High temperature calcined red mud-cement mortar: Workability, mechanical properties, hydration mechanism, and microstructure

Author:

Tang Liang,He Zhaoyi,Yang Renqiang,Pei Shanshan,Zou Meng,Qin Meng

Publisher

Elsevier BV

Reference51 articles.

1. Advancements in low-carbon concrete as a construction material for the sustainable built environment;Althoey;Dev. Built. Environ.,2023

2. Valorization of phosphogypsum in cement-based materials: limits and potential in eco-efficient construction;Calderón-Morales;J. Build. Eng.,2021

3. Paving the way for sustainable decarbonization of the European cement industry;Cavalett;Nat. Sustain.,2024

4. Improved macro-microscopic characteristic of gypsum-slag based cementitious materials by incorporating red mud/carbide slag binary alkaline waste-derived activator;Chang;Construct. Build. Mater.,2024

5. Effects of a red mud mineralogical composition versus calcination on its pozzolanicity;Chen;Construct. Build. Mater.,2023

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