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Preliminary investigations of the phase composition and fine pore structure of super-critically carbonated cement pastes

机译:超临界碳化水泥浆的相组成和细孔结构的初步研究

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摘要

Super-critical carbonation of cement-based materials can lead to significant improvements in their properties. Preliminary investigations suggested that processing should be aimed at producing a matrix material with minimal amounts of Ca(OH)(2), anhydrous material and C-S-H gel along with a controlled pore structure. Using Si-29 MAS NMR and TGA as the principal investigative techniques it has been shown that moisture content during carbonation is a major factor in determining the phase composition and pore structure of the resulting matrix. Of the drying regimes studied, 60% DOD gave the greatest amount of conversion to calcium carbonate and silica gel. (C) 2004 Kluwer Academic Publishers.
机译:水泥基材料的超临界碳化可以显着改善其性能。初步研究表明,加工应旨在生产具有最少量的Ca(OH)(2),无水材料和C-S-H凝胶以及可控孔结构的基质材料。使用Si-29 MAS NMR和TGA作为主要研究技术,结果表明,碳化过程中的水分含量是确定所得基质的相组成和孔结构的主要因素。在研究的干燥方案中,60%的DOD可最大程度地转化为碳酸钙和硅胶。 (C)2004 Kluwer学术出版社。

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