Fukushima Kyosuke, Kabir Mahmudul, Kanda Kensuke, Obara Naoko, Fukuyama Mayuko, Otsuki Akira
Graduate School of Engineering Science, Department of Mathematical Science and Electrical-Electronic-Computer Engineering, Tegata Campus, Akita University, 1-1 Tegata Gakuen Machi, Akita 010-8502, Japan.
Graduate School of Engineering Science, Cooperative Major in Life Cycle Design Engineering, Tegata Campus, Akita University, 1-1 Tegata Gakuen Machi, Akita 010-8502, Japan.
Materials (Basel). 2022 Jan 28;15(3):1039. doi: 10.3390/ma15031039.
Since energy efficiency in comminution of ores is as small as 1% using a mechanical crushing process, it is highly demanded to improve its efficiency. Using electrical impulses to selectively liberate valuable minerals from ores can be a solution of this problem. In this work, we developed a simulation method using equivalent circuits of granite to better understand the crushing process with high-voltage (HV) electrical pulses. From our simulation works, we calculated the electric field distributions in granite when an electrical pulse was applied. We also calculated other associated electrical phenomena such as produced heat and temperature changes from the simulation results. A decrease in the electric field was observed in the plagioclase with high electrical conductivity and void space. This suggests that the void volume in each mineral is important in calculating the electrical properties. Our equivalent circuit models considering both the electrical conductivity and dielectric constant of a granite can more accurately represent the electrical properties of granite under HV electric pulse application. These results will help us better understand the liberation of minerals from granite by electric pulse application.
由于使用机械破碎工艺对矿石进行粉碎时的能量效率低至1%,因此提高其效率的需求非常迫切。利用电脉冲从矿石中选择性地释放有价值的矿物可能是解决这一问题的方法。在这项工作中,我们开发了一种使用花岗岩等效电路的模拟方法,以更好地理解高压电脉冲作用下的破碎过程。通过我们的模拟工作,我们计算了施加电脉冲时花岗岩中的电场分布。我们还根据模拟结果计算了其他相关的电现象,如产生的热量和温度变化。在具有高电导率和空隙空间的斜长石中观察到电场降低。这表明每种矿物中的空隙体积在计算电性能时很重要。我们考虑花岗岩电导率和介电常数的等效电路模型可以更准确地表示高压电脉冲作用下花岗岩的电性能。这些结果将有助于我们更好地理解通过施加电脉冲从花岗岩中释放矿物的过程。