A review of particle transport and separation by electrostatic traveling wave methods
File(s)2022_Yueyu_J_Electrostatics.pdf (8.25 MB)
Published version
Author(s)
Yu, Yue
Cilliers, Jan
Hadler, Kathryn
Starr, Stanley
Wang, Yanghua
Type
Journal Article
Abstract
The controlled movement of dry particles using non-mechanical means is desirable in a number of different applications, including solar panel dust mitigation, toner particle motion and in the handling and beneficiation of regolith for In-Situ Resource Utilization (ISRU). The electric curtain, the electrostatic traveling wave (ETW) and the electro-dynamic screen (EDS) are examples of techniques that can transport and separate particles with no moving parts nor fluid medium. This review paper brings together the research carried out on these techniques.
We provide a comprehensive review on the particle movement mechanisms and the development and application of ETW methods, featuring a diverse range of hardware and circuitry, particulate material and process objectives. We focus on the evaluation of experimental development in the area of dust mitigation, particle transport and ISRU processes. We also detail the current knowledge about theory and modelling methods. Moreover, we provide a guide for possible improvement of the effectiveness of ETW devices, by outlining the limitations in application, theoretical understanding and potential research aspects.
We provide a comprehensive review on the particle movement mechanisms and the development and application of ETW methods, featuring a diverse range of hardware and circuitry, particulate material and process objectives. We focus on the evaluation of experimental development in the area of dust mitigation, particle transport and ISRU processes. We also detail the current knowledge about theory and modelling methods. Moreover, we provide a guide for possible improvement of the effectiveness of ETW devices, by outlining the limitations in application, theoretical understanding and potential research aspects.
Date Issued
2022-09
Date Acceptance
2022-07-01
Citation
Journal of Electrostatics, 2022, 119, pp.1-16
ISSN
0304-3886
Publisher
Elsevier BV
Start Page
1
End Page
16
Journal / Book Title
Journal of Electrostatics
Volume
119
Copyright Statement
© 2022 Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license
(http://creativecommons.org/licenses/by-nc-nd/4.0/).
(http://creativecommons.org/licenses/by-nc-nd/4.0/).
Sponsor
China Petroleum and Chemical Corporation (SINOPEC)
Identifier
https://www.sciencedirect.com/science/article/pii/S0304388622000638?via%3Dihub
Grant Number
EACPR_P76155
Subjects
Applied Physics
09 Engineering
Publication Status
Published
Article Number
103735
Date Publish Online
2022-07-18