...
首页> 外文期刊>Materials transactions >Effect of Chloride Ions in Electrowinning Solutions on Zinc Deposition Behavior and Crystal Texture
【24h】

Effect of Chloride Ions in Electrowinning Solutions on Zinc Deposition Behavior and Crystal Texture

机译:氯离子在锌沉积行为和晶体纹理上的电解溶液中的影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

To clarify the effect of chloride ions on Zn electrowinning in terms of deposition behavior and crystal texture, the partial polarization curve, current efficiency, and AC impedance for Zn deposition as well as its morphology and crystal orientation were investigated. In solutions containing chloride ions, the partial polarization curve for Zn deposition was evidently depolarized, and the degree of depolarization increased when increasing the concentration of chloride ions from 300 to 6,000 mg/L. The exchange current density ?_0 for Zn deposition also increased with increasing chloride ion concentration, which indicates that the chloride ions promote the charge-transfer process during Zn deposition.The polarization resistance for Zn deposition measured by AC impedance decreased with increasing chloride ion concentration. Conversely, the capacity of the electric double layer increased with increasing chloride ion concentration from 300 to 1,200 mg/L; however, from 3,000 to 6.000 mg/L, the capacity decreased and approached that obtained from a chloride ion-free solution. On the other hand, the partial polarization curve for hydrogen evolution was almost unchanged by the presence of chloride ions. As a result, the current efficiency of Zn deposition increased by 5-7% and 1.7% in the initial stage of deposition (up until the thickness of Zn reached approximately 2.1 μm) and at 500 A/m~2 for 6 hours (482 μm), respectively. With the addition of 300 to 1,200 mg/L of chloride ions, the deposited Zn exhibited a preferred orientation of {0001} plane, and it increased with increasing chloride ion concentration, which is attributed to a decrease in the overpotential for Zn deposition; however, no preferred orientation of a specific plane was shown in the deposits when increasing the concentration of chloride ions above 3.000 mg/L. Some spherical concavities resulting from traces of evolved hydrogen gas were observed on the surface of deposited Zn, and the size of the concavities increased with increasing chloride ion concentration. The size of platelet crystals of the deposited Zn decreased with increasing chloride ion concentration, which indicates that the chloride ions possibly promote the nucléation rate of Zn crystals due to specific adsorption onto the cathode.
机译:为了阐明沉积行为和晶体纹理的氯离子对Zn电滤网的影响,研究了Zn沉积的部分偏振曲线,电流效率和AC阻抗以及其形态和晶体取向。在含有氯离子离子的溶液中,显着去极化了Zn沉积的部分偏振曲线,当从300至6,000mg / L的氯离子浓度增加时,去极化程度增加。随着氯离子浓度的增加,Zn沉积的交换电流密度Δ_0也增加,这表明氯离子在Zn沉积期间促进电荷转移过程。通过增加氯离子浓度测量的Zn沉积的偏振电阻降低。相反,电双层的容量随着氯离子浓度的增加而增加300至1,200mg / L;然而,从3,000至6000 mg / L,容量下降并接近由无离子溶液获得的。另一方面,通过存在氯离子的存在几乎不变的氢进化的部分偏振曲线。结果,Zn沉积的电流效率在沉积初始阶段增加了5-7%和1.7%(直至Zn的厚度达到约2.1μm),在500a / m〜2达到6小时(482分别为μm)。通过添加氯离子的300〜1200毫克/升,所沉积的锌表现出{0001}面的择优取向,并且它随着氯离子浓度,这归因于在超电势为Zn附着降低而增加;然而,当增加3.000mg / L以上的氯离子浓度时,在沉积物中没有显示特异性平面的优选取向。在沉积的Zn的表面上观察到由进化氢气的痕迹产生的一些球形凹凸,随着氯离子浓度的增加而增加。沉积Zn的血小板晶体的尺寸随着氯离子浓度的增加而降低,这表明氯离子可能由于在阴极上的特异性吸附而促进Zn晶体的核酸速率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号