Bidirectional Magnetic Projection: One-Step Separation for Recycling Mixed Wastes

ACS SUSTAINABLE CHEMISTRY & ENGINEERING(2020)

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摘要
Separating multiple mixed wastes in one step remains a serious challenge because mixtures often have to be separated using a stepwise approach. Bidirectional magnetic projection was thereby developed; the process separates mixed materials simultaneously in a container full of paramagnetic medium by sending the materials from the releasing position to their corresponding landing zones upwardly or downwardly, with the aid of the resultant force of buoyance and gravity and the magnetic force provided by a permanent magnet placed beside the container. A mathematic model of this process was proposed, with drag considered. The validity of the model was experimentally proven, as the calculated trajectories and landing zones are well correlated with the experimental outcomes. The process can separate particles with minor density differences, and a stronger magnetic force increases separation distances. Further, the method was applied to separate simulated plastic wastes and real plastic wastes and to extract aluminum from mixed construction materials. The results show that, in the separation tests, the recovery rates for all materials exceeded 95 wt % with impurities of no more than 5.6 wt %. This approach, which has superior maneuverability and requires no external energy input, achieves the efficient and effective one-step separation of mixed wastes.
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关键词
Construction and demolition waste,Density-based separation,Magnetic projection,Plastic solid waste,Sphericity
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