Synthesis and Kinetics of Generation of MMS/MFI Materials Prepared on the Basis of Ti-Aerosil

The one-stage bitemplate synthesis method for obtaining mesoporous zeolite-containing materials was used to prepare Ti-aerosil (Ti-MZ). The formation kinetics and the textural features of this material were also studied. The products were characterized by IR spectroscopy (FT-IR), X-ray diffraction (...

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Main Authors: K.M. Khomenko, A.V. Rudneva, E.I. Oranskaya
Format: Article
Language:English
Published: SAGE Publishing 2006-12-01
Series:Adsorption Science & Technology
Online Access:https://doi.org/10.1260/026361707781422022
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author K.M. Khomenko
A.V. Rudneva
E.I. Oranskaya
author_facet K.M. Khomenko
A.V. Rudneva
E.I. Oranskaya
author_sort K.M. Khomenko
collection DOAJ
description The one-stage bitemplate synthesis method for obtaining mesoporous zeolite-containing materials was used to prepare Ti-aerosil (Ti-MZ). The formation kinetics and the textural features of this material were also studied. The products were characterized by IR spectroscopy (FT-IR), X-ray diffraction (XRD) and nitrogen adsorption methods. Hydrothermal processing (HTP) for relatively short time periods (ca. 8 h) led to the formation of zeolite nano-domains in the amorphous titanium-silica matrix exhibiting perfect two-dimensional hexagonal packing without destruction of the mesopore framework. Increasing HTP time was accompanied by the formation of a highly crystalline zeolite framework in the titanium-silica matrix which exhibited increasing microporosity accompanied by the destruction of the mesoporous framework.
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institution Kabale University
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series Adsorption Science & Technology
spelling doaj-art-e46726c6d91f429ca3c9ad159f4408672025-01-03T00:10:26ZengSAGE PublishingAdsorption Science & Technology0263-61742048-40382006-12-012410.1260/026361707781422022Synthesis and Kinetics of Generation of MMS/MFI Materials Prepared on the Basis of Ti-AerosilK.M. Khomenko0A.V. Rudneva1E.I. Oranskaya2 Institute for Sorption and Problems of Endoecology, Ukrainian National Academy of Sciences, 13 Gen. Naumova Str., 03164 Kiev, Ukraine Institute for Sorption and Problems of Endoecology, Ukrainian National Academy of Sciences, 13 Gen. Naumova Str., 03164 Kiev, Ukraine Institute of Surface Chemistry, Ukrainian National Academy of Sciences, 17 Gen. Naumova Str., 03164 Kiev, UkraineThe one-stage bitemplate synthesis method for obtaining mesoporous zeolite-containing materials was used to prepare Ti-aerosil (Ti-MZ). The formation kinetics and the textural features of this material were also studied. The products were characterized by IR spectroscopy (FT-IR), X-ray diffraction (XRD) and nitrogen adsorption methods. Hydrothermal processing (HTP) for relatively short time periods (ca. 8 h) led to the formation of zeolite nano-domains in the amorphous titanium-silica matrix exhibiting perfect two-dimensional hexagonal packing without destruction of the mesopore framework. Increasing HTP time was accompanied by the formation of a highly crystalline zeolite framework in the titanium-silica matrix which exhibited increasing microporosity accompanied by the destruction of the mesoporous framework.https://doi.org/10.1260/026361707781422022
spellingShingle K.M. Khomenko
A.V. Rudneva
E.I. Oranskaya
Synthesis and Kinetics of Generation of MMS/MFI Materials Prepared on the Basis of Ti-Aerosil
Adsorption Science & Technology
title Synthesis and Kinetics of Generation of MMS/MFI Materials Prepared on the Basis of Ti-Aerosil
title_full Synthesis and Kinetics of Generation of MMS/MFI Materials Prepared on the Basis of Ti-Aerosil
title_fullStr Synthesis and Kinetics of Generation of MMS/MFI Materials Prepared on the Basis of Ti-Aerosil
title_full_unstemmed Synthesis and Kinetics of Generation of MMS/MFI Materials Prepared on the Basis of Ti-Aerosil
title_short Synthesis and Kinetics of Generation of MMS/MFI Materials Prepared on the Basis of Ti-Aerosil
title_sort synthesis and kinetics of generation of mms mfi materials prepared on the basis of ti aerosil
url https://doi.org/10.1260/026361707781422022
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AT avrudneva synthesisandkineticsofgenerationofmmsmfimaterialspreparedonthebasisoftiaerosil
AT eioranskaya synthesisandkineticsofgenerationofmmsmfimaterialspreparedonthebasisoftiaerosil