Pair Interaction in Electrophoresis of Charged Porous Particles Moving along Their Centerline

碩士 === 國立臺灣大學 === 化學工程學研究所 === 100 === Electrophoresis of two charged porous spheres moving along their line of centers is investigated theoretically, where overlapping and polarization effect of electric double layers are both taken into account. The thickness of electric double layer and fixed...

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Main Authors: Li-Yang Chang, 張立揚
Other Authors: Eric Lee
Format: Others
Language:zh-TW
Published: 2012
Online Access:http://ndltd.ncl.edu.tw/handle/15831197648787198328
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spelling ndltd-TW-100NTU050630732015-10-13T21:50:16Z http://ndltd.ncl.edu.tw/handle/15831197648787198328 Pair Interaction in Electrophoresis of Charged Porous Particles Moving along Their Centerline 兩多孔性膠體粒子間交互作用下之同軸電泳現象 Li-Yang Chang 張立揚 碩士 國立臺灣大學 化學工程學研究所 100 Electrophoresis of two charged porous spheres moving along their line of centers is investigated theoretically, where overlapping and polarization effect of electric double layers are both taken into account. The thickness of electric double layer and fixed charge density of porous spheres are arbitrary. The coupling equations of electric potential, ion concentration, and flow field are linearized by assuming that the external electric field is weak. A pseudo-spectral method based on Chebyshev polynomials is applied to numerically solve the resulting electrokinetic equations. To clarify the effect of particle interactions on the electrophoretic mobility, the effects of key parameters are examined such as the double layer thickness, fixed charge density, friction coefficient of porous particles, and surface distance between particles. The most curial finding, besides the non-zero interactions between identical particles, is that particle mobility decreases as double layer of two particles touched due to the polarization effect on the role of electric interactions. More interesting findings is that particle mobility may lower than that of the single one when high double layer overlapping is consideration. These findings was not investigated in the corresponding studies of two particle interactions where overlapping of electric double layers or polarization effect is neglected, indicating the importance of these two factors. Particle interactions between two charged porous particles can be used to describe homogeneous concentrated suspensions of polyelectrolyte in a fundamental aspect of colloid science. Eric Lee 李克強 2012 學位論文 ; thesis 95 zh-TW
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language zh-TW
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description 碩士 === 國立臺灣大學 === 化學工程學研究所 === 100 === Electrophoresis of two charged porous spheres moving along their line of centers is investigated theoretically, where overlapping and polarization effect of electric double layers are both taken into account. The thickness of electric double layer and fixed charge density of porous spheres are arbitrary. The coupling equations of electric potential, ion concentration, and flow field are linearized by assuming that the external electric field is weak. A pseudo-spectral method based on Chebyshev polynomials is applied to numerically solve the resulting electrokinetic equations. To clarify the effect of particle interactions on the electrophoretic mobility, the effects of key parameters are examined such as the double layer thickness, fixed charge density, friction coefficient of porous particles, and surface distance between particles. The most curial finding, besides the non-zero interactions between identical particles, is that particle mobility decreases as double layer of two particles touched due to the polarization effect on the role of electric interactions. More interesting findings is that particle mobility may lower than that of the single one when high double layer overlapping is consideration. These findings was not investigated in the corresponding studies of two particle interactions where overlapping of electric double layers or polarization effect is neglected, indicating the importance of these two factors. Particle interactions between two charged porous particles can be used to describe homogeneous concentrated suspensions of polyelectrolyte in a fundamental aspect of colloid science.
author2 Eric Lee
author_facet Eric Lee
Li-Yang Chang
張立揚
author Li-Yang Chang
張立揚
spellingShingle Li-Yang Chang
張立揚
Pair Interaction in Electrophoresis of Charged Porous Particles Moving along Their Centerline
author_sort Li-Yang Chang
title Pair Interaction in Electrophoresis of Charged Porous Particles Moving along Their Centerline
title_short Pair Interaction in Electrophoresis of Charged Porous Particles Moving along Their Centerline
title_full Pair Interaction in Electrophoresis of Charged Porous Particles Moving along Their Centerline
title_fullStr Pair Interaction in Electrophoresis of Charged Porous Particles Moving along Their Centerline
title_full_unstemmed Pair Interaction in Electrophoresis of Charged Porous Particles Moving along Their Centerline
title_sort pair interaction in electrophoresis of charged porous particles moving along their centerline
publishDate 2012
url http://ndltd.ncl.edu.tw/handle/15831197648787198328
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