微细塑料摩擦-静电分离新工艺的实验模拟

Youssouf Brahmi, A. Tilmatine, R. Ouiddir, A. Bendaoud, K. Medles, L. Dascalescu
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引用次数: 2

摘要

摩擦静电分离是一种广泛应用于回收工业的颗粒塑料混合物。然而,由于粘着力和空气动力超过了电力,静电分离的效率仍然很低。本文的目的是优化一种基于流化床摩擦充电系统的混合细颗粒塑料分离新工艺。一对相对的高压平行板电极浸入该床中并进行垂直交替运动。用变速鼓风机提供的流化空气对平均粒径为0.1 mm的细PVC颗粒进行摩擦荷电。带电粒子被固定在极性相反的电极上。分离取决于几个因素:电场、电极运动的速度、颗粒产品的质量和流化速率。后者是最重要的因素,电极之间的间隔不应小于2厘米,以避免电晕放电。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental modelling of a new tribo-electrostatic separation process for micronized plastics
Tribo-electrostatic separation of mm-size granular plastics mixtures is widely used in recycling industry. However, electrostatic separation of micronized plastics is still inefficient since the adhesion and aerodynamic forces surpass the electric force. The aim of this paper is to optimize a new separation process for mixed fine granular plastics based on a fluidized bed tribocharging system. A pair of opposite high voltage parallel plate electrodes are immersed in that bed and undergo a vertical alternating movement. The fine PVC particles of average size 0.1 mm particles to be separated are tribocharged using a fluidization air provided by a variable-speed blower. The charged particles are pinned to the electrodes of opposite polarities. The separation depends on several factors: the electric field, the speed of the electrode movement, the mass of the granular product and the fluidization rate. This latter was the most significant factor and the interval between the electrodes should not be less than 2 cm to avoid corona discharge.
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