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Experimental investigation of a new tribo-electrostatic separation process for mixed fine granular plastics

机译:混合细粒塑料摩擦摩擦静电分离新工艺的实验研究

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Tribo-electrostatic separation of mm-size particles is a well-known process, widely used in the recycling industry. However, when processing fine particles having an average diameter of 0.1 mm or less, this technique is still inefficient. The aim of this paper is the experimental investigation of a patent-pending tribo-electrostatic separation process based on a fluidized bed tribocharging system where the fine granules to be sorted are exposed to the electric field generated between a pair of rotating metallic disks connected to two high-voltage supplies of opposite polarities. The lower parts of the disk electrodes are immersed in the fluidized bed. The experiments were carried out on a granular mixture composed of fine white and grey PVC particles of average size 20 µm. The particles to be separated are positively and negatively tribo-charged using the fluidization air provided by variable-speed blower, and then they are pinned to the disk electrodes of opposite polarities. The separation outcome, in terms of recovery and purity, is highly efficient and depends on several factors: the high voltage level, the rotating speed of the disks, the inter-electrodes gap, the thickness of fluidized bed and the fluidization rate.
机译:摩擦静电分离毫米大小的颗粒是众所周知的过程,广泛用于回收行业。然而,当处理平均直径为0.1mm或更小的细颗粒时,该技术仍然无效。本文的目的是基于流化床摩擦充电系统的一项正在申请专利的摩擦静电分离工艺的实验研究,该系统将待分选的细粒暴露于一对旋转的金属圆盘(连接到两个金属圆盘)之间产生的电场中极性相反的高压电源。圆盘电极的下部浸入流化床中。实验是在平均大小为20 µm的白色和灰色PVC细颗粒组成的颗粒混合物上进行的。使用变速鼓风机提供的流化空气对要分离的颗粒进行正负摩擦充电,然后将它们固定到极性相反的圆盘电极上。就回收率和纯度而言,分离结果是高效的,并且取决于几个因素:高电压水平,圆盘的旋转速度,电极间间隙,流化床的厚度和流化速率。

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