Theoretical evaluation of iodine and selenium speciation in the natural waters of iodine-deficient territories
Water migration of iodine, selenium are in many cases directly related to manifestation of thyroid pathologies, in particular, the endemic goiter. The main aim was to evaluate species and conditions of migration of these elements in natural waters from different water-bearing rocks in areas with a n...
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doaj-d919c398754f48bcae3b5a0aba3d6eec2021-03-02T09:13:35ZengEDP SciencesE3S Web of Conferences2267-12422019-01-01980901310.1051/e3sconf/20199809013e3sconf_wri-162018_09013Theoretical evaluation of iodine and selenium speciation in the natural waters of iodine-deficient territoriesKolmykova Liudmila0Korobova Elena1Ryzhenko Boris2Cherkasova Elena3RAS, Vernadsky Institute of Geochemistry and Analytical ChemistryRAS, Vernadsky Institute of Geochemistry and Analytical ChemistryRAS, Vernadsky Institute of Geochemistry and Analytical ChemistryRAS, Vernadsky Institute of Geochemistry and Analytical ChemistryWater migration of iodine, selenium are in many cases directly related to manifestation of thyroid pathologies, in particular, the endemic goiter. The main aim was to evaluate species and conditions of migration of these elements in natural waters from different water-bearing rocks in areas with a natural iodine deficiency. Evaluation of iodine and selenium species in aqueous solutions has been carried out by thermodynamic modeling basing on chemical composition of 81 water samples taken in the Bryansk region in the period of 2015-2017. The study has showed that the predominant species of iodine in the natural waters is iodide-ion (89%), which may also associate with typomorphic ions (Ca, Mg, Na, K, Sr) forming mineral complexes with them. In the latter state iodine may be removed from solution by fixation on a carbonate barrier. Selenium dominates in natural waters as hydroselenide ion (91%). In the presence of a significant amount of iron, this trace element may form the FeSe mineral phase which may be fixed in reduction conditions.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/24/e3sconf_wri-162018_09013.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Kolmykova Liudmila Korobova Elena Ryzhenko Boris Cherkasova Elena |
spellingShingle |
Kolmykova Liudmila Korobova Elena Ryzhenko Boris Cherkasova Elena Theoretical evaluation of iodine and selenium speciation in the natural waters of iodine-deficient territories E3S Web of Conferences |
author_facet |
Kolmykova Liudmila Korobova Elena Ryzhenko Boris Cherkasova Elena |
author_sort |
Kolmykova Liudmila |
title |
Theoretical evaluation of iodine and selenium speciation in the natural waters of iodine-deficient territories |
title_short |
Theoretical evaluation of iodine and selenium speciation in the natural waters of iodine-deficient territories |
title_full |
Theoretical evaluation of iodine and selenium speciation in the natural waters of iodine-deficient territories |
title_fullStr |
Theoretical evaluation of iodine and selenium speciation in the natural waters of iodine-deficient territories |
title_full_unstemmed |
Theoretical evaluation of iodine and selenium speciation in the natural waters of iodine-deficient territories |
title_sort |
theoretical evaluation of iodine and selenium speciation in the natural waters of iodine-deficient territories |
publisher |
EDP Sciences |
series |
E3S Web of Conferences |
issn |
2267-1242 |
publishDate |
2019-01-01 |
description |
Water migration of iodine, selenium are in many cases directly related to manifestation of thyroid pathologies, in particular, the endemic goiter. The main aim was to evaluate species and conditions of migration of these elements in natural waters from different water-bearing rocks in areas with a natural iodine deficiency. Evaluation of iodine and selenium species in aqueous solutions has been carried out by thermodynamic modeling basing on chemical composition of 81 water samples taken in the Bryansk region in the period of 2015-2017. The study has showed that the predominant species of iodine in the natural waters is iodide-ion (89%), which may also associate with typomorphic ions (Ca, Mg, Na, K, Sr) forming mineral complexes with them. In the latter state iodine may be removed from solution by fixation on a carbonate barrier. Selenium dominates in natural waters as hydroselenide ion (91%). In the presence of a significant amount of iron, this trace element may form the FeSe mineral phase which may be fixed in reduction conditions. |
url |
https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/24/e3sconf_wri-162018_09013.pdf |
work_keys_str_mv |
AT kolmykovaliudmila theoreticalevaluationofiodineandseleniumspeciationinthenaturalwatersofiodinedeficientterritories AT korobovaelena theoreticalevaluationofiodineandseleniumspeciationinthenaturalwatersofiodinedeficientterritories AT ryzhenkoboris theoreticalevaluationofiodineandseleniumspeciationinthenaturalwatersofiodinedeficientterritories AT cherkasovaelena theoreticalevaluationofiodineandseleniumspeciationinthenaturalwatersofiodinedeficientterritories |
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