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Effect of metallic Si addition on polymerization degree of in situ foamed alkali- aluminosilicates

Academic Article
Publication Date:
2013
abstract:
Geopolymerization is an aqueous based process to produce synthetic alkali-aluminosilicates with porosity that can be tailored from the nano- to the ultra-macrometric range. In order to fulfil the requirements for many different applications, porous 3D networks (namely alkali-aluminosilicate foams) were prepared by inducing interconnected ultra-macro-porosity (up to the millimetre range) in the alkali-bonded matrices, exploiting the ability of silicon powder to generate H2 in the aqueous medium. Being H2 the product of a water-consuming process which competes with geopolymerization, the process parameters and the characteristics of the resulting foamed materials are strongly influenced by the amount of added silicon. Polymerization degree, accessibility of the geopolymer inner volume and the micro-ultra-macro-structure of the foams were determined and related to the process parameters of the contemporary geopolymerization and foaming.
Iris type:
01.01 Articolo in rivista
Keywords:
Alkali-bonded ceramics; geopolymerization; foam; porosity; silicon
List of contributors:
Papa, Elettra; Landi, Elena; Medri, Valentina
Authors of the University:
LANDI ELENA
MEDRI VALENTINA
PAPA ELETTRA
Handle:
https://iris.cnr.it/handle/20.500.14243/218077
Published in:
CERAMICS INTERNATIONAL
Journal
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URL

http://dx.doi.org/10.1016/j.ceramint.2013.02.104
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