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阴极保护在储罐底板外壁保护的应用 被引量:2

The Application of Cathodic Protection for Storage Tank Bottoms
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摘要 介绍了阴极保护的基本原理、主要参数以及准则,分析了几种阴极保护方式的特点,详细阐述了网状阳极阴极保护系统的结构组成和工作原理、设计方法及计算公式,并对阴极保护系统进行了技术经济分析。 The rationale, main parameters and rules of cathodic protection were introduced, the characteristic of some cathodic protection modes was analyzed, the frame, theory, design means and account formula were expounded, as well as the analysis of the technology and economy of cathodic protection.
作者 吕鹏飞
出处 《广州化工》 CAS 2013年第15期47-49,78,共4页 GuangZhou Chemical Industry
关键词 阴极保护 网状阳极 储罐底板 cathodic protection expanded mesh anodes storage tank bottoms
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参考文献10

  • 1王兆翔,陈立泉.锂离子电池正极材料研究进展[J].电源技术,2008,32(5):287-292. 被引量:27
  • 2贾冬梅.锂离子电池正极材料市场分析[J].精细与专用化学品,2012,20(4):37-41. 被引量:10
  • 3武明昊,陈剑,王崇,衣宝廉.锂离子电池负极材料的研究进展[J].电池,2011,41(4):222-225. 被引量:34
  • 4郭营军,晨辉,其鲁.锂离子电池电解液研究进展[J].物理化学学报,2007(Supp):80-89.
  • 5Vinodkumar EACHTERI, Rotem MAROM, Ran ELAZARI1, GregorySALITRA, et al. Challenges in the development of advance Li - ionbatteriesl: a review[ J]. Energy & Environmental Science, 2011 (9):3243 -3262.
  • 6Steven E SLOOP, John B KERR, Kim KINOSHITA. The role fo Li -ion battery electrolyte reactivity in performance decline and self ~ dis-charge[ J]. Journal of Power Sources, 2003, V( 119 - 121) : 330 -337.
  • 7薛建军,唐致远,荣强.软包装锂离子电池性能研究[J].天津大学学报(自然科学与工程技术版),2004,37(7):655-658. 被引量:12
  • 8鲁桂梅,谢秋,石永伉,任卫斌.锂离子电池化成工艺研究[J].化学工程与装备,2011(9):46-47. 被引量:17
  • 9Xiangchun ZHANG, Wei SHYY, Ann Marie SASTRY. Numerical sim-ulation of intercalation - induced stress in Li - ion battery electrode par-ticles [ J ] . Journal of The Electrochemical Society, 2007, 154 ( 10 ):A910-A916.
  • 10M BROUSSELY, P BIENSAN, B SIMON. Lithium insertion into hostmaterials:the key to success for Li ion batteries[ J]. ElectrochemicalActa,1999,45(1-2) :3-22.

二级参考文献44

  • 1舒杰,程新群,史鹏飞.锂离子电池用Sn-Ni合金负极的研究[J].电池,2004,34(4):235-237. 被引量:9
  • 2Ohta N, Nagaoka K, Hoshi K, et al.Carbon-coated graphite for anode of lithium ion rechargeable batteries: graphite substrates for carbon coating[J]. J Power Sources,2009,194(2) :985 - 990.
  • 3Zou L, Kang F Y, Zheng Y P, et al. Modified natural flake graphite with high cycle performance as anode material in lithium ion batteries [ J ]. Electrochim Acta, 2009,54 ( 15 ) : 3 930 - 3 934.
  • 4Fujimoto H, Mabuchi A, Tokumitsu K, et al. Li nuclear magnetic resonance studies of hard carbon and graphite/hard carbon hybrid anode for Li-ion battery [ J ] . J Power Sources, 2011,196 ( 3 ) : 1 365-1 370.
  • 5Hu J, Li H, Huang X J. Electrochemical behavior and microstruc- ture variation of hard carbon nano-spherules as anode material for Li- ion batteries[J]. Solid State lonics,2007,178(3 - 4) :265 - 271.
  • 6Liu T,l'.uo R Y, Yoon S H, et al. Effect of vacuum carbonization treatment on the irreversible capacity of hard carbon prepared from biomass material[ J ]. Mater Lett, 2010,64 ( 1 ) : 4 - 76.
  • 7Lian P H,Zhu X F, Liang S Z, et al.Large reversible capacity of high quality graphene sheets as an anode material for lithium-ion batteries[J]. Electrochim Acta,2010,55(12):3 909- 3 914.
  • 8Wang G X, Wang B, Wang X L, et al. Sn/graphene nanocomposite with 3D architecture for enhanced reversible lithium storage in lithium ion batteries[J] .J Mater Chem, 2009, 19(44) : 8 378 - 8 384.
  • 9Winter M, Besenhard J O. Electrochemical lithiation of tin and tin- based intermetallics and composites [ J ]. Electrochim Acta, 1999, 45(1 -2):31 -50.
  • 10Kasavajjula U, Wang C S, Appleby A J. Nano- and bulk-silicon- based insertion anodes for lithium-ion secondary cells[J]. J Power Sources,2007,163(2) : 1 003 - 1 039.

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