Simulating the trajectory of conductive particles in positive high-voltage electrostatic separators and optimizing parameters

IF 2.7 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Keqian Zhu, Wenjian Wang, Zhenxu Wang, Junliang Lin, Huliang Zhuang, Tao Sun
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引用次数: 0

Abstract

To enhance the sorting efficiency of electrostatic separation for various conductive particles, a numerical model for the trajectory of conductive particles under the combined electric and gravitational fields was established. Initially, the distribution of the spatial electric field was analyzed using COMSOL Multiphysics, followed by the development of a program in MATLAB to calculate particle trajectories. The effects of particle size, voltage, angular velocity of the grounding roller, and the distance from the collection trough to the center of the grounding roller on the sorting efficiency of conductive particles (with radii larger than 1 mm) under positive high-voltage conditions were examined. Then the single-factor changing method and the response surface methodology were used to optimize the above parameters. The results showed that there was an inflection point for the angular velocity of the grounding roller; below this point, the sorting efficiency increased with the angular velocity, but beyond it, the efficiency decreased as the angular velocity continued to increase. Additionally, after the response surface methodology was used to optimize the parameters, the sorting efficiency was increased by 9 times. This study provides a theoretical foundation for the design and parameter control of new electrostatic separators.

模拟正高压静电分离器中导电粒子的轨迹并优化参数
为了提高静电分离对各种导电粒子的分选效率,我们建立了导电粒子在电场和重力场共同作用下的轨迹数值模型。首先,使用 COMSOL Multiphysics 分析了空间电场的分布,然后在 MATLAB 中开发了计算粒子轨迹的程序。研究了正高压条件下颗粒大小、电压、接地辊角速度以及收集槽到接地辊中心的距离对导电颗粒(半径大于 1 毫米)分拣效率的影响。然后采用单因素变化法和响应面法对上述参数进行了优化。结果表明,接地辊的角速度存在一个拐点;在该点以下,分选效率随角速度的增加而增加,但在该点以上,随着角速度的继续增加,分选效率下降。此外,在使用响应面方法优化参数后,分拣效率提高了 9 倍。这项研究为新型静电分离器的设计和参数控制提供了理论基础。
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来源期刊
CiteScore
5.30
自引率
16.10%
发文量
205
审稿时长
4.8 months
期刊介绍: The Journal of Material Cycles and Waste Management has a twofold focus: research in technical, political, and environmental problems of material cycles and waste management; and information that contributes to the development of an interdisciplinary science of material cycles and waste management. Its aim is to develop solutions and prescriptions for material cycles. The journal publishes original articles, reviews, and invited papers from a wide range of disciplines related to material cycles and waste management. The journal is published in cooperation with the Japan Society of Material Cycles and Waste Management (JSMCWM) and the Korea Society of Waste Management (KSWM).
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