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Optimization of key factors of the electrostatic separation for crushed PCB wastes using roll-type separator

机译:使用辊式分离器优化粉碎的PCB废料静电分离的关键因素

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摘要

For the electrostatic separation process, the separator is most crucial. As a classical one, the roll-type corona-electrostatic separator has some advantages in recycle of waste electrical and electronic equipment (WEEE). Some researches have been done in this field and shown that there was a complex correlation between its configuration and the efficiency of the separation. In this paper, a fractional factorial design (2_v~(1-5)) was built and 32 tests were performed on a roll-type corona-electrostatic separator. The sample of granular mixture got from crushed PCB wastes (size 0.3-0.45 mm, containing 25% metal and 75% nonmetal). The experimental data were discussed and used to analyze the factors' main effect, interaction and optimization of the process. Three liner-interaction mathematical models were derived to describe the mass of middling fraction (M), conductor fraction (C) and Nonconductor fraction (NC), respectively. The results show that the efficiency of the PCB waste electrostatic separation process has a significant correlation with not only factors' main effects, but also the interaction between them.
机译:对于静电分离过程,分离器至关重要。滚动式电晕静电分离器是一种经典的静电分离器,在回收废弃电子电气设备(WEEE)方面具有一些优势。在该领域中已经进行了一些研究,结果表明其构型与分离效率之间存在复杂的相关性。本文建立了分数阶因子设计(2_v〜(1-5)),并在辊式电晕静电分离器上进行了32次测试。粒状混合物样品来自碎碎的PCB废料(尺寸为0.3-0.45 mm,包含25%的金属和75%的非金属)。讨论了实验数据,并用于分析这些因素的主要作用,相互作用和工艺优化。推导了三种衬里相互作用数学模型,分别描述了中等分数(M),导体分数(C)和非导体分数(NC)的质量。结果表明,PCB废料静电分离工艺的效率不仅与主要影响因素密切相关,而且与它们之间的相互作用密切相关。

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