of H2O (CO2) at 900 degrees C in a thermal gravimetric analyzer (TGA) to prepare coal char with 25% carbon conversion level. After 20 min Ar purging, CO2 (H2O) was switched to prepare residual char with 50% conversion. The pore structure and surface morphology were investigated by N-2 adsorption and scanning electron microscopy (SEM), respectively. The results indicate that CO2 gasification occurs on the char surface and creates micropores. H2O molecule is more prone to diffuse into the pore structure to react with the char matrix, it is helpful to the enlargement of the pore size and the formation of micropores. In the co-gasification, the reaction could occur both on the char surface and in the matrix simultaneously, H2O more easily enters into the char matrix in the presence of CO2. A positive interaction develops between H2O/CO2 in developing the coal char pore structures during gasification.
机译:交替的气化剂是研究CO 2和H2O之间相互作用的有效方法,并且有助于在共气化过程中揭示CO2和H2O之间的竞争性,独立和协同效应。本研究使用了一种沥青煤。替代方法如下:在热重分析仪(TGA)中,在900摄氏度下在900摄氏度下在H 2 O(CO 2)存在下气化,以制备25%碳转化水平的煤炭。在20分钟后吹扫后,切换CO 2(H 2 O)以制备残留炭,转化50%。通过N-2吸附和扫描电子显微镜(SEM)研究了孔结构和表面形态。结果表明,在炭表面上发生CO2气化并产生微孔。 H2O分子更容易扩散到孔结构中以与焦炭基质反应,这有助于扩大孔径和微孔的形成。在共气化中,反应可以同时在炭表面和基质中发生,在CO 2存在下,H2O更容易进入CHAR基质中。 H2O / CO2在气化过程中煤炭孔结构的阳性相互作用。

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