期刊文献+

碳纤维作为铅酸蓄电池正极添加剂 被引量:3

Carbon fiber as anode additive for lead-acid batteries
在线阅读 下载PDF
导出
摘要 使用碳纤维作为铅酸蓄电池正极添加剂,对砂型膏和过渡型膏分别进行了研究,以自制的小型电池通过不同的电流恒流放电,考察碳纤维对铅酸蓄电池性能的影响.同时研究了在砂型膏中,碳纤维在正极活性物质中的最佳含量,以及使用碳纤维和硫酸钠作为复合正极添加剂时,硫酸钠在正极活性物质中的最佳含量.并对添加碳纤维的极板和没添加碳纤维的极板分别进行了交流阻抗的测试.实验结果表明:碳纤维的加入量为0.2%~0.3%(质量百分数)时,能提高电池正极活性物质利用率7%~15%;使用碳纤维含量为0.2%,硫酸钠含量为2.0%的复合添加剂时,比只添加碳纤维的电池活性物质利用率提高4%~7%.交流阻抗实验结果表明,碳纤维的加入能降低电池的内阻. Carbon fiber was used as anode additive in sand type paste and transfer type paste.Its effect on lead paste was studies through constant current discharge at different current with self-made batteries. At the same time the best content of carbon fiber in sand type paste was studied. Carbon fiber and sodium sulfate was used as complex anode additive and the best content of sodium sulfate in positive active material was found. CV and EIS was used to study the plate that with carbon fiber and without carbon fiber. The results show that the utilization of anode active material can be increased by 7%~15% by adding 0.2%~0.3% carbon fiber. As for complex additive, when adding 0.2% carbon fiber and 2.0% sodium sulfate, the anode utilization is increased by 4%~7% than only adding carbon fiber. And carbon fiber additive decreases the inner impedance of batteries.
出处 《电源技术》 CAS CSCD 北大核心 2004年第1期29-31,共3页 Chinese Journal of Power Sources
关键词 铅酸蓄电池 正极添加剂 碳纤维 碳素材料 铅膏 放电性能 lead-acid battery anode additive carbon fiber sodium sulfate electric impedance spectrum
  • 相关文献

参考文献8

二级参考文献36

共引文献57

同被引文献21

  • 1蒋春林.用内阻法预测阀控铅酸蓄电池故障[J].电力机车与城轨车辆,2004,27(5):51-52. 被引量:2
  • 2刘月英,李燕月,王伯羲.导电纤维对正极放电性能的影响[J].电池,2005,35(2):100-101. 被引量:1
  • 3董为毅,朱松然.铅酸蓄电池正极添加剂综述[J].蓄电池,1995,32(4):3-11. 被引量:19
  • 4戴长松,张彬,王殿龙,胡信国.泡沫铅板栅对VRLA电池充电接受能力的影响[J].哈尔滨工业大学学报,2006,38(5):801-804. 被引量:1
  • 5马志军.超微碳粒胶体在铅酸电池中的应用[J].南通职业大学学报,2007,21(2):96-98. 被引量:1
  • 6CHANG Y, MAO X, ZHAO Y, et al. Lead-acid battery use in the development of renewable energy systems in China [J]. J. Power Sources, 2009, 19(1): 176-183.
  • 7XIANG J, DING P, ZHANG H, et al. Beneficial effects of activated carbon additives on the performance of negative lead-acid battery electrode for high-rate partial-state-of-charge operation [J]. J. Power Sources, 2013, 241: 150-158.
  • 8SORIA M L, HERNANDEZ J C, VALENCIANO J, et al. New developments on valve-regulated lead- acid batteries for advanced automotive electrical systems [J]. J. Power Sources, 2005, 144(2): 473-485.
  • 9PONRAJ R, MCALLISTER S D, CHENG I F. Investigation on electronically conductive additives to improve positive active material utilization in lead-acid batteries [J]. J. Power Sources, 2009, 189: 1199-1203.
  • 10FERNANDEZ M, VALENCIANO J, TRINIDAD F, et al. The use of activated carbon and graphite for the development of lead-acid batteries for hybrid vehicle applications [J]. J. Power Sources, 2010, 195(14): 4458-4469.

引证文献3

二级引证文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部