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首页> 外文期刊>Journal of material cycles and waste management >Optimizing acid leaching of copper from the wastewater treatment sludge of a printed circuit board industry using factorial experimental design
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Optimizing acid leaching of copper from the wastewater treatment sludge of a printed circuit board industry using factorial experimental design

机译:使用析因实验设计优化印刷电路板行业废水处理污泥中铜的酸浸

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摘要

Heavy metal containing sludge from printed circuit board production (PCB) is not only classified as hazardous waste, but also as a potentially valuable raw material for copper recovery. Since sludge leaching is a significant first step in copper extraction yield via hydrometallurgy, we assessed the optimum copper acid-leaching conditions using a Design of Experiment (DOE) approach (3(3) full factorial design) and the multiple response method called the desirability (D) function. The effects of acid concentration, the ratio of acid volume to sludge quantity ("L/S ratio"), and leaching time on copper-leaching efficiency were evaluated. The model equation derived using Minitab 17.0 predicts that copper-leaching efficiency can reach 97.0% at optimal values of 0.84 M sulfuric acid, L/S ratio of 100:1, and a leaching time of 80 min. Experiments verified a 96.8% (sigma = 0.4%) copper-leaching efficiency. The small discrepancy between predicted and experimental data showed that the DOE approach was a suitable tool for predicting leaching efficiency from PCB sludge by sulfuric acid.
机译:来自印刷电路板生产(PCB)的含重金属污泥不仅被分类为危险废物,而且还被视为潜在的有价值的铜回收原料。由于污泥浸出是通过湿法冶金法提炼铜的重要第一步,因此我们使用实验设计(DOE)方法(3(3)全因子设计)和称为响应性的多重响应方法评估了最佳的铜酸浸条件。 (四)功能。评估了酸浓度,酸体积与污泥量之比(“ L / S比”)以及浸出时间对铜浸出效率的影响。使用Minitab 17.0得出的模型方程式预测,在0.84 M硫酸,L / S比为100:1和80分钟浸出时间的最佳值下,铜浸出效率可以达到97.0%。实验证实了96.8%(sigma = 0.4%)的铜浸出效率。预测数据与实验数据之间的微小差异表明,DOE方法是预测硫酸从PCB污泥中浸出效率的合适工具。

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