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DMS cyclone separation processes for optimization of plastic wastes recycling and their implications

机译:DMS旋风分离工艺可优化塑料废物的回收利用及其意义

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It is demonstrated that substantial reductions in plastics presently disposed of in landfills can be achieved by cyclone density media separation (DMS). In comparison with the size fraction of plastics presently processed by industrial density separations (generally 6.4 to 9.5 mm), cyclone DMS methods are demonstrated to effectively process a substantially greater range of particle sizes (from 0.5 up to 120 mm). The purities of plastic products and recoveries obtained with a single stage separation using a cylindrical cyclone are shown to attain virtually 100% purity and recoveries >99% for high-density fractions and >98% purity and recoveries were obtained for low-density products. Four alternative schemas of multi-stage separations are presented and analyzed as proposed methods to obtain total low- and high-density plastics fraction recoveries while maintaining near 100% purities. The results of preliminary tests of two of these show that the potential for processing product purities and recoveries >99.98% of both density fractions are indicated. A preliminary economic comparison of capital costs of DMS systems suggests cyclone DMS methods to be comparable with other DMS processes even if the high volume capacity for recycling operations of these is not optimized.
机译:事实证明,通过旋风分离器可分离出目前在垃圾填埋场中丢弃的塑料。与目前通过工业密度分离处理的塑料的尺寸分数(通常为6.4至9.5毫米)相比,旋风除尘器DMS方法可有效处理更大范围的粒径(0.5至120毫米)。显示的塑料产品纯度和使用圆柱形旋风分离器的单级分离所获得的回收率实际上达到了100%的纯度,高密度馏分的回收率> 99%,低密度产品的回收率> 98%。提出并分析了多步分离的四种替代方案,作为提议的方法来获得总的低密度和高密度塑料馏分回收率,同时保持接近100%的纯度。其中两个的初步测试结果表明,表明了加工纯度和回收率均高于两个密度部分的99.98%的潜力。 DMS系统资本成本的初步经济比较表明,旋风分离器D​​MS方法可与其他DMS方法相提并论,即使未优化其循环操作的高容量。

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