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Novel Approach to Sample Preconcentration by Solvent Evaporation in Flow Analysis

A preconcentration module operated in flow mode and integrated with a sequential injection system with spectrophotometric detection was developed. Using the system, preconcentration was performed in continuous mode and was based on a membraneless evaporation process under diminished pressure. The pa...

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Autores principales: Paluch, Justyna, Kozak, Joanna, Wieczorek, Marcin, Woźniakiewicz, Michał, Gołąb, Małgorzata, Półtorak, Ewelina, Kalinowski, Sławomir, Kościelniak, Paweł
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7221841/
https://www.ncbi.nlm.nih.gov/pubmed/32325764
http://dx.doi.org/10.3390/molecules25081886
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author Paluch, Justyna
Kozak, Joanna
Wieczorek, Marcin
Woźniakiewicz, Michał
Gołąb, Małgorzata
Półtorak, Ewelina
Kalinowski, Sławomir
Kościelniak, Paweł
author_facet Paluch, Justyna
Kozak, Joanna
Wieczorek, Marcin
Woźniakiewicz, Michał
Gołąb, Małgorzata
Półtorak, Ewelina
Kalinowski, Sławomir
Kościelniak, Paweł
author_sort Paluch, Justyna
collection PubMed
description A preconcentration module operated in flow mode and integrated with a sequential injection system with spectrophotometric detection was developed. Using the system, preconcentration was performed in continuous mode and was based on a membraneless evaporation process under diminished pressure. The parameters of the proposed system were optimized and the system was tested on the example of the spectrophotometric determination of Cr(III). The preconcentration effectiveness was determined using the signal enhancement factor. In the optimized conditions for Cr(III), it was possible to obtain the signal enhancement factors of around 10 (SD: 0.9, n = 4) and determine Cr(III) with precision and intermediate precision of 8.4 and 5.1% (CV), respectively. Depending on the initial sample volume, signal enhancement factor values of about 20 were achieved. Applicability of the developed preconcentration system was verified in combination with the capillary electrophoresis method with spectrophotometric detection on the example of determination of Zn in certified reference materials of drinking water and wastewater. Taking into account the enhancement factor of 10, a detection limit of 0.025 mg L(−1) was obtained for Zn determination. Zn was determined with precision less than 6% (CV) and the results were consistent with the certified values.
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spelling pubmed-72218412020-05-21 Novel Approach to Sample Preconcentration by Solvent Evaporation in Flow Analysis Paluch, Justyna Kozak, Joanna Wieczorek, Marcin Woźniakiewicz, Michał Gołąb, Małgorzata Półtorak, Ewelina Kalinowski, Sławomir Kościelniak, Paweł Molecules Article A preconcentration module operated in flow mode and integrated with a sequential injection system with spectrophotometric detection was developed. Using the system, preconcentration was performed in continuous mode and was based on a membraneless evaporation process under diminished pressure. The parameters of the proposed system were optimized and the system was tested on the example of the spectrophotometric determination of Cr(III). The preconcentration effectiveness was determined using the signal enhancement factor. In the optimized conditions for Cr(III), it was possible to obtain the signal enhancement factors of around 10 (SD: 0.9, n = 4) and determine Cr(III) with precision and intermediate precision of 8.4 and 5.1% (CV), respectively. Depending on the initial sample volume, signal enhancement factor values of about 20 were achieved. Applicability of the developed preconcentration system was verified in combination with the capillary electrophoresis method with spectrophotometric detection on the example of determination of Zn in certified reference materials of drinking water and wastewater. Taking into account the enhancement factor of 10, a detection limit of 0.025 mg L(−1) was obtained for Zn determination. Zn was determined with precision less than 6% (CV) and the results were consistent with the certified values. MDPI 2020-04-18 /pmc/articles/PMC7221841/ /pubmed/32325764 http://dx.doi.org/10.3390/molecules25081886 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Paluch, Justyna
Kozak, Joanna
Wieczorek, Marcin
Woźniakiewicz, Michał
Gołąb, Małgorzata
Półtorak, Ewelina
Kalinowski, Sławomir
Kościelniak, Paweł
Novel Approach to Sample Preconcentration by Solvent Evaporation in Flow Analysis
title Novel Approach to Sample Preconcentration by Solvent Evaporation in Flow Analysis
title_full Novel Approach to Sample Preconcentration by Solvent Evaporation in Flow Analysis
title_fullStr Novel Approach to Sample Preconcentration by Solvent Evaporation in Flow Analysis
title_full_unstemmed Novel Approach to Sample Preconcentration by Solvent Evaporation in Flow Analysis
title_short Novel Approach to Sample Preconcentration by Solvent Evaporation in Flow Analysis
title_sort novel approach to sample preconcentration by solvent evaporation in flow analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7221841/
https://www.ncbi.nlm.nih.gov/pubmed/32325764
http://dx.doi.org/10.3390/molecules25081886
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