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The microsortation of high loadings of post-consumer mixed polyolefins using liquid carbon dioxide in a slightly agitated, batch apparatus

机译:在轻微搅动的分批设备中使用液态二氧化碳对高用量的消费后混合聚烯烃进行微分选

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摘要

The microsortation of clean, dry, mixed, shredded, post-consumer polyolefins can be accomplished using near-critical carbon dioxide as a float-sink medium. At high loadings of plastics, however, buoyant forces alone are not sufficient to break up the aggregates of interlocking shredded plastic particles. Therefore a close-clearance impeller must be used to agitate the mixed plastics during the batch separation. This slight agitation permits these irregularly shaped chips to either float or sink without being hindered by surrounding chips. The separation apparatus operates most efficiently when the plastics are charged to a level that corresponds to the top of the highest blade of a large-diameter multiple-pitched blade impeller that rotates at 15 rpm. A post-consumer flake mixture of 85% HDPE/15% PP can be sorted into HDPE and PP streams of 99+% purity at loadings up to 56 volume per cent. In the absence of an impeller, high purity separations can be achieved at loadings of only two volume per cent. This dramatic increase in the loading reduces the estimated processing cost of mixed polyolefins to
机译:清洁,干燥,混合,切碎,消费后的聚烯烃的微分选可以使用接近临界的二氧化碳作为浮沉介质来完成。然而,在高塑料负载下,仅浮力不足以破碎互锁的切碎塑料颗粒的聚集体。因此,在分批分离过程中,必须使用间隙紧密的叶轮来搅拌混合的塑料。这种轻微的搅动允许这些不规则形状的木屑漂浮或下沉而不受周围木屑的阻碍。当塑料的装料量对应于以15 rpm旋转的大直径多节距叶片叶轮的最高叶片顶部时,分离设备将最高效地运行。消费量高达56%(体积)的85%HDPE / 15%PP的消费后片状混合物可以分为HDPE和PP物流,其纯度为99%以上。在没有叶轮的情况下,只有两个体积百分比的负载才能实现高纯度分离。装载量的急剧增加将混合聚烯烃的估计加工成本降低至

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