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dc.contributor.author胡俊平zh_CN
dc.contributor.author张琦zh_CN
dc.contributor.author杨曦zh_CN
dc.contributor.author施一宁zh_CN
dc.contributor.author郑明森zh_CN
dc.contributor.author董全峰zh_CN
dc.contributor.author田昭武zh_CN
dc.contributor.authorHU Jun-pingzh_CN
dc.contributor.authorZHANG Qizh_CN
dc.contributor.authorYANG Xizh_CN
dc.contributor.authorSHI Yi-ningzh_CN
dc.contributor.authorZHENG Ming-senzh_CN
dc.contributor.authorDONG Quan-fengzh_CN
dc.contributor.authorTIAN Zhao-wuzh_CN
dc.date.accessioned2013-11-18T07:46:52Z
dc.date.available2013-11-18T07:46:52Z
dc.date.issued2009-02-28zh_CN
dc.identifier.citation电化学,2009,15(01):13-16.zh_CN
dc.identifier.issn1006-3471zh_CN
dc.identifier.urihttps://dspace.xmu.edu.cn/handle/2288/58276
dc.description.abstract研究了全钒功率型液相储能体系惰性电极厚度、活性物质浓度、电解液流量等因素对放电电压和功率密度的影响,以及该液相储能体系的结构和功率特性.在本实验的优化条件下,输出功率密度可达3121W/L.zh_CN
dc.description.abstractThe energy storage system based on all-vanadium solution was studied for high power applications.The influences of the electrode thickness,the electrolyte concentration and velocity in performance of the storage system were investigated in detail.The power density could achieve 3121 W/L at the current density 750 mA/cm2 under the optimal conditions.zh_CN
dc.language.isozhzh_CN
dc.publisher厦门大学《电化学》编辑部zh_CN
dc.relation.ispartofseries研究论文zh_CN
dc.relation.ispartofseriesArticleszh_CN
dc.source.urihttp://electrochem.xmu.edu.cn/CN/abstract/abstract8541.shtmlzh_CN
dc.subject全钒zh_CN
dc.subject液相储能zh_CN
dc.subject功率特性zh_CN
dc.subjectall-vanadiumzh_CN
dc.subjectflow batteryzh_CN
dc.subjectpower characteristicszh_CN
dc.title全钒液相储能体系的功率特性研究zh_CN
dc.title.alternativePower Characteristics of the Energy Storage System Based on All-vanadium Solutionzh_CN
dc.typeArticlezh_CN
dc.description.note作者联系地址:厦门大学固体表面物理化学国家重点实验室化学化工学院;zh_CN
dc.description.noteAuthor's Address: State Key Laboratory for Physical Chemistry of Solid Sufaces,College of Chemistry and Chemical Engineering,Xiamen University Xiamen 361005,Fujian,Chinazh_CN


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