Iron and manganese in bottom sediments and interstitial waters sampled in the White Sea on August 21-30, 2003
Iron and manganese in bottom sediments studied along the sublatitudinal transect from Kandalaksha to Arkhangelsk are characterized by various contents and speciations depending on sedimentation environment, grain size of sediments, and diagenetic processes. The latter include redistribution of react...
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ftpangaea:oai:pangaea.de:doi:10.1594/PANGAEA.786641 2023-05-15T15:24:00+02:00 Iron and manganese in bottom sediments and interstitial waters sampled in the White Sea on August 21-30, 2003 Rozanov, Alexander G Volkov, Igor I Kokryatskaya, Natalya M Yudin, M V MEDIAN LATITUDE: 65.781843 * MEDIAN LONGITUDE: 36.562642 * SOUTH-BOUND LATITUDE: 64.621333 * WEST-BOUND LONGITUDE: 33.847167 * NORTH-BOUND LATITUDE: 66.656833 * EAST-BOUND LONGITUDE: 39.565333 2006-07-27 application/zip, 3 datasets https://doi.pangaea.de/10.1594/PANGAEA.786641 https://doi.org/10.1594/PANGAEA.786641 en eng PANGAEA https://doi.pangaea.de/10.1594/PANGAEA.786641 https://doi.org/10.1594/PANGAEA.786641 CC-BY-3.0: Creative Commons Attribution 3.0 Unported Access constraints: unrestricted info:eu-repo/semantics/openAccess CC-BY Supplement to: Rozanov, Alexander G; Volkov, Igor I; Kokryatskaya, Natalya M; Yudin, M V (2006): Manganese and iron in the White Sea: Sedimentation and diagenesis. Translated from Litologiya i Poleznye Iskopaemye, 2006, 5, 539-558, Lithology and Mineral Resources, 41(5), 483-501, https://doi.org/10.1134/S0024490206050087 Archive of Ocean Data ARCOD Dataset 2006 ftpangaea https://doi.org/10.1594/PANGAEA.786641 https://doi.org/10.1134/S0024490206050087 2023-01-20T07:32:38Z Iron and manganese in bottom sediments studied along the sublatitudinal transect from Kandalaksha to Arkhangelsk are characterized by various contents and speciations depending on sedimentation environment, grain size of sediments, and diagenetic processes. The latter include redistribution of reactive forms leading to enrichment in Fe and Mn of surface sediments, formation of films, incrustations, and ferromanganese nodules. Variations in total Fe content (2-8%) are accompanied by changes in concentration of its reactive forms (acid extraction) and concentration of dissolved Fe in interstitial waters (1-14 µM). Variations in Mn content in bottom sediments (0.03-3.7%) and interstitial waters (up to 500 µM) correspond to high diagenetic mobility of this element. Changes in oxidation degree of chemical elements result in redox stratification of sediment strata with maximum concentrations of Fe, Mn, and sulfides. Organic matter of bottom sediments with considerable terrestrial constituent is oxidized by bottom water oxygen mainly at the sediment surface or in anaerobic conditions within the sediment strata. The role of inorganic components in organic matter oxidation changes from surface layer bottom sediments (where manganese oxyhydroxide dominates among oxidants) to deeper layers (where sulfate of interstitial water serves as the main oxidant). Differences in river runoff and hydrodynamics are responsible for geochemical asymmetry of the transect. The deep Kandalaksha Bay serves as a sediment trap for manganese (Mn content in sediments varies within 0.5-0.7%), whereas the sedimentary environment in the Dvina Bay promotes its removal from bottom sediments (Mn 0.05%). Dataset Arkhangelsk dvina Dvina Bay White Sea PANGAEA - Data Publisher for Earth & Environmental Science Kandalaksha ENVELOPE(32.417,32.417,67.133,67.133) White Sea ENVELOPE(33.847167,39.565333,66.656833,64.621333) |
institution |
Open Polar |
collection |
PANGAEA - Data Publisher for Earth & Environmental Science |
op_collection_id |
ftpangaea |
language |
English |
topic |
Archive of Ocean Data ARCOD |
spellingShingle |
Archive of Ocean Data ARCOD Rozanov, Alexander G Volkov, Igor I Kokryatskaya, Natalya M Yudin, M V Iron and manganese in bottom sediments and interstitial waters sampled in the White Sea on August 21-30, 2003 |
topic_facet |
Archive of Ocean Data ARCOD |
description |
Iron and manganese in bottom sediments studied along the sublatitudinal transect from Kandalaksha to Arkhangelsk are characterized by various contents and speciations depending on sedimentation environment, grain size of sediments, and diagenetic processes. The latter include redistribution of reactive forms leading to enrichment in Fe and Mn of surface sediments, formation of films, incrustations, and ferromanganese nodules. Variations in total Fe content (2-8%) are accompanied by changes in concentration of its reactive forms (acid extraction) and concentration of dissolved Fe in interstitial waters (1-14 µM). Variations in Mn content in bottom sediments (0.03-3.7%) and interstitial waters (up to 500 µM) correspond to high diagenetic mobility of this element. Changes in oxidation degree of chemical elements result in redox stratification of sediment strata with maximum concentrations of Fe, Mn, and sulfides. Organic matter of bottom sediments with considerable terrestrial constituent is oxidized by bottom water oxygen mainly at the sediment surface or in anaerobic conditions within the sediment strata. The role of inorganic components in organic matter oxidation changes from surface layer bottom sediments (where manganese oxyhydroxide dominates among oxidants) to deeper layers (where sulfate of interstitial water serves as the main oxidant). Differences in river runoff and hydrodynamics are responsible for geochemical asymmetry of the transect. The deep Kandalaksha Bay serves as a sediment trap for manganese (Mn content in sediments varies within 0.5-0.7%), whereas the sedimentary environment in the Dvina Bay promotes its removal from bottom sediments (Mn 0.05%). |
format |
Dataset |
author |
Rozanov, Alexander G Volkov, Igor I Kokryatskaya, Natalya M Yudin, M V |
author_facet |
Rozanov, Alexander G Volkov, Igor I Kokryatskaya, Natalya M Yudin, M V |
author_sort |
Rozanov, Alexander G |
title |
Iron and manganese in bottom sediments and interstitial waters sampled in the White Sea on August 21-30, 2003 |
title_short |
Iron and manganese in bottom sediments and interstitial waters sampled in the White Sea on August 21-30, 2003 |
title_full |
Iron and manganese in bottom sediments and interstitial waters sampled in the White Sea on August 21-30, 2003 |
title_fullStr |
Iron and manganese in bottom sediments and interstitial waters sampled in the White Sea on August 21-30, 2003 |
title_full_unstemmed |
Iron and manganese in bottom sediments and interstitial waters sampled in the White Sea on August 21-30, 2003 |
title_sort |
iron and manganese in bottom sediments and interstitial waters sampled in the white sea on august 21-30, 2003 |
publisher |
PANGAEA |
publishDate |
2006 |
url |
https://doi.pangaea.de/10.1594/PANGAEA.786641 https://doi.org/10.1594/PANGAEA.786641 |
op_coverage |
MEDIAN LATITUDE: 65.781843 * MEDIAN LONGITUDE: 36.562642 * SOUTH-BOUND LATITUDE: 64.621333 * WEST-BOUND LONGITUDE: 33.847167 * NORTH-BOUND LATITUDE: 66.656833 * EAST-BOUND LONGITUDE: 39.565333 |
long_lat |
ENVELOPE(32.417,32.417,67.133,67.133) ENVELOPE(33.847167,39.565333,66.656833,64.621333) |
geographic |
Kandalaksha White Sea |
geographic_facet |
Kandalaksha White Sea |
genre |
Arkhangelsk dvina Dvina Bay White Sea |
genre_facet |
Arkhangelsk dvina Dvina Bay White Sea |
op_source |
Supplement to: Rozanov, Alexander G; Volkov, Igor I; Kokryatskaya, Natalya M; Yudin, M V (2006): Manganese and iron in the White Sea: Sedimentation and diagenesis. Translated from Litologiya i Poleznye Iskopaemye, 2006, 5, 539-558, Lithology and Mineral Resources, 41(5), 483-501, https://doi.org/10.1134/S0024490206050087 |
op_relation |
https://doi.pangaea.de/10.1594/PANGAEA.786641 https://doi.org/10.1594/PANGAEA.786641 |
op_rights |
CC-BY-3.0: Creative Commons Attribution 3.0 Unported Access constraints: unrestricted info:eu-repo/semantics/openAccess |
op_rightsnorm |
CC-BY |
op_doi |
https://doi.org/10.1594/PANGAEA.786641 https://doi.org/10.1134/S0024490206050087 |
_version_ |
1766354571056119808 |