Sorption of organic aqueous solution in polydimethylsiolxane fibers of solid-phase microextraction
碩士 === 中國醫藥大學 === 職業安全衛生學系碩士班 === 97 === The solid-phase microextraction (SPME) technique has been widely used due to it is solvent-free characteristic in sampling and analysis. Polydimethylsiloxane (PDMS) is known as an excellent material for the extraction of volatile organic compounds (VOCs). How...
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ndltd-TW-097CMCH55900072016-04-29T04:19:27Z http://ndltd.ncl.edu.tw/handle/36677790138772851971 Sorption of organic aqueous solution in polydimethylsiolxane fibers of solid-phase microextraction 固相微萃取技術利用聚二甲基矽氧烷纖維於有機溶劑水溶液吸附現象之研究 Hsiu-Wen Yang 楊秀文 碩士 中國醫藥大學 職業安全衛生學系碩士班 97 The solid-phase microextraction (SPME) technique has been widely used due to it is solvent-free characteristic in sampling and analysis. Polydimethylsiloxane (PDMS) is known as an excellent material for the extraction of volatile organic compounds (VOCs). However, there is limited experimental work done to investigate the mass transfer mechanism of VOCs onto PDMS/SPME membranes. The object of this study was to investigate the adsorption kinetics of benzene and toluene onto PDMS/SPME membranes. Adsorption isotherm of PDMS in the benzene aqueous solution and toluene aqueous solution were obtained using individual batch experiments. The experimental variables were agitation rates and concentrations of aqueous solution. This study found that the diffusion coefficients of benzene and toluene in PDMS/SPME were linearly increased with agitation rates of aqueous solution (p<0.05). The possible reason may be that the boundary liquid layer around PDMS fiber was shortened by the agitation. On the other hand, the diffusion coefficients were not significantly correlated with the aqueous concentrations (p>0.5). This study could sever as the fundamental work on the mass transfer of VOCs in PDMS, particularly for SPME. 趙克平 2009 學位論文 ; thesis 54 zh-TW |
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碩士 === 中國醫藥大學 === 職業安全衛生學系碩士班 === 97 === The solid-phase microextraction (SPME) technique has been widely used due to it is solvent-free characteristic in sampling and analysis. Polydimethylsiloxane (PDMS) is known as an excellent material for the extraction of volatile organic compounds (VOCs). However, there is limited experimental work done to investigate the mass transfer mechanism of VOCs onto PDMS/SPME membranes.
The object of this study was to investigate the adsorption kinetics of benzene and toluene onto PDMS/SPME membranes. Adsorption isotherm of PDMS in the benzene aqueous solution and toluene aqueous solution were obtained using individual batch experiments. The experimental variables were agitation rates and concentrations of aqueous solution.
This study found that the diffusion coefficients of benzene and toluene in PDMS/SPME were linearly increased with agitation rates of aqueous solution (p<0.05). The possible reason may be that the boundary liquid layer around PDMS fiber was shortened by the agitation. On the other hand, the diffusion coefficients were not significantly correlated with the aqueous concentrations (p>0.5). This study could sever as the fundamental work on the mass transfer of VOCs in PDMS, particularly for SPME.
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author2 |
趙克平 |
author_facet |
趙克平 Hsiu-Wen Yang 楊秀文 |
author |
Hsiu-Wen Yang 楊秀文 |
spellingShingle |
Hsiu-Wen Yang 楊秀文 Sorption of organic aqueous solution in polydimethylsiolxane fibers of solid-phase microextraction |
author_sort |
Hsiu-Wen Yang |
title |
Sorption of organic aqueous solution in polydimethylsiolxane fibers of solid-phase microextraction |
title_short |
Sorption of organic aqueous solution in polydimethylsiolxane fibers of solid-phase microextraction |
title_full |
Sorption of organic aqueous solution in polydimethylsiolxane fibers of solid-phase microextraction |
title_fullStr |
Sorption of organic aqueous solution in polydimethylsiolxane fibers of solid-phase microextraction |
title_full_unstemmed |
Sorption of organic aqueous solution in polydimethylsiolxane fibers of solid-phase microextraction |
title_sort |
sorption of organic aqueous solution in polydimethylsiolxane fibers of solid-phase microextraction |
publishDate |
2009 |
url |
http://ndltd.ncl.edu.tw/handle/36677790138772851971 |
work_keys_str_mv |
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