摘要
The surface morphology and composition of negative active material (NAM) both on the cast grid and on lead foam grid at the state of charge and discharge, in valve-regulated lead acid (VRLA) battery, were characterized by SEM and XRD, respectively. Moreover, the specific surface area and electrochemical impedance of the negative active material for both negative electrode grids were studied by chronoamperometry and EIS.The result indicates that after lots of cycles, compared with the cast grid, the sponge lead of the lead foam negative plate is smaller; the specific surface area increases by about 16%; the residual PbSO4 on the surface of the electrode is less at the state of charge. At the state of discharge, PbSO4 crystals on the surface of the negative plate of lead foam are smaller, and the specific surface area increases to 209%. EIS analysis shows that compared with the negative plate of cast grid, no matter what state the negative plate of lead foam is at, the electrochemical impedance of the material is lower.
The surface morphology and composition of negative active material (NAM) both on the cast gnu and on lead foam grid at the state of charge and discharge, in valve-regulated lead acid (VRLA) battery, were charac- terized by SEM and XRD, respectively. Moreover, the specific surface area and electrochemical impedance of the negative active material for both negative electrode grids were studied by chronoamperometry and EIS.
The result indicates that after lots of cycles, compared with the cast grid, the sponge lead of the lead foam negative plate is smaller; the specific surface area increases by about 16%; the residual PbSO4 on the surface of the electrode is less at the state of charge. At the state of discharge, PbSO4 crystals on the surface of the negative plate of lead foam are smaller, and the specific surface area increases to 209%. EIS analysis shows that compared with the negative plate of cast grid, no matter what state the negative plate of lead foam is at, the electrochemical impedance of the material is lower.
出处
《无机化学学报》
SCIE
CAS
CSCD
北大核心
2005年第12期1875-1879,共5页
Chinese Journal of Inorganic Chemistry
基金
哈尔滨市科技攻关项目(No.2003AA5CG043)。
关键词
铅酸电池
负极活性物质
板栅材料
泡沫铅
lead acid battery
negative active material
grid material
lead foam