Improving physical properties, microstructure and actual carbon sequestration of steel slag based autoclaved aerated concrete by accelerated carbonation

Author:

Gu Xiaowei,Wang ShenyuORCID,Liu Jianping,Zhu Zhenguo,Wang Hongyu,Ge Xiaowei,Hu Ziyang,Xu Xiaochuan,Nehdi Moncef L.ORCID

Publisher

Elsevier BV

Reference72 articles.

1. Effect of hydroxypropyl methyl cellulose (HPMC) as foam stabilizer on the workability and pore structure of iron tailings sand autoclaved aerated concrete;Gu;Construct. Build. Mater.,2023

2. Influence of the climatic conditions on the hygrothermal performance of autoclaved aerated concrete masonry walls;Trindade;J. Build. Eng.,2021

3. Bio-based ultra-lightweight concrete applying miscanthus fibers: acoustic absorption and thermal insulation;Chen;Cem. Concr. Compos.,2020

4. Utilization of carbide slag in autoclaved aerated concrete (CS-AAC) and optimization: foaming, hydration process, and physic-mechanical properties;Sun;Case Stud. Constr. Mater.,2023

5. Study on flexural behavior of BFRCM-autoclaved aerated concrete composite slabs: effects of slab and strengthening thickness;Li;J. Build. Eng.,2023

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