FILTRATION OF FLUE GAS IN MICROFLUIDIC DEVICES USING DIELECTROPHORESIS

被引:0
|
作者
Neculae, Adrian [1 ]
Bunoiu, Madalin [1 ]
Lungu, Antoanetta [1 ]
Lungu, Mihai [1 ]
机构
[1] West Univ Timisoara, Fac Phys, 4 V Parvan, Timisoara 300223, Romania
来源
ROMANIAN JOURNAL OF PHYSICS | 2016年 / 61卷 / 5-6期
关键词
Air pollution; Flue gas filtration; Nanoparticle separation; Microfluidic device; Dielectrophoresis; Filtration rate; 3D numerical simulations;
D O I
暂无
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The paper investigates the possibility to improve the filtering process of flue gas by controlling entrapment of suspended nanoparticle using dielectrophoresis (DEP). A realistic description of the manipulation process requires an accurate description of microchannel geometry and a precise evaluation of the DEP forces spatial distribution. The work presents the results of a numeric study which aims to characterize the functionality of a 3D DEP-based microsystem for the selective manipulation of nanometric particles. The analysis focuses on the nanoparticles having radii ranging from 50 to 150 nm, particles that cannot be filtrated by classical techniques but have a harmful effect for environment and human health. The solutions of the DEP force and particle concentration distribution for a typical separation device with interdigitated electrodes array are calculated using the COMSOL Multiphysics finite element solver. The performances of the device are analyzed in terms of a specific quantity related to the separation process, called Filtration efficiency. The simulations provide the optimal set of values for the control parameters of the separation process, and represent a useful tool in designing of microfluidic devices for separating nanoparticles from flue gas.
引用
收藏
页码:957 / 969
页数:13
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