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Separation of plastic waste via the hydraulic separator Multidune under different geometric configurations

机译:通过液压分离器Multidune在不同的几何结构下分离塑料废料

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摘要

The recovery of high-quality plastic materials is becoming an increasingly challenging issue for the recycling sector. Technologies for plastic recycling have to guarantee high-quality secondary raw material, complying with specific standards, for use in industrial applications. The variability in waste plastics does not always correspond to evident differences in physical characteristics, making traditional methodologies ineffective for plastic separation. The Multidune separator is a hydraulic channel allowing the sorting of solid particles on the basis of differential transport mechanisms by generating particular fluid dynamic conditions due to its geometric configuration and operational settings. In this paper, the fluid dynamic conditions were investigated by an image analysis technique, allowing the reconstruction of velocity fields generated inside the Multidune, considering two different geometric configurations of the device, Configuration A and Configuration B. Furthermore, tests on mono- and bi-material samples were completed with varying operational conditions under both configurations. In both series of experiments, the bi-material samples were composed of differing proportions (85% vs. 15%) to simulate real conditions in an industrial plant for the purifying of a useful fraction from a contaminating fraction. The separation results were evaluated in terms of grade and recovery of the useful fraction.
机译:对于回收行业而言,高质量塑料材料的回收正成为日益严峻的挑战。塑料回收技术必须保证符合特定标准的高质量二次原料用于工业应用。废塑料的可变性并不总是与物理特性的明显差异相对应,从而使传统方法对塑料分离无效。 Multidune分离器是一种液压通道,由于其几何构型和运行设置,可通过产生特定的流体动态条件,根据差分传输机制对固体颗粒进行分选。在本文中,通过图像分析技术研究了流体动力学条件,考虑到设备的两种不同几何配置(配置A和配置B),可以重构Multidune内部生成的速度场。 -在两种配置下,在不同的操作条件下完成了材料样本。在这两个系列的实验中,双材料样品均由不同比例(85%对15%)组成,以模拟工业工厂中从污染级分中纯化有用级分的真实条件。根据等级和有用馏分的回收率评估了分离结果。

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