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Investigation of hydrocyclones for the separation of shredded fridge plastics

机译:水力旋流器用于分离切碎的冰箱塑料的研究

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摘要

The recycling of fridges produces a mixed plastic product of limited value. In order to maximise its value, the separation of the individual polymers that include high impact polystyrene (HIPS), acrylonitrile butadiene styrene (ABS), polyvinyl chloride (PVC) and polyethylene (PE) must take place. The effectiveness of a hydrocyclone system for the separation of these plastics, using both water and calcium chloride solutions, has been investigated. In addition a qualitative procedure for the determination of the HIPS content of a mixed ABS/HIPS product, by selective dissolution in R-limonene, has been developed. It was found that the effective density of separation depended on the particle size and aspect ratio. As the particle size and aspect ratio decreased, the separation became more efficient and the offset between separation density and hydrocyclone medium density decreased. This suggests that, for efficient density separation, closely sized, fine plastic fractions are required. Using these criteria, it was found that the removal of high density plastic such as PVC was readily achieved using a hydrocyclone. A partial separation of HIPS from ABS was found to be possible, taking advantage of a small density difference, using a hydrocyclone medium density of 1035 kam~(-3).
机译:冰箱的回收会产生限量的混合塑料产品。为了使其价值最大化,必须对包括高抗冲聚苯乙烯(HIPS),丙烯腈丁二烯苯乙烯(ABS),聚氯乙烯(PVC)和聚乙烯(PE)在内的各种聚合物进行分离。已经研究了使用水和氯化钙溶液分离水力旋流器系统来分离这些塑料的有效性。另外,已经开发了通过选择性溶解在R-柠檬烯中来确定混合的ABS / HIPS产品的HIPS含量的定性程序。发现有效的分离密度取决于粒径和长径比。随着粒径和长径比的减小,分离变得更加有效,并且分离密度与水力旋流器介质密度之间的偏移减小。这表明,为了有效地进行密度分离,需要尺寸紧密的精细塑料碎片。使用这些标准,发现使用水力旋流器很容易去除高密度塑料,例如PVC。发现使用密度为1035 kam〜(-3)的水力旋流器,可以利用较小的密度差将HIPS与ABS进行部分分离。

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