The formation of different Mg-Al LDHs (Mg/Al=2:1) under hydrothermal conditions and their application for Zn2+ ions removal

The formation of different Mg-Al LDHs (Mg/Al = 2:1) under hydrothermal conditions (200°C; 4-24 h) was investigated in the 4MgCO3⋅Mg(OH)2⋅5H2O - γ-Al2O3/Al(OH)3 - H2O and Mg5(CO3)4(OH)2•4H2O - γ-Al2O3 - H2O systems. It was determined that chemical nature of the initial Mg containing componen...

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Main Authors: Bankauskaite A., Baltakys K.
Format: Article
Language:English
Published: International Institute for the Science of Sintering, Beograd 2014-01-01
Series:Science of Sintering
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/0350-820X/2014/0350-820X1401095B.pdf
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author Bankauskaite A.
Baltakys K.
author_facet Bankauskaite A.
Baltakys K.
author_sort Bankauskaite A.
collection DOAJ
description The formation of different Mg-Al LDHs (Mg/Al = 2:1) under hydrothermal conditions (200°C; 4-24 h) was investigated in the 4MgCO3⋅Mg(OH)2⋅5H2O - γ-Al2O3/Al(OH)3 - H2O and Mg5(CO3)4(OH)2•4H2O - γ-Al2O3 - H2O systems. It was determined that chemical nature of the initial Mg containing components changes the formation mechanism of the synthesis products during isothermal curing. Magnesium aluminum hydroxide hydrate is crystallized by using 4MgCO3⋅Mg(OH)2⋅5H2O as starting material while hydroxide hydrate in the Mg5(CO3)4(OH)2•4H2O presence. The sequence of the compounds formation is presented. It should be noted that different modifications of Al containing components have only a slight influence on the meixnerite-type LDH hydrothermal synthesis. It was determined that after 45 min of sorption all Zn2+ ions are incorporated into the crystal structure of hydrotalcite. It should be underlined that crystallinity of the latter compound do not change during ion exchange experiments. Thus, the latter compound can be used as adsorbent for Zn2+ ion removal. Synthesized samples were characterized by powder X-Ray diffraction (XRD), Fourier transform infrared spectroscopy (FT-IR), simultaneous thermal analysis (STA) and scanning electron microscopy (SEM).
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spelling doaj.art-94ae36f8ad8a4820b652f6f4c4abcae02022-12-22T02:48:37ZengInternational Institute for the Science of Sintering, BeogradScience of Sintering0350-820X1820-74132014-01-014619510610.2298/SOS1401095B0350-820X1401095BThe formation of different Mg-Al LDHs (Mg/Al=2:1) under hydrothermal conditions and their application for Zn2+ ions removalBankauskaite A.0Baltakys K.1Department of Silicate Technology, Kaunas University of Technology, Kaunas, LithuaniaDepartment of Silicate Technology, Kaunas University of Technology, Kaunas, LithuaniaThe formation of different Mg-Al LDHs (Mg/Al = 2:1) under hydrothermal conditions (200°C; 4-24 h) was investigated in the 4MgCO3⋅Mg(OH)2⋅5H2O - γ-Al2O3/Al(OH)3 - H2O and Mg5(CO3)4(OH)2•4H2O - γ-Al2O3 - H2O systems. It was determined that chemical nature of the initial Mg containing components changes the formation mechanism of the synthesis products during isothermal curing. Magnesium aluminum hydroxide hydrate is crystallized by using 4MgCO3⋅Mg(OH)2⋅5H2O as starting material while hydroxide hydrate in the Mg5(CO3)4(OH)2•4H2O presence. The sequence of the compounds formation is presented. It should be noted that different modifications of Al containing components have only a slight influence on the meixnerite-type LDH hydrothermal synthesis. It was determined that after 45 min of sorption all Zn2+ ions are incorporated into the crystal structure of hydrotalcite. It should be underlined that crystallinity of the latter compound do not change during ion exchange experiments. Thus, the latter compound can be used as adsorbent for Zn2+ ion removal. Synthesized samples were characterized by powder X-Ray diffraction (XRD), Fourier transform infrared spectroscopy (FT-IR), simultaneous thermal analysis (STA) and scanning electron microscopy (SEM).http://www.doiserbia.nb.rs/img/doi/0350-820X/2014/0350-820X1401095B.pdfhydrothermal synthesismeixnerite-type layered double hydroxidehydrotalciteZn2+ ion removal
spellingShingle Bankauskaite A.
Baltakys K.
The formation of different Mg-Al LDHs (Mg/Al=2:1) under hydrothermal conditions and their application for Zn2+ ions removal
Science of Sintering
hydrothermal synthesis
meixnerite-type layered double hydroxide
hydrotalcite
Zn2+ ion removal
title The formation of different Mg-Al LDHs (Mg/Al=2:1) under hydrothermal conditions and their application for Zn2+ ions removal
title_full The formation of different Mg-Al LDHs (Mg/Al=2:1) under hydrothermal conditions and their application for Zn2+ ions removal
title_fullStr The formation of different Mg-Al LDHs (Mg/Al=2:1) under hydrothermal conditions and their application for Zn2+ ions removal
title_full_unstemmed The formation of different Mg-Al LDHs (Mg/Al=2:1) under hydrothermal conditions and their application for Zn2+ ions removal
title_short The formation of different Mg-Al LDHs (Mg/Al=2:1) under hydrothermal conditions and their application for Zn2+ ions removal
title_sort formation of different mg al ldhs mg al 2 1 under hydrothermal conditions and their application for zn2 ions removal
topic hydrothermal synthesis
meixnerite-type layered double hydroxide
hydrotalcite
Zn2+ ion removal
url http://www.doiserbia.nb.rs/img/doi/0350-820X/2014/0350-820X1401095B.pdf
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