首页> 外文会议>International Conference on Electrical Sciences and Technologies in Maghreb >Technico-economic comparison between two new triboelectric charging processes of insulating granular products and their application to the electrostatic separation of WEEE Comparaison technico-économique entre deux nouveaux procédés de chargement triboéle
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Technico-economic comparison between two new triboelectric charging processes of insulating granular products and their application to the electrostatic separation of WEEE Comparaison technico-économique entre deux nouveaux procédés de chargement triboéle

机译:两种新的粒状产品的技术经济比较及其在两种新的曲线加载过程中WEEE技术经济比较静电分离的应用

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It seems important to point out that the combination of triboelectric charging and electrostatic separation techniques is one of the best alternatives for the recycling of waste electrical and electronic equipment (WEEE). Our job is to evaluate and study two new tribo-charging devices to isolate particles from products to be recycled; the first device consists of a PMMA cylinder in which one or more coaxial propellers drive the plastic pellets in a helical motion which promotes their triboelectric charging; the second device is arranged on two parallel axes of rotation, in the same cylinder, to create two descending helical aerodynamic movements, either in the same direction or in opposite directions, and thus to cause a large number of collisions between insulating granules , which will charge by triboelectric effect. The experimental design methodology was used for the modelling and optimization of two charging processes for electrostatic separation application using a treadmill separator where the products used are mainly: PA, PC, HIPS, ABS and PVC. The effectiveness of the device was evaluated by experiments carried out with mixtures of three different plastics, on an electrostatic separator with a metal conveyor. The feasibility of the separation is related to the nature of the walls of the tribo-aero electric charging device, but is not significantly influenced by the mass flow.
机译:指出,摩擦电荷和静电分离技术的组合是废物电气和电子设备(WEEE)的回收的最佳替代方案之一。我们的工作是评估和研究两个新的摩擦充电装置,将粒子与产品一起孤立;第一装置由PMMA圆筒组成,其中一个或多个同轴螺旋桨在螺旋运动中驱动塑料颗粒,促进其摩擦充电;第二装置布置在同一圆筒中的两个平行旋转轴上,以在相同方向或相反方向上产生两个降序的螺旋空气动力学运动,从而导致绝缘颗粒之间的大量碰撞摩擦电效应充电。实验设计方法用于使用跑步机分离器的静电分离施用的两个充电过程的建模和优化,主要是:PA,PC,臀部,ABS和PVC。通过用三种不同塑料的混合物的实验在具有金属输送机的静电隔板上进行的实验评估该装置的有效性。分离的可行性与摩擦机电充电装置的壁的性质有关,但不会受到质量流量的显着影响。

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