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一种新型铅钐锡正极板栅合金
引用本文:周彦葆,杨春晓,马敏,周伟舫,柳厚田. 一种新型铅钐锡正极板栅合金[J]. 高等学校化学学报, 2003, 24(9): 1677-1679
作者姓名:周彦葆  杨春晓  马敏  周伟舫  柳厚田
作者单位:复旦大学化学系, 上海 200433
基金项目:国家自然科学基金(批准号:20173013,29873013)
摘    要:目前,铅钙锡合金已广泛用作阀控式铅酸蓄电池(VRLAB)的板栅材料.由于钙的存在,使铅钙锡合金阳极氧化时易形成高阻抗的阳极腐蚀层,并出现晶间腐蚀,电池循环充放电能力仍不理想.为克服铅钙锡合金作为正极板栅材料的不利因素.

关 键 词:Pb-Sm-Sn合金  铅酸蓄电池  浮充电位  阳极PbO2腐蚀层  
文章编号:0251-0790(2003)09-1677-03
收稿时间:2003-03-25

A New Pb-Sm-Sn Positive Grid Alloy
ZHOU Yan-Bao,YANG Chun-Xiao,MA Min,ZHOU Wei-Fang,LIU Hou-Tian. A New Pb-Sm-Sn Positive Grid Alloy[J]. Chemical Research In Chinese Universities, 2003, 24(9): 1677-1679
Authors:ZHOU Yan-Bao  YANG Chun-Xiao  MA Min  ZHOU Wei-Fang  LIU Hou-Tian
Affiliation:Department of Chemistry, Fudan University, Shanghai 200433, China
Abstract:The anodic behavio of Pb-(0. 075%-0. 73%)Sm-0. 63%Sn and Pb-0. 088%Ca-0. 63%Sn alloys in sulfuric acid solution has been studied by using cyclic voltammetry, linear sweep voltammetry and impedance-time curves. The experimental results show that samarium in the Pb-Sm-Sn alloy can inhibit the growth of the anodic corrosion layer(PbO2) formed on the alloy. Moreover, the evolution of oxygen at the Pb-Sm-Sn alloy electrode is less than that at the Pb-Ca-Sn alloy electrode. 2V-200 A·h VRLA batteries were manufactured by using the above two alloy positive grids separately. he corrosion layers formed on the positive gird surfaces after the life test of the batteries were observed by SEM. The results of the test show that the capacity loss of the battery with the Pb-Sm-Sn positive grids is significantly less than that of the battery with the Pb-Ca-Sn positive grids, and the longer floating charge life of the battery with the Pb-Sm-Sn positive grids is caused by the better corrosion-resistant performance of the Pb-Sm-Sn alloy with the anodic corrosion layer having a finer grain structure.
Keywords:Pb-Sm-Sn alloy  Lead-acid battery  Floating charge potential  Anodic PbO2 corrosion layer
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