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Validation of a deplasticizer-ball milling method for separating Cu and PVC from thin electric cables: A simulation and experimental approach

机译:从细电缆中分离铜和聚氯乙烯的去增塑剂球磨方法的验证:一种模拟和实验方法

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摘要

There is increasing demand in the electronics recycling industry for an effective method to separate polyvinyl chloride (PVC) and Cu from thin electric cable waste. Herein, a novel separation technique involving PVC embrittlement via plasticizer extraction and crushing by ball milling is proposed. The method was developed by varying the size, quantity, and hardness of the cables, as well as the size and quantity of the milling balls, to determine a combination that resulted in complete separation of PVC and high-purity Cu (99.9%) from thin electric cables. The experimental crushing behavior was demonstrated via a sphere-to-cylinder discrete element model combined with a statistical approach. The mechanism of PVC crushing generated cracks from the edge to the center of the cable via ball impacts that were strong enough to overcome the elastic repulsion force of the PVC. The resulting method was found to be effective at separating PVC and high-purity Cu (99.9%) from de-plasticized thin electric cables with diameters of 1.5–2.7 mm.
机译:在电子回收行业中,对从薄电缆废料中分离聚氯乙烯(PVC)和铜的有效方法的需求不断增长。在此,提出了一种新的分离技术,该技术涉及通过增塑剂提取而使PVC脆化并通过球磨将其粉碎。通过改变电缆的尺寸,数量和硬度以及铣削球的尺寸和数量来开发该方法,以确定一种组合物,该组合物导致PVC和高纯度Cu(> 99.9%)的完全分离。从细电缆。通过球对圆柱离散元素模型结合统计方法证明了实验的破碎行为。 PVC压碎的机理是通过球的撞击从电缆的边缘到中心产生裂纹,该裂纹足以克服PVC的弹性排斥力。发现所得的方法可有效地从直径为1.5-2.7mm的去塑化细电缆中分离PVC和高纯度Cu(> 99.9%)。

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