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Hydraulic separation of plastic wastes: Analysis of liquid-solid interaction

机译:塑料废物的水力分离:液固相互作用分析

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摘要

The separation of plastic wastes in mechanical recycling plants is the process that ensures high-quality secondary raw materials. An innovative device employing a wet technology for particle separation is presented in this work. Due to the combination of the characteristic flow pattern developing within the apparatus and density, shape and size differences among two or more polymers, it allows their separation into two products, one collected within the instrument and the other one expelled through its outlet ducts. The kinematic investigation of the fluid flowing within the apparatus seeded with a passive tracer was conducted via image analysis for different hydraulic configurations. The two-dimensional turbulent kinetic energy results strictly connected to the apparatus separation efficacy. Image analysis was also employed to study the behaviour of mixtures of passive tracer and plastic particles with different physical characteristics in order to understand the coupling regime between fluid and solid phases. The two-dimensional turbulent kinetic energy analysis turned out to be fundamental to this aim. For the tested operating conditions, two-way coupling takes place, i.e., the fluid exerts an influence on the plastic particle and the opposite occurs too. Image analysis confirms the outcomes from the investigation of the two-phase flow via non-dimensional numbers (particle Reynolds number, Stokes number and solid phase volume fraction).
机译:机械回收工厂中塑料废物的分离是确保高质量二次原料的过程。在这项工作中提出了一种采用湿法分离颗粒的创新设备。由于设备内形成的特征流型以及两种或多种聚合物之间的密度,形状和尺寸差异的结合,它允许将它们分离成两种产品,一种收集在仪器内,另一种通过其出口管道排出。通过图像分析针对不同的液压配置对在装有被动示踪剂的设备内流动的流体进行了运动学研究。二维湍流动能的结果严格地与设备分离效率有关。图像分析还用于研究具有不同物理特性的被动示踪剂和塑料颗粒的混合物的行为,以了解流体和固相之间的耦合方式。二维湍流动能分析对于这一目标至关重要。对于测试的工作条件,发生双向耦合,即,流体对塑料颗粒产生影响,相反的情况也发生。图像分析通过无量纲数(颗粒雷诺数,斯托克斯数和固相体积分数)证实了两相流研究的结果。

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