利用磁感应光谱法对废物流中的电池进行分类

Kane C. Williams, M. O’Toole, L. A. Marsh, A. Peyton
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引用次数: 3

摘要

磁感应被广泛用于探测和分类金属物体的一系列应用;本文考虑了这种技术的潜力,以检查的存在和废物流中的电池的特性。随着世界各地使用的电池数量的增加,需要一种有效的方法来确保电池可以分类,以便更有效地回收。对电池的检测还可以通过在电池被压碎或粉碎之前识别电池来降低火灾和污染的风险。在这项研究中,磁感应传感器测量了781 Hz和95282 Hz之间的电池和废金属,以允许观察到一个显著的频率范围。电池电磁响应的真实分量(同相)不同于废金属;这可以训练一种算法来检测金属废物或非金属物体中的电池。观察到的反应表明,电池可以按大小分组,这在没有视线的情况下很有用,而传统的相机系统需要视线。当使用真正的组件时,一旦分组成尺寸,电池可以根据其内部内容进一步分离;这将减少回收时交叉污染的风险。锂电池和镍氢电池的实际分量响应与其他电池不同;这可以让它们被检测到并从废物流中移除,这一点很重要,因为锂电池可能会着火。
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Classification of batteries in waste streams using magnetic induction spectroscopy
Magnetic induction is widely used to detect and classify metal objects over a range of applications; this paper considers the potential of this technique to inspect for the presence and characteristics of batteries within waste streams. As the number of batteries used across the world increases, an efficient method is needed to ensure batteries can be classified to allow for more efficient recycling. The detection of batteries would also reduce the risk of fire and pollution by identifying the battery before they are crushed or shredded.In this study, a magnetic induction sensor measured the batteries and scrap metal between 781 Hz and 95282 Hz to allow a significant frequency range to be observed. The real component (in-phase) of a battery’s electromagnetic response is different from scrap metal; this could allow for an algorithm to be trained to detect batteries within metal waste or when inside non-metallic objects. The response observed shows that batteries could be grouped into size, which is useful if no line of sight is available, which a traditional camera system requires. Once grouped into size the batteries could be further separated according to their internal contents when the real component is used; this would reduce the risk of cross-contamination when they are recycled. The real component response of lithium and NiMH batteries is different when compared to the other batteries; this could allow them to be detected and removed from a waste stream, which is important as lithium batteries can set on fire.
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