Synthesis of short-range ordered aluminosilicates at ambient conditions

Abstract We report here on structure-related aggregation effects of short-range ordered aluminosilicates (SROAS) that have to be considered in the development of synthesis protocols and may be relevant for the properties of SROAS in the environment. We synthesized SROAS of variable composition by ne...

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Main Authors: Katharina R. Lenhardt, Hergen Breitzke, Gerd Buntkowsky, Erik Reimhult, Max Willinger, Thilo Rennert
Format: Article
Language:English
Published: Nature Publishing Group 2021-02-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-021-83643-w
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spelling doaj-8e2875dd96824864bf9cd0ac0a9fdb322021-02-21T12:33:41ZengNature Publishing GroupScientific Reports2045-23222021-02-0111111310.1038/s41598-021-83643-wSynthesis of short-range ordered aluminosilicates at ambient conditionsKatharina R. Lenhardt0Hergen Breitzke1Gerd Buntkowsky2Erik Reimhult3Max Willinger4Thilo Rennert5Fachgebiet Bodenchemie mit Pedologie, Institut für Bodenkunde und Standortslehre, Universität HohenheimEduard-Zintl-Institut für Anorganische und Physikalische Chemie, Technische Universität DarmstadtEduard-Zintl-Institut für Anorganische und Physikalische Chemie, Technische Universität DarmstadtInstitut für Biologisch Inspirierte Materialien, Universität für Bodenkultur WienInstitut für Biologisch Inspirierte Materialien, Universität für Bodenkultur WienFachgebiet Bodenchemie mit Pedologie, Institut für Bodenkunde und Standortslehre, Universität HohenheimAbstract We report here on structure-related aggregation effects of short-range ordered aluminosilicates (SROAS) that have to be considered in the development of synthesis protocols and may be relevant for the properties of SROAS in the environment. We synthesized SROAS of variable composition by neutralizing aqueous aluminium chloride with sodium orthosilicate at ambient temperature and pressure. We determined elemental composition, visualized morphology by microscopic techniques, and resolved mineral structure by solid-state 29Si and 27Al nuclear magnetic resonance and Fourier-transform infrared spectroscopy. Nitrogen sorption revealed substantial surface loss of Al-rich SROAS that resembled proto-imogolite formed in soils and sediments due to aggregation upon freezing. The effect was less pronounced in Si-rich SROAS, indicating a structure-dependent effect on spatial arrangement of mass at the submicron scale. Cryomilling efficiently fractured aggregates but did not change the magnitude of specific surface area. Since accessibility of surface functional groups is a prerequisite for sequestration of substances, elucidating physical and chemical processes of aggregation as a function of composition and crystallinity may improve our understanding of the reactivity of SROAS in the environment.https://doi.org/10.1038/s41598-021-83643-w
collection DOAJ
language English
format Article
sources DOAJ
author Katharina R. Lenhardt
Hergen Breitzke
Gerd Buntkowsky
Erik Reimhult
Max Willinger
Thilo Rennert
spellingShingle Katharina R. Lenhardt
Hergen Breitzke
Gerd Buntkowsky
Erik Reimhult
Max Willinger
Thilo Rennert
Synthesis of short-range ordered aluminosilicates at ambient conditions
Scientific Reports
author_facet Katharina R. Lenhardt
Hergen Breitzke
Gerd Buntkowsky
Erik Reimhult
Max Willinger
Thilo Rennert
author_sort Katharina R. Lenhardt
title Synthesis of short-range ordered aluminosilicates at ambient conditions
title_short Synthesis of short-range ordered aluminosilicates at ambient conditions
title_full Synthesis of short-range ordered aluminosilicates at ambient conditions
title_fullStr Synthesis of short-range ordered aluminosilicates at ambient conditions
title_full_unstemmed Synthesis of short-range ordered aluminosilicates at ambient conditions
title_sort synthesis of short-range ordered aluminosilicates at ambient conditions
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-02-01
description Abstract We report here on structure-related aggregation effects of short-range ordered aluminosilicates (SROAS) that have to be considered in the development of synthesis protocols and may be relevant for the properties of SROAS in the environment. We synthesized SROAS of variable composition by neutralizing aqueous aluminium chloride with sodium orthosilicate at ambient temperature and pressure. We determined elemental composition, visualized morphology by microscopic techniques, and resolved mineral structure by solid-state 29Si and 27Al nuclear magnetic resonance and Fourier-transform infrared spectroscopy. Nitrogen sorption revealed substantial surface loss of Al-rich SROAS that resembled proto-imogolite formed in soils and sediments due to aggregation upon freezing. The effect was less pronounced in Si-rich SROAS, indicating a structure-dependent effect on spatial arrangement of mass at the submicron scale. Cryomilling efficiently fractured aggregates but did not change the magnitude of specific surface area. Since accessibility of surface functional groups is a prerequisite for sequestration of substances, elucidating physical and chemical processes of aggregation as a function of composition and crystallinity may improve our understanding of the reactivity of SROAS in the environment.
url https://doi.org/10.1038/s41598-021-83643-w
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