Effect of high temperatures on the properties of lightweight geopolymer concrete based fly ash and glass powder mixtures

Compressive strength; Concrete aggregates; Concrete mixtures; Gas emissions; Geopolymers; Glass; Greenhouse gases; Inorganic polymers; Light weight concrete; Microstructure; Water absorption; Energy; Expanded clay; Geopolymer concrete; Glass Powder; Greenhouse gas emissions; Highest temperature; Lig...

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Bibliographic Details
Main Authors: Turkey F.A., Beddu S.B., Ahmed A.N., Al-Hubboubi S.K.
Other Authors: 57819385900
Format: Article
Published: Elsevier Ltd 2023
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Description
Summary:Compressive strength; Concrete aggregates; Concrete mixtures; Gas emissions; Geopolymers; Glass; Greenhouse gases; Inorganic polymers; Light weight concrete; Microstructure; Water absorption; Energy; Expanded clay; Geopolymer concrete; Glass Powder; Greenhouse gas emissions; Highest temperature; Lightweight aggregates; Lightweight geopolymer; Powder mixtures; Property; Fly ash