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半焦结构对直接碳固体氧化物燃料电池输出性能的影响

Influence of semi coke structure on output performance of direct carbon solid oxide fuel cell

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【作者】 宋宗兴; 周安宁; 刘国阳; 王俊哲;

【Author】 SONG Zongxing;ZHOU Anning;LIU Guoyang;WANG Junzhe;School of Chemistry and Chemical Engineering, Xi’an University of Science and Technology;Shaanxi Coal Industry New Energy Technology Co., Ltd.;

【通讯作者】 周安宁;

【机构】 西安科技大学化学与化工学院; 陕西煤业新型能源科技股份有限公司;

【摘要】 碳燃料的结构特性是影响直接碳固体氧化物燃料电池(DC-SOFC)输出特性的关键因素。选择生物质和低阶煤热解半焦作为DC-SOFC的燃料,采用红外光谱、拉曼光谱、XRD及氮气等温吸脱附等分析手段,结合半焦的CO2还原活性及电池输出性能分析,研究了半焦组成和本征结构对DC-SOFC性能的影响机制。结果表明,半焦的灰分含量对其CO2反应活性有重要影响,半焦脱灰后CO2反应活性显著降低;脱灰半焦的表观芳香度越低,缺陷芳香环碳与有序芳香环碳的比值越大,半焦的CO2反应活性越高,则半焦燃料DC-SOFC输出性能越好。利用多元函数拟合方法,建立了脱灰半焦燃料CO2反应速率与半焦结构参数(芳香度、芳碳缺陷程度)之间的数学关系式,用于判断半焦CO2反应速率大小及半焦燃料DC-SOFC输出性能的优劣。

【Abstract】 The structural characteristics of carbon fuel are the key factors affecting the output characteristics of direct carbon solid oxide fuel cells(DC-SOFC).Biomass and low-rank coal pyrolysis semi-coke were selected as the fuel of DC-SOFC.The influence mechanism of semi-coke composition and intrinsic structure on DC-SOFC performance was studied by infrared spectroscopy,Raman spectroscopy,XRD and nitrogen isothermal adsorption and desorption analysis methods,combined with the analysis of CO2reduction activity and battery output performance of semi-coke The results show that the ash content of semi-coke has an important effect on its CO2reactivity,and the CO2reactivity of semi-coke decreases significantly after deashing.The lower the apparent aromaticity,the greater the ratio of defec‐tive aromatic ring carbon to ordered aromatic ring carbon,the higher the CO2reactivity of semi-coke,the better the output performance of semi-coke DC-SOFC.By using the multivariate function fitting method,the mathematical rela‐tionship between the CO2reaction rate of deash semi-coke fuel and the structural parameters of semi-coke (aromatic‐ity,degree of aromatic carbon defect) was established,which was used to judge the CO2reaction rate of semi-coke and the output performance of semi-coke fuel DC-SOFC.

【基金】 陕西煤业新型能源科技股份有限公司研究项目(2020SMHKJ-BK-J-26);榆林市科技计划项目(CXY-2022-154)
  • 【文献出处】 电源技术 ,Chinese Journal of Power Sources , 编辑部邮箱 ,2023年11期
  • 【分类号】TM911.4
  • 【下载频次】20
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