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Layer modeling of zinc removal from metallic mixture of waste printed circuit boards by vacuum distillation

机译:通过真空蒸馏从废印刷电路板的金属混合物中去除锌的层模型

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A layer model was established to elucidate the mechanism of zinc removal from the metallic mixture of waste printed circuit boards by vacuum distillation. The removal process was optimized by response surface methodology, and the optimum operating conditions were the chamber pressure of 0.1 Pa, heating temperature of 923 K, heating time of 60.0 min, particle size of 70 mesh (0.212 mm) and initial mass of 5.25 g. Evaporation efficiency of zinc, the response variable, was 99.79%, which indicates that the zinc can be efficiently removed. Based on the experimental results, a mathematical model, which bears on layer structure, evaporation, mass transfer and condensation, interprets the mechanism of the variable effects. Especially, in order to reveal blocking effect on the zinc removal, the Blake-Kozeny-Burke-Plummer equation was introduced into the mass transfer process. The layer model can be applied to a wider range of metal removal by vacuum distillation.
机译:建立层模型以阐明通过真空蒸馏从废印刷电路板的金属混合物中除去锌的机理。去除工艺通过响应表面方法进行了优化,最佳操作条件为腔室压力为0.1 Pa,加热温度为923 K,加热时间为60.0分钟,粒径为70目(0.212毫米)和初始质量为5.25克。响应变量锌的蒸发效率为99.79%,表明锌可以有效去除。根据实验结果,建立了一个基于层结构,蒸发,传质和凝结的数学模型,解释了变量效应的机理。特别是,为了揭示对锌去除的阻断作用,将Blake-Kozeny-Burke-Plummer方程引入了传质过程。该层模型可以应用于通过真空蒸馏去除金属的更大范围。

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