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(Referência obtida automaticamente do Web of Science, por meio da informação sobre o financiamento pela FAPESP e o número do processo correspondente, incluída na publicação pelos autores.)

Synthesis of Ca-doped spinel by Ultrasonic Spray Pyrolysis

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Autor(es):
Camargo, M. T. T. [1] ; Jacques, Q. [1] ; Caliman, L. B. [1] ; Miagava, J. [1] ; Hotza, D. [2] ; Castro, R. H. R. [3] ; Gouvea, D. [1]
Número total de Autores: 7
Afiliação do(s) autor(es):
[1] Univ Sao Paulo, Polytech Sch, Dept Met & Mat Engn, Av Prof Mello Moraes 2463, BR-05508030 Sao Paulo, SP - Brazil
[2] Fed Univ Santa Catarina UFSC, Dept Chem Engn EQA, BR-88040900 Florianopolis, SC - Brazil
[3] Univ Calif Davis, Dept Chem Engn & Mat Sci, Davis, CA 95616 - USA
Número total de Afiliações: 3
Tipo de documento: Artigo Científico
Fonte: Materials Letters; v. 171, p. 232-235, MAY 15 2016.
Citações Web of Science: 6
Resumo

MgAl2O4 is a stable catalyst support with potential for replacing gamma-alumina in several applications. However, synthesis of magnesium spinel requires elevated temperatures to avoid phase separation (in MgO and Al2O3) at low temperatures, leading to coarsening and reduction of active surface area. In this work, nano CaO-doped and undoped magnesium aluminate were successfully prepared by Ultrasonic Spray Pyrolysis (USP), using a simple adapted experimental set-up operating at 1100 degrees C. During the process, the particles stay at high temperatures for a short period of time, allowing phase stability and limited coarsening. The influence of calcium oxide on the particles morphology and structure was investigated via X-ray diffraction, N-2 adsorption, X-ray fluorescence, scanning electron microscopy and transmission electron microscopy. The spinel nanopowders were obtained as spherical porous agglomerates of similar to 1 mu m. The resulting powder showed low crystallite sizes in the 5-10 nm range and high specific surface area from 110.0 to 76.6 m(2) g(-1). (C) 2016 Elsevier B.V. All rights reserved. (AU)

Processo FAPESP: 13/23209-2 - Segregação de íons na superfície de nano-óxidos e sua influência no processo coloidal
Beneficiário:Douglas Gouvêa
Modalidade de apoio: Auxílio à Pesquisa - Regular