Advances in geopolymer materials: A comprehensive review

被引:4
作者
Peiliang Cong
Yaqian Cheng
机构
[1] ResearchCenterofTransportationMaterialsofMinistryofEducation,SchoolofMaterialsScienceandEngineering,Chang'anUniversity
关键词
Geopolymer/alkali-activated material; Geopolymerization; Property; Application; Existing restriction;
D O I
暂无
中图分类号
TQ177 [人造石及其他胶凝材料];
学科分类号
0805 ; 080502 ;
摘要
Geopolymer is a new environment-friendly cementitious material, and the development of geopolymer can reduce the carbon dioxide emission caused by the development of cement industry. Geopolymer materials not only have excellent mechanical properties, but also have a series of excellent properties such as fire resistance and corrosion resistance. Most industrial solid waste and waste incineration bottom ash are piled up at will, which not only occupies land resources, but also has a bad impact on the environment. Recycling them can be used as raw materials for preparing geopolymers. Geopolymer materials can effectively adsorb heavy metals, dyes, and other radioactive pollution, which is very beneficial to society's future development. However, due to the excellent properties of geopolymer materials, its application goes beyond that. Some useful information about geopolymer materials was introduced in this paper. The paper included the geopolymerization, the source of raw materials, the types of activators, the preparation methods, and the different application fields of geopolymer materials. The factors affecting the fresh properties and mechanical properties of geopolymer materials were discussed. In this paper, the shortcomings and application limitations of geopolymer materials were summarized, and their progress was summarized to lay a theoretical foundation for the long-term development of geopolymer materials.
引用
收藏
页码:283 / 314
页数:32
相关论文
共 187 条
[1]  
Compressive strength; modulus of elasticity and hardness of geopolymeric cement synthetized from non-calcined natural kaolin[J] Fernando Pelisser;Adriano Michael Bernardin;Milton Domingos Michel;Caroline Angulski da Luz Journal of Cleaner Production 2021,
[2]  
Utilisation of municipal solid waste incinerator (MSWI) fly ash with metakaolin for preparation of alkali-activated cementitious material[J] Jun Liu;Lu Hu;Luping Tang;Jun Ren Journal of Hazardous Materials 2021,
[3]  
Self-cleaning performance of nano-TiO2 modified metakaolin-based geopolymers[J] Ambikakumari Sanalkumar Krishnan U.;Yang En-Hua Cement and Concrete Composites 2021,
[4]  
Investigation of the chemical; strength; adhesion and morphological properties of fly ash based geopolymer-modified bitumen[J] Rosyidi Sri Atmaja P.;Rahmad Suzielah;Yusoff Nur Izzi Md.;Shahrir Aini Hazwani;Ibrahim Ahmad Nazrul Hakimi;Ismail Nor Farah Nadia;Badri Khairiah Haji Construction and Building Materials 2020,
[5]  
Optimization of brick waste-based geopolymer binders at ambient temperature and pre-targeted chemical parameters[J] O. Mahmoodi;H. Siad;M. Lachemi;S. Dadsetan;M. Sahmaran Journal of Cleaner Production 2020,
[6]  
Alkali-silica reaction (ASR) in the alkali-activated cement (AAC) system: A state-of-the-art review[J] Wei Wang;Takafumi Noguchi Construction and Building Materials 2020,
[7]  
The effect of nanomaterials on properties of geopolymers derived from industrial by-products: A state-of-the-art review[J] Bharat Bhushan Jindal;Rahul Sharma Construction and Building Materials 2020,
[8]  
Synthesis and characterisation of sodium silicate from spent foundry sand: Effective route for waste utilisation[J] Abdul Aleem Mohamed Ismail;Kavikumaran Kannadasan;Prabunathan Pichaimani;Hariharan Arumugam;Alagar Muthukaruppan Journal of Cleaner Production 2020,
[9]  
A bifunctional hierarchical porous kaolinite geopolymer with good performance in thermal and sound insulation[J] Huan Gao;Hao Liu;Libing Liao;Lefu Mei;Fan Zhang;Longhui Zhang;Sha Li;Guocheng Lv Construction and Building Materials 2020,
[10]  
Thermal and compressive behaviors of fly ash and metakaolin-based geopolymer[J] Jingming Cai;Xiaopeng Li;Jiawei Tan;Brecht Vandevyvere Journal of Building Engineering 2020,