Crystallization and characterization of magnesium methanesulfonate hydrate Mg(CH3SO3)2•12H2O

Records of methanesulfonate acid in ice cores play an important role in reconstruction of the past history of marine productivity, sea ice extent, and major El Ni~no event activities related to climate changes. Considering the lack of thermodynamic and crystal structure data, crystallization conditi...

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Main Authors: Genceli-Guner, F.E., Lutz, M., Sakurai, T., Spek, A.L., Hondoh, T.
Other Authors: Rontgen participation programme, Sub Crystal and Structural Chemistry
Format: Article in Journal/Newspaper
Language:English
Published: 2010
Subjects:
Online Access:https://dspace.library.uu.nl/handle/1874/202532
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spelling ftunivutrecht:oai:dspace.library.uu.nl:1874/202532 2023-07-23T04:21:43+02:00 Crystallization and characterization of magnesium methanesulfonate hydrate Mg(CH3SO3)2•12H2O Genceli-Guner, F.E. Lutz, M. Sakurai, T. Spek, A.L. Hondoh, T. Rontgen participation programme Sub Crystal and Structural Chemistry 2010 image/pdf https://dspace.library.uu.nl/handle/1874/202532 en eng 1528-7483 https://dspace.library.uu.nl/handle/1874/202532 info:eu-repo/semantics/OpenAccess Article 2010 ftunivutrecht 2023-07-01T23:49:23Z Records of methanesulfonate acid in ice cores play an important role in reconstruction of the past history of marine productivity, sea ice extent, and major El Ni~no event activities related to climate changes. Considering the lack of thermodynamic and crystal structure data, crystallization conditions below zero degrees Celsius were mimicked in the laboratory, and magnesium methanesulfonic hydrate crystals, Mg(CH3SO3)2 3 12H2O(i.e., [Mg(H2O)6](CH3SO3)2 3 6H2O) were grown from solution by cooling crystallization and by eutectic freeze crystallization. The solubility lines between-5 andþ21 C and between 0 and 25 wt%are presented. The eutectic point of the system is detected at-5 Cand 14 wt %. The crystal structure analysis and the molecular arrangement of these crystals were determined using single crystal X-ray diffraction (XRD). Reflections were measured at a temperature of 110(2) K. The structure is trigonal with space group R3 (no. 148). The crystal is a colorless block with the following parameters: a=b=9.27150(8)A ° , c=21.1298(4)A ° , V=1572.99(4)A ° 3, Z=3, andDcalc= 1.364 g/cm3. The Raman spectrum of Mg(CH3SO3)2 3 12H2O salt has been recorded and the principal absorption modes identified. Thermogravimetric analysis confirmed the stochiometry of the Mg(CH3SO3)2 3 12H2O salt. Article in Journal/Newspaper Sea ice Utrecht University Repository
institution Open Polar
collection Utrecht University Repository
op_collection_id ftunivutrecht
language English
description Records of methanesulfonate acid in ice cores play an important role in reconstruction of the past history of marine productivity, sea ice extent, and major El Ni~no event activities related to climate changes. Considering the lack of thermodynamic and crystal structure data, crystallization conditions below zero degrees Celsius were mimicked in the laboratory, and magnesium methanesulfonic hydrate crystals, Mg(CH3SO3)2 3 12H2O(i.e., [Mg(H2O)6](CH3SO3)2 3 6H2O) were grown from solution by cooling crystallization and by eutectic freeze crystallization. The solubility lines between-5 andþ21 C and between 0 and 25 wt%are presented. The eutectic point of the system is detected at-5 Cand 14 wt %. The crystal structure analysis and the molecular arrangement of these crystals were determined using single crystal X-ray diffraction (XRD). Reflections were measured at a temperature of 110(2) K. The structure is trigonal with space group R3 (no. 148). The crystal is a colorless block with the following parameters: a=b=9.27150(8)A ° , c=21.1298(4)A ° , V=1572.99(4)A ° 3, Z=3, andDcalc= 1.364 g/cm3. The Raman spectrum of Mg(CH3SO3)2 3 12H2O salt has been recorded and the principal absorption modes identified. Thermogravimetric analysis confirmed the stochiometry of the Mg(CH3SO3)2 3 12H2O salt.
author2 Rontgen participation programme
Sub Crystal and Structural Chemistry
format Article in Journal/Newspaper
author Genceli-Guner, F.E.
Lutz, M.
Sakurai, T.
Spek, A.L.
Hondoh, T.
spellingShingle Genceli-Guner, F.E.
Lutz, M.
Sakurai, T.
Spek, A.L.
Hondoh, T.
Crystallization and characterization of magnesium methanesulfonate hydrate Mg(CH3SO3)2•12H2O
author_facet Genceli-Guner, F.E.
Lutz, M.
Sakurai, T.
Spek, A.L.
Hondoh, T.
author_sort Genceli-Guner, F.E.
title Crystallization and characterization of magnesium methanesulfonate hydrate Mg(CH3SO3)2•12H2O
title_short Crystallization and characterization of magnesium methanesulfonate hydrate Mg(CH3SO3)2•12H2O
title_full Crystallization and characterization of magnesium methanesulfonate hydrate Mg(CH3SO3)2•12H2O
title_fullStr Crystallization and characterization of magnesium methanesulfonate hydrate Mg(CH3SO3)2•12H2O
title_full_unstemmed Crystallization and characterization of magnesium methanesulfonate hydrate Mg(CH3SO3)2•12H2O
title_sort crystallization and characterization of magnesium methanesulfonate hydrate mg(ch3so3)2•12h2o
publishDate 2010
url https://dspace.library.uu.nl/handle/1874/202532
genre Sea ice
genre_facet Sea ice
op_relation 1528-7483
https://dspace.library.uu.nl/handle/1874/202532
op_rights info:eu-repo/semantics/OpenAccess
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