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Hybrid sensor for metal grade measurement of a falling stream of solid waste particles

机译:混合传感器,用于测量落下的固体废物流的金属等级

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A hybrid sensor system for accurate detection of the metal grade of a stream of falling solid waste particles is investigated and experimentally verified. The system holds an infrared and an electromagnetic unit around a central tube and counts all the particles and only the metal particles, respectively. The count ratio together with the measured average particle mass ratio (k) of non-metal and metal particles is sufficient for calculation of grade. The performance of the system is accurately verified using synthetic mixtures of sand and metal particles. Towards an application a case study is performed using municipal solid waste incineration bottom ash in size fractions 1-6 mm, which presents a major challenge for nonferrous metal recovery. The particle count ratio was inherently accurate for particle feed rates up to 13 per second. The average value and spread of k for bottom ash was determined as 0.49 ± 0.07 and used to calculate grade within 2.4% from the manually analysed grade. At higher feed rates the sensors start missing particles which fall simultaneously through the central tube, but the hybrid system still counted highly repeatable. This allowed for implementation of a count correction ratio to eliminate the stationary error. In combination with averaging in measurement intervals for suppression of stochastic variations the hybrid system regained its accuracy for particle feed rates up to 143 per second. This performance and its special design, intended to render it insensitive to external interference and noise when applied in an eddy current separator, make the hybrid sensor suitable for applications such as quality control and sensor controlled separation.
机译:研究和实验验证了一种混合传感器系统,用于精确检测下落的固体废物流的金属等级。该系统在中心管周围装有红外和电磁单元,分别计数所有颗粒和仅金属颗粒。非金属和金属颗粒的计数比与测得的平均颗粒质量比(k)一起足以计算等级。使用沙子和金属颗粒的合成混合物可以准确验证系统的性能。为了进行应用,使用大小为1-6 mm的城市固体废物焚烧底灰进行了案例研究,这对有色金属的回收提出了重大挑战。颗粒计数比对于每秒高达13的颗粒进料速率具有固有的准确性。确定底灰的k平均值和散度为0.49±0.07,并用于计算与人工分析的等级相比在2.4%以内的等级。在进给速度较高时,传感器会开始丢失颗粒,这些颗粒会同时通过中心管落下,但是混合系统仍然具有很高的可重复性。这允许实现计数校正率以消除固定误差。结合平均测量间隔以抑制随机变化,混合系统重新获得了高达每秒143的颗粒进给速率的精度。这种性能及其特殊设计旨在使它在涡流分离器中使用时对外部干扰和噪声不敏感,从而使混合传感器适用于诸如质量控制和传感器控制的分离之类的应用。

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