SELECTIVE ACID LEACHING OF TALC
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概要
- 論文の詳細を見る
Talc was treated with acid under a variety of conditions to obtain porous silica by selective leaching. Aliquots of the powder (1 g) were leached with 50 ml of 2-4 M strong acids (HCl, HNO_3 and H_2SO_4) at 80° and 150℃ for 0.5 h-14 days. Since the chemical compositions of the resultant products showed little change after acid treatment at 80℃C for 2 h, which conditions are generally sufficient to prepare a silica-rich product by selective leaching from a variety of other clay minerals, it is concluded that talc is more resistant to acid attack than other clays. The products obtained at 150℃ using an autoclave showed an increased SiO_2 content (up to >90 mass%) with longer leaching times. The specific surface areas of the resultant products were <40 m^2/g and are lower than those from other clay minerals. This low surface area of the product is discussed with respect to the chemical compositions and structures of the various clay mineral reactants. Since the products preserved the original flaky particle shape after selective leaching and also after firing to 1000℃, the selective leaching of talc provides a method for preparing amorphous silica with a platy particle shape.
- 日本粘土学会の論文
著者
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Mackenzie K
The New Zealand Institute For Industrial Research And Development
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Okada Kiyoshi
Department Of Metallurgy & Ceramic Science Tokyo Institute Of Technology
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KAMESHIMA Yoshikazu
Department of Metallurgy & Ceramic Science, Tokyo Institute of Technology
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TEMUUJIN JADAMBAA
Department of Metallurgy and Ceramics Science, Tokyo Institute of Technology
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MACKENZIE KENNETH
The New Zealand Institute for Industrial Research and Development
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Kameshima Yoshikazu
Department Of Metallurgy And Ceramics Science Tokyo Institute Of Technology
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Mackenzie Kenneth
School Of Chemical And Physical Sciences Victoria Univ. Of Wellington
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Temuujin Jadambaa
Department Of Metallurgy And Ceramics Science Tokyo Institute Of Technology:(present Address)the Ins
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Okada Kiyoshi
Department Of Metallurgy And Ceramics Science Tokyo Institute Of Technology
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Okada Kiyoshi
Department Of Inorganic Materials Faculty Of Engineering Tokyo Institute Of Technology
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Okada Kiyoshi
Department Of Electronic Control Engineering Nagaoka National College Of Technology
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KAMESHIMA Yoshikazu
Department of Material and Energy Science, Graduate School of Environmental Science, Okayama University
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