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Investigation on an innovative technology for wet separation of plastic wastes

机译:研究塑料废物湿法分离的创新技术

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摘要

This paper presents an original device for the separation of plastic polymers from mixtures. Due to the combination of a characteristic flow pattern developing within the apparatus and density, shape and size differences among two or more polymers, this device allows their separation into two products, one collected within the instrument and the other one expelled through its outlet ducts. Experimental tests have been conducted to investigate the effectiveness of the apparatus, using two geometric arrangements, nine hydraulic configurations and three selections of polymers at three stages of a material life cycle. Tests with samples composed of a single typology of polymer have been used to understand the interaction between the particles and the carrying fluid within the apparatus in different hydraulic configurations and geometric arrangements. Multi-material tests are essential to simulate the real conditions in an industrial recycling plant. The separation results have been evaluated in terms of grade and recovery of a useful material. Under the proper hydraulic configurations, the experimentation showed that it is possible to produce an almost pure concentrate of Polyethylene Terephthalate (PET) from a mixture of 85% PET and 15% Polycarbonate (PC) (concentrate grade and recovery equal to 99.5% and 95.1%) and a mixture of 85% PET and 15% Polyvinyl Chloride (PVC) (concentrate grade and recovery equal to 97.9% and 100.0%). It is further demonstrated that almost pure concentrates of PVC and PC can be produced from a mixture of 85% PVC and 15% PC (PVC grade and recovery equal to 99.9% and 99.7%) and a mixture of 85% PC and 15% PVC (PC grade and recovery equal to 99.0% and 99.5%).
机译:本文提出了一种从混合物中分离塑料聚合物的原始设备。由于在设备内形成的特征性流型与两种或多种聚合物之间的密度,形状和尺寸差异的结合,该设备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。在材料生命周期的三个阶段,使用两种几何布置,九种液压配置和三种聚合物选择进行了实验测试,以研究该设备的有效性。已经使用对由单一类型的聚合物组成的样品进行测试的方法,以了解在不同液压配置和几何布置下,设备中颗粒与载液之间的相互作用。多种材料测试对于模拟工业回收厂的实际条件至关重要。已经根据有用材料的等级和回收率对分离结果进行了评估。在适当的水力配置下,实验表明,可以从85%PET和15%聚碳酸酯(PC)的混合物中生产几乎纯的聚对苯二甲酸乙二醇酯(PET)浓缩物(浓缩物品位和回收率分别为99.5%和95.1) %)和85%PET和15%聚氯乙烯(PVC)的混合物(浓缩级和回收率分别为97.9%和100.0%)。进一步证明,可以由85%PVC和15%PC的混合物(PVC等级和回收率分别为99.9%和99.7%)和85%PC和15%PVC的混合物生产几乎纯净的PVC和PC浓缩物。 (PC品位和回收率分别为99.0%和99.5%)。

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