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Efficient Recovery of Silver from Crystalline Silicon Solar Cells by Controlling the Viscosity of Electrolyte Solvent in an Electrochemical Process

机译:通过在电化学过程中控制电解质溶剂的粘度,从晶体硅太阳能电池的高效回收银

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摘要

We present electrowinning of silver (Ag) from crystalline silicon (c-Si) solar cells using a solution of methanesulfonic acid (MSA) as the electrolyte. Ag dissolved effectively in MSA because of its high solubility in MSA; however, the electrochemical recovery of Ag from MSA solutions was found to be inefficient because of the low mobility of Ag ions in MSA, owing to its high viscosity. Therefore, we decreased the viscosity of MSA by adding deionized (DI) water, as a possible method for enhancing the mobility of Ag ions. The concentrations of added DI water were 0, 1.1, 5.0, 9.3, and 20.8 M, respectively. Further, we performed cyclic voltammetry for each solution to calculate the diffusion coefficient using the Randles⁻Sevcik equation, and analyzed the viscosity of MSA solutions depending on the concentration of added water using a rheometer. The morphologies of the electrochemically recovered Ag particles changed with variations in the amount of the added water, from branch-like structures to dendritic structures with a decreasing size. Moreover, the cathodic current efficiency increased considerably with increasing concentration of the added DI water. Finally, we recovered Ag with >99.9% (3N) purity from c-Si solar cells by electrowinning, as determined by glow discharge mass spectrometry.
机译:我们使用甲磺酸(MSA)作为电解质的溶液将银(Ag)从结晶硅(C-Si)太阳能电池呈现。 AG有效地在MSA中溶解,因为它在MSA中的高溶解度;然而,由于其高粘度,因此发现来自MSA溶液的AG的电化学回收来自MSA溶液的电化学率效率低下。因此,我们通过添加去离子(DI)水来降低MSA的粘度,作为提高Ag离子的迁移率的可能方法。添加的二水的浓度分别为0,1.1,5.0,9.3和20.8μm。此外,我们对每个解决方案进行了循环伏安法,以计算使用Randles⁻sevcik方程来计算扩散系数,并根据使用流变仪的添加水的浓度分析MSA溶液的粘度。电化学回收的Ag颗粒的形态与添加的水的量的变化,从分支结构到具有降低尺寸的树枝状结构。此外,阴极电流效率随着添加的二水浓度的增加而显着增加。最后,通过电热通过辉光放电质谱法测定,从C-Si太阳能电池中从C-Si太阳能电池中获得纯度> 99.9%(3N)纯度。

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