cathodic protection 阴极保护 ; [化工] 阴极防蚀 ; 阴极锈法 ; 阴极防蚀法
cathodic coating 阴极性镀层 ; [化工] 阴极镀层 ; 阴极膜 ; 阴极保护膜
cathodic corrosion [化工] 阴极腐蚀 ; 阴极蜕化
cathodic inhibitor [化工] 阴极抑制剂 ; 阴极防蚀剂 ; [化工] 阴极禁止器
cathodic reaction [物化] 阴极反应
cathodic control 阴极控制 ; 阴极
cathodic protection system 阴极保护系统 ; 阴极保护 ; 阴极保系统
cathodic protector 阴极保护器
The apparent active energy of Cr3+ reduction was 37.19~78.37kJ/mol,indicating that the cathodic reduction of Cr3+ was a process controlled byelectrochemical step. The results of cyclic voltammetry and A. C. impedance indicated that the discharge of Cr3+ ions on the cathode wascompleted in two steps: In the first step, the Cr3+ ion obtained twoelectrons and formed an intermediate electrochemically active adsorptiveproduct, in the second step, the adsorptive intermediate product obtainedan electron and was reduced to Cr.
Cr3+还原的表观活化能为373.19~78.37KJ/mol,Cr3+离子在阴极的还原反应为电化学步骤控制过程;循环伏安和交流阻抗法研究表明,Cr3+离子在阴极分两步进行放电;第一步得到2个电子反应生成吸附态的电活性中间产物,第二步为吸附态中间产物得到1个电子进一步还原成Cr。
参考来源 - Ni·2,447,543篇论文数据,部分数据来源于NoteExpress
"cathodic deposition of metals"
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