Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"Properties of Geopolymers Made from Fired Clay Bricks Wastes and Rice Husk Ash (RHA)-Sodium Hydroxide (NaOH) Activator"
written by Lynn Myllyam Beleuk à Moungam, Hawa Mohamed, Elie Kamseu, Ndigui Billong, Uphie Chinje Melo,
published by Materials Sciences and Applications, Vol.8 No.7, 2017
has been cited by the following article(s):
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[13] A comprehensive overview of geopolymer composites: A bibliometric analysis and literature review
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[14] Production, characteristics, and utilization of rice husk ash in alkali activated materials: An overview of fresh and hardened state properties
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[15] Powdered banana peel in calcined halloysite replacement on the setting times and engineering properties on the geopolymer binders
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[16] Synthesis of Volcanic Ash‐based Porous Inorganic Polymers Using Biomass as Pore Inducing Agent: Phase Evolution and Descriptive Microstructure
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[17] Stabilization of Compressed Earth Blocks (CEB) by Pozzolana Based Phosphate Geopolymer: Physico-Mechanical, Structural and Microstructural Investigations
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[18] Using silica fume based activator in sustainable geopolymer binder for building application
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[19] Effect of Combined Metakaolin and Basalt Powder Additions to Laterite-Based Geopolymers Activated by Rice Husk Ash (RHA)/NaOH Solution
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[20] Effect of high temperature on physical, mechanical and microstructure properties of alkali-activated slag pastes blended with ceramic waste material
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[21] A comparative study of the compressive strengths and microstructural properties of geopolymer cements from metakaolin and waste fired brick as aluminosilicate …
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[23] Development of construction and demolition waste-based engineered geopolymer composites with self-healing capability
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[24] Recent advances in slag-based binder and chemical activators derived from industrial by-products–A review
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[25] Acid-based geopolymers using waste fired brick and different metakaolins as raw materials
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[26] Mechanical and microstructural properties of geopolymer mortars from meta-halloysite: effect of titanium dioxide TiO 2 (anatase and rutile) content
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[27] Investigation of Groundnut Shell Powder on Development of Lightweight Metakaolin Based Geopolymer Composite: Mechanical and Microstructural Properties
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[28] Effect of limestone dosages on some properties of geopolymer from thermally activated halloysite
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[29] Synthesis of dry-mix of fly ash based geopolymer
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[30] Preparation of geopolymer insulating bricks from waste raw materials
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[31] Use of Water Glass from Rice Husk and Bagasse Ashes in the Preparation of Fly Ash Based Geopolymer
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[32] Performance of sodium silicate free geopolymers from metakaolin (MK) and Rice Husk Ash (RHA): Effect on tensile strength and microstructure
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