Study on electrical current variations in electromembrane extraction process: Relation between extraction recovery and magnitude of electrical current
This contribution presents an experimental approach to improve analytical performance of electromembrane extraction (EME) procedure, which is based on the scrutiny of current pattern under different extraction conditions such as using different organic solvents as supported liquid membrane, electric...
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Veröffentlicht in: | Analytica chimica acta 2016-01, Vol.903, p.81-90 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | This contribution presents an experimental approach to improve analytical performance of electromembrane extraction (EME) procedure, which is based on the scrutiny of current pattern under different extraction conditions such as using different organic solvents as supported liquid membrane, electrical potentials, pH values of donor and acceptor phases, variable extraction times, temperatures, stirring rates, different hollow fiber lengths and the addition of salts or organic solvents to the sample matrix. In this study, four basic drugs with different polarities were extracted under different conditions with the corresponding electrical current patterns compared against extraction recoveries. The extraction process was demonstrated in terms of EME-HPLC analyses of selected basic drugs. Comparing the obtained extraction recoveries with the electrical current patterns, most cases exhibited minimum recovery and repeatability at the highest investigated magnitude of electrical current. . It was further found that identical current patterns are associated with repeated extraction efficiencies. In other words, the pattern should be repeated for a successful extraction. The results showed completely different electrical currents under different extraction conditions, so that all variable parameters have contributions into the electrical current pattern. Finally, the current patterns of extractions from wastewater, plasma and urine samples were demonstrated. The results indicated an increase in the electrical current when extracting from complex matrices; this was seen to decrease the extraction efficiency.
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•Study on electrical current variation in electromembrane extraction.•Prediction of successful extraction using current pattern.•High currents (>500 μA) result low extraction efficiencies.•Complex matrices can increase electrical current in duration of extraction. |
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ISSN: | 0003-2670 1873-4324 |
DOI: | 10.1016/j.aca.2015.11.024 |