Journal of Materials Science and Chemical Engineering

Journal of Materials Science and Chemical Engineering

ISSN Print: 2327-6045
ISSN Online: 2327-6053
www.scirp.org/journal/msce
E-mail: msce@scirp.org
"Synthesis and Structural Characterization of CSH-Phases in the Range of C/S = 0.41 - 1.66 at Temperatures of the Tobermorite Xonotlite Crossover"
written by Andrea Hartmann, David Schulenberg, Josef-Christian Buhl,
published by Journal of Materials Science and Chemical Engineering, Vol.3 No.11, 2015
has been cited by the following article(s):
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[2] Hydrothermal transformation of fly ash to tobermorite or katoite: Impact of Ca and Si concentration in the liquid phase without alkali activation
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[4] Effect of sillimanite sand on the mechanical property and thermal resistance of alkali-activated slag mortar
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[5] Effects of alkali activation and hydrothermal processes on the transformation of fly ash into Al-substituted tobermorite fiber
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[6] Effect of Different Initial CaO/SiO2 Molar Ratios and Curing Times on the Preparation and Formation Mechanism of Calcium Silicate Hydrate
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[7] Variation of self-cleaning performance of nano-TiO2 modified mortar caused by carbonation: From hydrates to carbonates
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[8] Contribution à la synthèse et la caractérisation d'une biocéramique
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[9] Evaluation of hydroxyapatite-based cement for geothermal well applications
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[10] Synthesis of High Crystallinity 1.13 nm Tobermorite and Xonotlite from Natural Rocks, Their Properties and Application for Heat-Resistant Products
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[11] Use of Lightweight Sintered Fly Ash Aggregates in Concrete at High Temperatures
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[12] Synthesis and additive manufacturing of calcium silicate hydrate scaffolds
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[13] Assessment of CO2 adsorption capacity in Wollastonite using atomistic simulation
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[14] Peculiarities of tobermorite and xonotlite synthesis from natural rocks, their properties and applications
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[15] Синтез гидромоносиликатов кальция в гидро-химических условиях при получении калийного удобрения из туфа и извести
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[16] Peculiarities of xonotlite synthesis from the raw materials with different SiO2 activities.
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[17] Peculiarities of xonotlite synthesis from the raw materials with different SiO2 activities
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[18] Effect of magnesium on the structure and chemical composition of calcium silicate hydrate at elevated temperature
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[19] Synthesis of europium-doped calcium silicate hydrate via hydrothermal and coprecipitation method
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[20] Peculiarities of xonotlite synthesis from the raw materials with different SiO
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[21] Carbonic Acid Resistance of Hydroxyapatite-Containing Cement
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[22] Carbonic Acid Resistance of Hydroxyapatite Based Cement
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[23] Formation and Stability of Nontoxic Perovskite Precursor
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[24] Manufacturing of fire resistant porous Ca-silicate ceramics
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[25] Characterizations of calcium silicate hydrates derived from coal fly ash and their mechanisms for phosphate removal
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[26] A Comprehensive Study on Calcium Silicate Hydrate–Polycarboxylate Superplasticizer (CSH–PCE) Nanocomposites as Accelerating Admixtures in Cement
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[27] Study on hydrothermal synthesis dynamics of nanoscale xonotlite fibers
IOP Conference Series: Materials Science and Engineering, 2018
[28] Modified xonotlite–type calcium silicate hydrate slabs for fire doors
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[29] Shear bond strength of oil well cement in carbonic acid environment
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[30] Study on hydrothermal synthesis dynamics of xonotlite spherical particles
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[31] The synthesis of 1.13 nm tobermorite from carbonated opoka
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[32] Comparative dynamics analysis on xonotlite spherical particles synthesized via hydrothermal synthesis
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[33] The influence of starting materials´ solubility on tobermorite structure formation under the hydrothermal conditions
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[34] Lehrstuhl für Bauchemie
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[35] Effect of anions from calcium sources on the synthesis of nano-sized xonotlite fibers
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[36] Application of dilatometric analysis to the study of autoclaved calcium silicate materials
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[37] Comparative Dynamics Analysis on Nanoscale Xonotlite Fibers Synthesized via Hydrothermal Synthesis
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[38] Research on Morphology and Growth Mechanism of Xonotlite Crystal
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