NON-CRYSTALLINE COPPER OXIDE HIGHLY DISPERSED ON MESOPOROUS ALUMINA: SYNTHESIS, CHARACTERIZATION AND CATALYTIC ACTIVITY IN GLYCEROL CONVERSION TO ACETOL

Polymeric precursor method and wet impregnation route were applied to synthesize copper and aluminium-based catalysts in order to obtain a material with interesting properties in catalytic reactions. The changes in the structural, morphological and textural properties due to the choice of preparatio...

Full description

Bibliographic Details
Main Authors: Tiago Pinheiro Braga, Nadine Essayem, Antoninho Valentini
Format: Article
Language:English
Published: Sociedade Brasileira de Química 2016-07-01
Series:Química Nova
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40422016000600691&lng=en&tlng=en
id doaj-b20b2a7501bf4b30b7f3764f2dcf677e
record_format Article
spelling doaj-b20b2a7501bf4b30b7f3764f2dcf677e2020-11-24T23:34:09ZengSociedade Brasileira de QuímicaQuímica Nova1678-70642016-07-0139669169610.5935/0100-4042.20160074S0100-40422016000600691NON-CRYSTALLINE COPPER OXIDE HIGHLY DISPERSED ON MESOPOROUS ALUMINA: SYNTHESIS, CHARACTERIZATION AND CATALYTIC ACTIVITY IN GLYCEROL CONVERSION TO ACETOLTiago Pinheiro BragaNadine EssayemAntoninho ValentiniPolymeric precursor method and wet impregnation route were applied to synthesize copper and aluminium-based catalysts in order to obtain a material with interesting properties in catalytic reactions. The changes in the structural, morphological and textural properties due to the choice of preparation method were characterized by different techniques, such as XRD, N2 physisorption isotherms and SEM. The XRD results of the solids present the formation of γ-Al2O3 or CuO and β-Al(OH)3, depending on the preparation method. The average crystallite diameters of the alumina were estimated by the Scherrer's formula with a particle size of 5.2 nm. N2 physisorption isotherms analysis shows that the alumina is a mesoporous material with a high specific surface area. An excessive increase in surface area was observed after Cu2+ insertion by wet impregnation from β-Al(OH)3 support, which is explained by the redissolution and recrystallization of bayerite to γ-Al2O3 during the impregnation of Cu2+ and recalcination process, respectively. The SEM images confirmed this phenomenon. Catalytic tests explain that the combination of the two methods improves the activity, selectivity and the stability in the conversion of glycerol to acetol. The results indicate that the way of catalyst preparation affects its structural, textural and morphological properties and consequently the catalytic performancehttp://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40422016000600691&lng=en&tlng=encopper oxidealuminabayeriteglycerolacetol.
collection DOAJ
language English
format Article
sources DOAJ
author Tiago Pinheiro Braga
Nadine Essayem
Antoninho Valentini
spellingShingle Tiago Pinheiro Braga
Nadine Essayem
Antoninho Valentini
NON-CRYSTALLINE COPPER OXIDE HIGHLY DISPERSED ON MESOPOROUS ALUMINA: SYNTHESIS, CHARACTERIZATION AND CATALYTIC ACTIVITY IN GLYCEROL CONVERSION TO ACETOL
Química Nova
copper oxide
alumina
bayerite
glycerol
acetol.
author_facet Tiago Pinheiro Braga
Nadine Essayem
Antoninho Valentini
author_sort Tiago Pinheiro Braga
title NON-CRYSTALLINE COPPER OXIDE HIGHLY DISPERSED ON MESOPOROUS ALUMINA: SYNTHESIS, CHARACTERIZATION AND CATALYTIC ACTIVITY IN GLYCEROL CONVERSION TO ACETOL
title_short NON-CRYSTALLINE COPPER OXIDE HIGHLY DISPERSED ON MESOPOROUS ALUMINA: SYNTHESIS, CHARACTERIZATION AND CATALYTIC ACTIVITY IN GLYCEROL CONVERSION TO ACETOL
title_full NON-CRYSTALLINE COPPER OXIDE HIGHLY DISPERSED ON MESOPOROUS ALUMINA: SYNTHESIS, CHARACTERIZATION AND CATALYTIC ACTIVITY IN GLYCEROL CONVERSION TO ACETOL
title_fullStr NON-CRYSTALLINE COPPER OXIDE HIGHLY DISPERSED ON MESOPOROUS ALUMINA: SYNTHESIS, CHARACTERIZATION AND CATALYTIC ACTIVITY IN GLYCEROL CONVERSION TO ACETOL
title_full_unstemmed NON-CRYSTALLINE COPPER OXIDE HIGHLY DISPERSED ON MESOPOROUS ALUMINA: SYNTHESIS, CHARACTERIZATION AND CATALYTIC ACTIVITY IN GLYCEROL CONVERSION TO ACETOL
title_sort non-crystalline copper oxide highly dispersed on mesoporous alumina: synthesis, characterization and catalytic activity in glycerol conversion to acetol
publisher Sociedade Brasileira de Química
series Química Nova
issn 1678-7064
publishDate 2016-07-01
description Polymeric precursor method and wet impregnation route were applied to synthesize copper and aluminium-based catalysts in order to obtain a material with interesting properties in catalytic reactions. The changes in the structural, morphological and textural properties due to the choice of preparation method were characterized by different techniques, such as XRD, N2 physisorption isotherms and SEM. The XRD results of the solids present the formation of γ-Al2O3 or CuO and β-Al(OH)3, depending on the preparation method. The average crystallite diameters of the alumina were estimated by the Scherrer's formula with a particle size of 5.2 nm. N2 physisorption isotherms analysis shows that the alumina is a mesoporous material with a high specific surface area. An excessive increase in surface area was observed after Cu2+ insertion by wet impregnation from β-Al(OH)3 support, which is explained by the redissolution and recrystallization of bayerite to γ-Al2O3 during the impregnation of Cu2+ and recalcination process, respectively. The SEM images confirmed this phenomenon. Catalytic tests explain that the combination of the two methods improves the activity, selectivity and the stability in the conversion of glycerol to acetol. The results indicate that the way of catalyst preparation affects its structural, textural and morphological properties and consequently the catalytic performance
topic copper oxide
alumina
bayerite
glycerol
acetol.
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40422016000600691&lng=en&tlng=en
work_keys_str_mv AT tiagopinheirobraga noncrystallinecopperoxidehighlydispersedonmesoporousaluminasynthesischaracterizationandcatalyticactivityinglycerolconversiontoacetol
AT nadineessayem noncrystallinecopperoxidehighlydispersedonmesoporousaluminasynthesischaracterizationandcatalyticactivityinglycerolconversiontoacetol
AT antoninhovalentini noncrystallinecopperoxidehighlydispersedonmesoporousaluminasynthesischaracterizationandcatalyticactivityinglycerolconversiontoacetol
_version_ 1725529431980638208