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Experimental study of the effect of ambient air humidity on the efficiency of tribo-aero-electrostatic separation of mixed granular solids

机译:环境空气湿度对混合颗粒固体的摩擦-空气-静电分离效率影响的实验研究

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Mixed granular insulating materials can be electro-statically separated by tribocharging them in a fluidized bed affected by an electric field orthogonally oriented to the direction of the fluidization air. The aim of the present paper is to evaluate the effect of ambient air humidity on the outcome of this tribo-aero-electrostatic separation process, i.e. the mass of the granules collected at the two electrodes that generate the electric field. The mixture to be separated was composed of Acrylonitrile Butadiene Styrene (ABS) and High Impact Polystyrene (HIPS) originating from the recycling of waste electric and electronic equipment. A set of experiments carried out for two durations (30 s and 60 s), at two values of ambient relative humidity (RH = 20% and RH = 40%), pointed out that the separation becomes efficient beyond a certain value of the initial mass of the mixtures. The experimental design methodology and commercial software MODDE 5.0 were then employed for investigating the effects of two process variables: the speed of the metallic conveyors that serve as high-voltage electrodes, and the humidity of ambient air. The effectiveness of separation was found to depend significantly on the latter factor. Surface potential decay measurements performed on charged layers of the two sorts of particles facilitate the interpretation of separation results: at higher RH, the hydrophilic ABS granules loose faster their charge when in contact with a grounded plate. As a consequence, they are in less number than the HIPS granules to be collected at the exit of the tribo-aero-electrostatic separation chamber.
机译:混合的颗粒状绝缘材料可以通过在流化床中进行摩擦充电而静电分离,流化床受到与流化空气方向正交的电场的影响。本文的目的是评估环境空气湿度对该摩擦-空气-静电分离过程的结果的影响,即在产生电场的两个电极处收集的颗粒的质量。待分离的混合物由丙烯腈丁二烯苯乙烯(ABS)和高抗冲聚苯乙烯(HIPS)组成,这些废物源于废旧电气和电子设备的回收。在环境相对湿度的两个值(RH = 20%和RH = 40%)下,进行了两个持续时间(30 s和60 s)的一组实验,指出分离的效率超过了初始值混合物的质量。然后,使用实验设计方法和商业软件MODDE 5.0来研究两个过程变量的影响:用作高压电极的金属传送带的速度以及环境空气的湿度。发现分离的有效性很大程度上取决于后一个因素。在两种颗粒的带电层上进行的表面电势衰减测量有助于解释分离结果:在较高的RH下,亲水性ABS颗粒与接地板接触时电荷的散布速度更快。结果,它们的数量少于在摩擦-空气-静电分离室出口处要收集的HIPS颗粒的数量。

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