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近十年我国体育文化研究热点聚焦与未来展望 被引量:11
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作者 陈奥娜 曲淑华 +1 位作者 谢永民 郭成根 《体育文化导刊》 CSSCI 北大核心 2021年第8期47-52,共6页
采用文献计量法等,梳理并分析近十年我国体育文化研究聚焦的热点主题及未来研究方向。总体来看,近十年我国体育文化研究成果数量略有回落,但总量依然较高;相关的研究学者缺乏交流与合作,多为独立性研究;研究机构尚未形成学术共同体。研... 采用文献计量法等,梳理并分析近十年我国体育文化研究聚焦的热点主题及未来研究方向。总体来看,近十年我国体育文化研究成果数量略有回落,但总量依然较高;相关的研究学者缺乏交流与合作,多为独立性研究;研究机构尚未形成学术共同体。研究热点聚焦于民族传统体育文化、体育文化传播、运动项目文化、群众体育文化和校园体育文化等主题。未来研究方向集中在中华民族传统体育文化传承与认同、体育文化现代化与国际化潮流、高校体育文化功能与培育、体育文化新业态融合与创新等主题。 展开更多
关键词 体育管理 体育研究 体育文化 热点聚焦 未来展望
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固体氧化物燃料电池直接以焦炭为燃料的电性能(英文) 被引量:7
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作者 谢永敏 李江霖 +3 位作者 侯金醒 吴沛佳 刘江 刘庆生 《燃料化学学报》 EI CAS CSCD 北大核心 2018年第10期1168-1174,共7页
直接碳固体氧化物燃料电池(DC-SOFC)是一种潜在的固体碳燃料高效率、低污染发电技术。本研究报道了将工业焦炭直接用作管式DC-SOFC燃料的研究。制备了电极材料为Ag-GDC(钆掺杂氧化铈)的YSZ(钇稳定化氧化锆)电解质支撑型管式固体氧化物... 直接碳固体氧化物燃料电池(DC-SOFC)是一种潜在的固体碳燃料高效率、低污染发电技术。本研究报道了将工业焦炭直接用作管式DC-SOFC燃料的研究。制备了电极材料为Ag-GDC(钆掺杂氧化铈)的YSZ(钇稳定化氧化锆)电解质支撑型管式固体氧化物燃料电池(SOFC)。采用拉曼光谱、扫描电镜和X射线能谱仪对焦炭燃料进行了性质表征。结果表明,焦炭燃料呈微米级的颗粒状,并含有大量对Boudouard反应有利的缺陷结构。电池以纯焦炭为燃料在850℃取得的最大功率密度为149 mW/cm^2,在碳燃料表面负载能提高Boudouard反应速率的Fe催化剂后,最大功率密度提高至217 mW/cm^2。通过电化学测试和尾气表征,分析了恒电流放电过程中电池的性能衰减机制。测试结果证明了将焦炭直接用作全固态DCSOFC的燃料产生电能的可行性。 展开更多
关键词 固体氧化物燃料电池 直接碳 焦炭 Fe催化剂
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La_(0.75)Sr_(0.25)Cr_(0.5)Mn_(0.5)O_(3)-δ−Ce_(0.8)Gd_(0.2)O_(1.9) composite electrodes as anodes in LaGaO_(3)-based direct carbon solid oxide fuel cells 被引量:2
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作者 CHEN Tian-yu xie yong-min +7 位作者 LU Zhi-bin WANG Liang CHEN Zhe-qin ZHONG Xiao-cong LIU Jia-ming WANG Rui-xiang XU Zhi-feng OUYANG Shao-bo 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第6期1788-1798,共11页
Direct carbon solid oxide fuel cells(DC-SOFCs)are promising,green,and efficient power-generating devices that are fueled by solid carbons and comprise all-solid-state structures.Developing suitable anode materials for... Direct carbon solid oxide fuel cells(DC-SOFCs)are promising,green,and efficient power-generating devices that are fueled by solid carbons and comprise all-solid-state structures.Developing suitable anode materials for DC-SOFCs is a substantial scientific challenge.Herein we investigated the use of La_(0.75)Sr_(0.25)Cr_(0.5)Mn_(0.5)O_(3)-δ−Ce_(0.8)Gd_(0.2)O_(1.9)(LSCM−GDC)composite electrodes as anodes for La_(0.9)Sr_(0.1)Ga_(0.8)Mg_(0.2)O_(3)-δelectrolyte-based DC-SOFCs,with Camellia oleifera shell char as the carbon fuel.The LSCM−GDC-anode DC-SOFC delivered a maximum power density of 221 mW/cm^(2) at 800℃ and it significantly improved to 425 mW/cm^(2) after Ni nanoparticles were introduced into the LSCM−GDC anode through wet impregnation.The microstructures of the prepared anodes were characterized,and the stability of the anode in a DC-SOFC and the influence of catalytic activity on open circuit voltage were studied.The above results indicate that LSCM–GDC anode is promising to be applied in DC-SOFCs. 展开更多
关键词 direct carbon solid oxide fuel cells anode material La_(0.75)Sr_(0.25)Cr_(0.5)Mn_(0.5)O_(3)-δ−Ce_(0.8)Gd_(0.2)O_(1.9) composite electrodes Ni nanoparticles
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Porous layered La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)O_(3)perovskite with enhanced catalytic activities for oxygen reduction
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作者 XU Wei-lai XU Zhi-feng +6 位作者 CHEN Tian-yu ZHONG Xiao-cong xie yong-min xie Xiao-yun CHEN Zhe-qin LIU Jia-ming WANG Rui-xiang 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第5期1305-1315,共11页
Low-cost catalysts with high activity are in immediate demand for energy storage and conversion devices.In this study,polyvinyl pyrrolidone was used as a complexing agent to synthesize La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)... Low-cost catalysts with high activity are in immediate demand for energy storage and conversion devices.In this study,polyvinyl pyrrolidone was used as a complexing agent to synthesize La_(0.6)Sr_(0.4)Co_(0.2)Fe_(0.8)O_(3)(LSCF)perovskite oxide.The obtained porous layered LSCF has a large specific surface area of 23.74 m^(2)/g,four times higher than that prepared by the traditional sol-gel method(5.08 m^(2)/g).The oxygen reduction reaction activity of the oxide in 0.1 mol/L KOH solution was studied using a rotating ring-disk electrode.In the tests,the initial potential of 0.88 V(vs.reversible hydrogen electrode)and the limiting diffusion current density of 5.02 mA/cm^(2)were obtained at 1600 r/min.Therefore,higher catalytic activity and stability were demonstrated,compared with the preparation of LSCF perovskite oxide by the traditional method. 展开更多
关键词 oxygen reduction reaction electrocatalyst perovskite layered structure
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