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Electrodynamic Eddy Current Separation of End-of-Life PV Materials

机译:报废光伏材料的电动涡流分离

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In this work, we examine the efficacy of Electrodynamic Eddy Current Separation (EECS) to recover valuable materials from end-of-life solar panels. Traditional rotary-based eddy current separators are capable of excitation frequencies of ≈1 kHz or less and struggle to economically separate particles smaller than ≈1 cm. A new design of eddy current separators has been developed at the University of Utah which has no mechanically moving parts. The design is capable of excitation frequencies up to 50 kHz, allowing sorting of particles as small as 1.0 mm. Recently, we have been successful in separating mixtures of Si/Al and CdTe/Al particles (1-3 mm) with recovery and grades greater than 85%, an energy demand of 68 kWh/short ton of sorted material, and throughput of roughly 10 kg/h. Current and future challenges utilizing this method for valuable material recovery from end-of-life solar panels are discussed.
机译:在这项工作中,我们研究了电动涡流分离(EECS)从使用寿命终止的太阳能电池板中回收有价值的材料的功效。传统的基于旋转的涡流分离器能够激发≈1kHz或更低的激励频率,并且难以经济地分离小于≈1cm的颗粒。犹他大学开发了一种新的涡流分离器设计,它没有机械运动的部件。该设计能够激发高达50 kHz的激发频率,从而可以对小至1.0 mm的颗粒进行分选。最近,我们已经成功地分离出Si / Al和CdTe / Al颗粒(1-3毫米)的混合物,其回收率和品位大于85%,对能源的需求为68 kWh /短吨分选物料,产量大约为10公斤/小时。讨论了使用这种方法从报废的太阳能电池板中回收有价值的材料的当前和未来挑战。

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