Related Experiment Video
Updated: Jan 10, 2026

Accumulation and Analysis of Cuprous Ions in a Copper Sulfate Plating Solution
Published on: March 20, 2019
Rapid, clean and quantitative analysis of Cu2+ in copper refining electrolyte via chemometrics-driven Vis-SWNIR
Du Yuan1, Yong Liu1, Linhua Jiang1
1State Key Laboratory of Pollution Control and Resources Reuse, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, China. jianglinhua@tongji.edu.cn.
Abstract:
The development of rapid and non-destructive monitoring methods for Cu2+ concentration in copper refining electrolyte is of great significance for improving product quality and pollution control in the copper smelting industry. However, the spectral behavior of high-concentration Cu2+ in electrolytes and the presence of multiple impurities pose major hindrances to the development of such technologies. Herein, a novel spectroscopic measurement system is proposed: by integrating visible-shortwave near-infrared (Vis-SWNIR) absorption spectroscopy with chemometric calibration models, it can achieve clean, rapid, accurate, and cost-effective quantification of high-concentration Cu2+. Combined UV-Vis-SWNIR spectroscopy and chemometric analyses revealed that among electrolyte impurities, only Ni2+ affects the Vis-SWNIR region spectral analysis of Cu2+, with both high-concentration Cu2+ and Ni2+ exhibiting strong linear concentration-absorbance relationships. A spectral dataset (n = 600) was established using the system, incorporating Cu2+ and screened impurities at concentrations simulating real electrolytes. Four calibration models (CNN, MLR, PLS, and SVR) were trained, with the optimized model achieving a relative error of 1.1% for simulated samples. A comparative analysis revealed that the developed system (with an instrument cost of only ∼700 $ USD) not only outperforms conventional Cu2+ monitoring methods in accuracy, but also offers advantages of rapid monitoring, low analytical cost, and pollution-free operation. The proposed spectroscopic measurement system not only has potential applications in cleaner and more efficient copper refining processes, but also provides a promising solution for real-time, non-destructive monitoring of high-concentration, impurity-rich complex liquids.
Related Concept Videos
Precipitation and Co-precipitation
Electrodeposition
Electrodeposition can...
Qualitative Analysis
For instance, group IV...
Qualitative Analysis
There are two main approaches to qualitative analysis:...
Quantitative Analysis
In quantitative analysis, two key measurements are made: the sample quantity and a property proportional to the amount of the analyte (the substance being analyzed). This forms the basis of the...
Precipitation Titration: Endpoint Detection Methods
In the Volhard method, a standard excess of AgNO3 is first added to the...

