首页> 外文期刊>Waste Management >The hydraulic separator Multidune: Preliminary tests on fluid-dynamic features and plastic separation feasibility
【24h】

The hydraulic separator Multidune: Preliminary tests on fluid-dynamic features and plastic separation feasibility

机译:液压分离器Multidune:关于流体动力学特性和塑料分离可行性的初步测试

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Recycling of plastic materials is a rapidly developing discipline because of environmental awareness, the need to conserve materials and energy, and the growing demand to increase the production economy. The main problem in plastics recovery and recycling is related to the variety of plastic wastes, even if selective collection occurs. Therefore, plastic materials can be recycled either as mixtures or as single types, separating the different typologies by their physical (size, specific mass, etc.) and/or chemical properties. However, separation of plastics in single typologies by traditional processes and devices is difficult due to their typical low variability in properties. This paper presents a new research development for recycling industry: the Multidune separator. This is a device constructed from a sequence of parallel semi-cylindrical tubes of transparent plastic welded together in a plane. The lower half is shifted laterally and then fixed relative to the upper half. Flow is then induced in the lateral direction normal to the axis of the tubes, creating a main flow channel and two recirculation zones. This apparatus creates a differential transport of particles of low specific mass, near to 1 g/cm3, allowing their separation. The flow field in the Multidune separator is studied via Particle Tracking Velocimetry (PTV). Eulerian analysis of the data is performed to gather information about the fluid-dynamics features established by different hydraulic heads at the inlet of the Multidune. Preliminary tests on monomaterial samples have been performed, varying several operative parameters to determine the best set of values. Therefore, separation tests have been executed on composite samples, obtaining satisfactory results in terms of plastic separation feasibility.
机译:由于环保意识,节约材料和能源的需求以及对提高生产经济性的需求不断增长,塑料材料的回收利用正在迅速发展。塑料回收和再循环的主要问题与塑料废物的种类有关,即使发生选择性收集也是如此。因此,塑料可以以混合物或单一类型的形式进行回收,通过其物理(尺寸,比重等)和/或化学性质来区分不同的类型。然而,由于传统的性能和典型的低可变性,通过传统的方法和设备将塑料分为单一类型是困难的。本文介绍了回收行业的一项新研究进展:Multidune分离器。这是由一系列在平面上焊接在一起的透明塑料平行半圆柱形管构成的设备。下半部分横向移动,然后相对于上半部分固定。然后在垂直于管轴线的横向方向上引起流动,从而形成主流路和两个再循环区域。该设备产生低比重的颗粒(接近1 g / cm3)的差异传输,从而使它们分离。 Multidune分离器中的流场通过粒子跟踪测速(PTV)研究。进行数据的欧拉分析以收集有关由Multidune入口处的不同液压头建立的流体动力学特征的信息。已经对单材料样品进行了初步测试,改变了几个操作参数以确定最佳值。因此,已经对复合样品进行了分离测试,就塑料分离可行性而言获得了令人满意的结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号