Determination of trace cadmium in seawater using combination of polystyrene coated magnetic nanoparticles based DSPE and triethylamine assisted Mg(OH)(2) method

Precise and accurate determination of elements in seawater requires efficient analytical approaches that are able to overcome challenges such as high salt content and the very low concentrations of elements. In the present study, the triethylamine (TEA) assisted Mg(OH)2 co-precipitation method was a...

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Published in:Microchemical Journal
Main Authors: Seda Koçoğlu, Elif Seda, UNUTKAN GÖSTERİŞLİ, Tuğçe, BAKIRDERE, Sezgin, Zehra Kublay, İrem
Format: Article in Journal/Newspaper
Language:English
Published: 2022
Subjects:
Online Access:https://avesis.yildiz.edu.tr/publication/details/4f63ce02-4878-4e77-b61d-05b6fb057e6a/oai
https://doi.org/10.1016/j.microc.2022.107662
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spelling ftyildiztuniv:4f63ce02-4878-4e77-b61d-05b6fb057e6a 2023-09-26T15:11:47+02:00 Determination of trace cadmium in seawater using combination of polystyrene coated magnetic nanoparticles based DSPE and triethylamine assisted Mg(OH)(2) method Seda Koçoğlu, Elif Seda UNUTKAN GÖSTERİŞLİ, Tuğçe BAKIRDERE, Sezgin Zehra Kublay, İrem 2022-08-01T00:00:00Z https://avesis.yildiz.edu.tr/publication/details/4f63ce02-4878-4e77-b61d-05b6fb057e6a/oai https://doi.org/10.1016/j.microc.2022.107662 eng eng 4f63ce02-4878-4e77-b61d-05b6fb057e6a doi:10.1016/j.microc.2022.107662 https://avesis.yildiz.edu.tr/publication/details/4f63ce02-4878-4e77-b61d-05b6fb057e6a/oai info:eu-repo/semantics/closedAccess info:eu-repo/semantics/article 2022 ftyildiztuniv https://doi.org/10.1016/j.microc.2022.107662 2023-08-27T20:46:13Z Precise and accurate determination of elements in seawater requires efficient analytical approaches that are able to overcome challenges such as high salt content and the very low concentrations of elements. In the present study, the triethylamine (TEA) assisted Mg(OH)2 co-precipitation method was applied to seawater prior to the preconcentration of cadmium by an optimized polystyrene coated magnetic nanoparticles based dispersive solid phase extraction (PS-MNP-DSPE) method. The enriched analyte was determined by a flame atomic absorption spectrometer, which was fitted with a slotted quartz tube as an absorbance signal booster. The limit of detection (LOD) and limit of quantification (LOQ) values calculated for cadmium under optimum conditions of the PSMNP-DSPE-SQT-FAAS method were 0.23 and 0.77 mu g kg- 1, respectively. Seawater sampled from the coast of West Antarctica was used to verify the accuracy and applicability of proposed method, and the recovery results (97 - 106%) obtained were very satisfactory. Article in Journal/Newspaper Antarc* Antarctica West Antarctica Yıldız Technical University Research Information System West Antarctica Microchemical Journal 179 107662
institution Open Polar
collection Yıldız Technical University Research Information System
op_collection_id ftyildiztuniv
language English
description Precise and accurate determination of elements in seawater requires efficient analytical approaches that are able to overcome challenges such as high salt content and the very low concentrations of elements. In the present study, the triethylamine (TEA) assisted Mg(OH)2 co-precipitation method was applied to seawater prior to the preconcentration of cadmium by an optimized polystyrene coated magnetic nanoparticles based dispersive solid phase extraction (PS-MNP-DSPE) method. The enriched analyte was determined by a flame atomic absorption spectrometer, which was fitted with a slotted quartz tube as an absorbance signal booster. The limit of detection (LOD) and limit of quantification (LOQ) values calculated for cadmium under optimum conditions of the PSMNP-DSPE-SQT-FAAS method were 0.23 and 0.77 mu g kg- 1, respectively. Seawater sampled from the coast of West Antarctica was used to verify the accuracy and applicability of proposed method, and the recovery results (97 - 106%) obtained were very satisfactory.
format Article in Journal/Newspaper
author Seda Koçoğlu, Elif Seda
UNUTKAN GÖSTERİŞLİ, Tuğçe
BAKIRDERE, Sezgin
Zehra Kublay, İrem
spellingShingle Seda Koçoğlu, Elif Seda
UNUTKAN GÖSTERİŞLİ, Tuğçe
BAKIRDERE, Sezgin
Zehra Kublay, İrem
Determination of trace cadmium in seawater using combination of polystyrene coated magnetic nanoparticles based DSPE and triethylamine assisted Mg(OH)(2) method
author_facet Seda Koçoğlu, Elif Seda
UNUTKAN GÖSTERİŞLİ, Tuğçe
BAKIRDERE, Sezgin
Zehra Kublay, İrem
author_sort Seda Koçoğlu, Elif Seda
title Determination of trace cadmium in seawater using combination of polystyrene coated magnetic nanoparticles based DSPE and triethylamine assisted Mg(OH)(2) method
title_short Determination of trace cadmium in seawater using combination of polystyrene coated magnetic nanoparticles based DSPE and triethylamine assisted Mg(OH)(2) method
title_full Determination of trace cadmium in seawater using combination of polystyrene coated magnetic nanoparticles based DSPE and triethylamine assisted Mg(OH)(2) method
title_fullStr Determination of trace cadmium in seawater using combination of polystyrene coated magnetic nanoparticles based DSPE and triethylamine assisted Mg(OH)(2) method
title_full_unstemmed Determination of trace cadmium in seawater using combination of polystyrene coated magnetic nanoparticles based DSPE and triethylamine assisted Mg(OH)(2) method
title_sort determination of trace cadmium in seawater using combination of polystyrene coated magnetic nanoparticles based dspe and triethylamine assisted mg(oh)(2) method
publishDate 2022
url https://avesis.yildiz.edu.tr/publication/details/4f63ce02-4878-4e77-b61d-05b6fb057e6a/oai
https://doi.org/10.1016/j.microc.2022.107662
geographic West Antarctica
geographic_facet West Antarctica
genre Antarc*
Antarctica
West Antarctica
genre_facet Antarc*
Antarctica
West Antarctica
op_relation 4f63ce02-4878-4e77-b61d-05b6fb057e6a
doi:10.1016/j.microc.2022.107662
https://avesis.yildiz.edu.tr/publication/details/4f63ce02-4878-4e77-b61d-05b6fb057e6a/oai
op_rights info:eu-repo/semantics/closedAccess
op_doi https://doi.org/10.1016/j.microc.2022.107662
container_title Microchemical Journal
container_volume 179
container_start_page 107662
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