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Performance improvement of a separator tribo-electrostatic aero for granular materials plastics recycling of waste electrical and electronic equipment

机译:用于粒状材料的分离器摩擦静电空气的性能改进废旧电子电气设备的塑料回收

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The two-conveyor-electrodes tribo-aero-electrostatic separator patented in 2010 was designed to sort granular mixtures of insulating materials in a fluidized bed subjected to an electric field perpendicular to the direction of the fluidizing air. The prototype ≤has proven its efficiency for the separation of insulating granules ≤ 2 mm, attaining excellent recovery rates. Its performances were less satisfactory for larger particles (2 to 4.5 mm). The objective of this work is to evaluate three modifications of the construction of this device, in order to increase the hourly throughput and improve the purity of the products, by controlling the charge acquired by the granules and the electric field intensity. Numerical simulations enabled the optimization of the electric field distribution in the active zone of the separator and an experimental study was carried out in order to identify the best conditions for granule charging by triboelectric effect. The tests were carried out for four configurations of the electrode system, by using a mixture of acrylonitrile butadiene styrene (ABS) and high impact polystyrene (HIPS) originated from grinding out-of-use computer cases. The typical granule size was 2 to 4.5 mm. The experimental approach validated a change in the position of the fluidized bed with respect to the conveyor electrodes, to increase the residence time of the granular materials and hence the amount of electric charge acquired by each particle. In order to intensify the electrical field, two solutions were tested and validated: (1) add a grounding electrode in the proximity of the high-voltage electrodes; (2) dispose vertically the high voltage electrodes. For the tested materials, the vertical arrangement of the electrodes gave the best hourly throughput rates and purity of the separated products.
机译:于2010年申请专利的两输送电极摩擦式空气静电分离器设计用于在流化床中对垂直于流化空气方向的电场的绝缘材料的颗粒混合物进行分选。 ≤原型已证明可有效分离≤2 mm的绝缘颗粒,并具有出色的回收率。对于较大的颗粒(2至4.5毫米),其性能不太理想。这项工作的目的是评估该设备结构的三种改进,以便通过控制颗粒获得的电荷和电场强度来提高每小时的产量并提高产品的纯度。数值模拟可以优化分离器有效区域中的电场分布,并进行了一项实验研究,以通过摩擦电效应确定最佳的颗粒充电条件。通过使用丙烯腈丁二烯苯乙烯(ABS)和高抗冲聚苯乙烯(HIPS)的混合物对电极系统的四种配置进行了测试,这些混合物源于不再使用的计算机机箱。典型的颗粒尺寸为2至4.5mm。实验方法验证了流化床相对于输送电极位置的变化,以增加粒状材料的停留时间,从而增加了每个颗粒获得的电荷量。为了增强电场,测试并验证了两种解决方案:(1)在高压电极附近添加接地电极; (2)垂直放置高压电极。对于测试的材料,电极的垂直排列可提供最佳的每小时吞吐速率和分离出的产品的纯度。

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