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Hydrothermal Reaction Characteristics on the ALC of Pitchstone-Lime System
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J. Korean Ceram. Soc.. 1992;29(8):660

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Study of K-Feldspar and Lime Hydrothermal Reaction: Phase and Mechanism with Reaction Temperature and Increasing Ca/Si Ratio
Minerals. 2019;9(1):46   Crossref logo

Study of K‐Feldspar and Lime Hydrothermal Reaction at 190 °C: Phase, Kinetics and Mechanism with Reaction Time
ChemistrySelect. 2018;3(46):13010-13016   Crossref logo
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Kinetic study of the hydrothermal reaction between lime and rice-husk-ash silica
Cement and Concrete Research. 1992;22(4):577-588   Crossref logo
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Oxidation characteristics of Ti 3 AlC 2 , Ti 3 SiC 2 and Ti 2 AlC
Advances in Science and Technology of Mn+1AXn Phases. 2012;289-322   Crossref logo
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Lime putty versus hydrated lime powder: Physicochemical and mechanical characteristics of lime based mortars
Construction and Building Materials. 2019;225:633-641   Crossref logo
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Hydrothermal reactions in lime-quartz pastes
Journal of Applied Chemistry. 2007;10(1):7-15   Crossref logo
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Hydration state of tobermorite in hydrothermal lime-silica products
Cement and Concrete Research. 1973;3(2):215-217   Crossref logo
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Experimental Research on Dynamics Characteristics and Damage of ALC Wallboard
Advanced Materials Research. 2012;535-537:1780-1784   Crossref logo

On the kinetics of pozzolanic reaction in the system kaolin–lime–water
Journal of Thermal Analysis and Calorimetry. 2009;101(1):107-112   Crossref logo
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Study of hydrated phases present in a MK–lime system cured at 60 °C and 60 months of reaction
Cement and Concrete Research. 2006;36(5):827-831   Crossref logo
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