Durability of slag-based alkali-activated materials: A critical review

被引:14
作者
Gokce, H. S. [1 ,2 ]
机构
[1] Izmir Democracy Univ, Dept Civil Engn, Izmir, Turkiye
[2] Bayburt Univ, Dept Civil Engn, Bayburt, Turkiye
关键词
Alkali-activated materials; Geopolymers; Ground blast furnace slag; Durability; ASH-BASED GEOPOLYMER; FREEZE-THAW RESISTANCE; FLY-ASH; PORTLAND-CEMENT; COMPRESSIVE STRENGTH; DRYING SHRINKAGE; CARBONATION; CONCRETE; SULFATE; MICROSTRUCTURE;
D O I
10.1007/s41779-024-01011-z
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
As the world becomes increasingly aware of the devastating effects of climate change, the need for sustainable building materials that are both durable and environmentally friendly increases. Geopolymer and alkali-activated materials formed by a chemical reaction between an alkaline activator solution and an aluminosilicate source have gained popularity in recent years. The alkaline activator solution dissolves the aluminosilicate source, which then undergoes a polycondensation reaction to form a three-dimensional geopolymeric gel network. The development of this network ensures the strength and durability of the material. Today, this phenomenon of durability has been studied in detail to enable the development of superior construction materials, taking into account degradation mechanisms such as carbonation, leaching, shrinkage, fire, freezing and thawing, and exposure to aggressive environments (chlorides, acids, and sulphates). Although there are many unsolved problems in their engineering applications, slag-based alkali-activated materials appear to be more advantageous and are promising as alternative materials to ordinary Portland cement. First of all, it should not be ignored that the cure sensitivity is high in these systems due to compressive strength losses of up to 69%. Loss of strength of alkali-activated materials is considered an important indicator of degradation. In binary precursors, the presence of fly ash in slag can result in an improvement of over 10% in compressive strength of the binary-based alkali-activated materials after undergoing carbonation. The binary systems can provide superior resistance to many degradation mechanisms, especially exposure to high-temperature. The partial presence of class F fly ash in the slag-based precursor can overcome the poor ability of alkali-activated materials to withstand high temperatures. Due to the desired pore structure, alkali-activated materials may not be damaged even after 300 freeze-thaw cycles. Their superior permeability compared to cementitious counterparts can extend service life against chloride corrosion by more than 20 times. While traditional (ordinary Portland cement-based) concrete remains the most widely used material in construction, geopolymer concrete's superior performance makes it an increasingly emerging option for sustainable and long-lasting infrastructure.
引用
收藏
页码:885 / 903
页数:19
相关论文
共 188 条
[1]   Physico-mechanical performance of fly ash based geopolymer brick: Influence of pressure- temperature- time [J].
Ahmad, Madiha ;
Rashid, Khuram ;
Hameed, Rizwan ;
Ul Haq, Ehsan ;
Farooq, Hira ;
Ju, Minkwan .
JOURNAL OF BUILDING ENGINEERING, 2022, 50
[2]   27Al MAS-NMR study of inorganic polymer formation at ambient temperature [J].
Ahn, Sang-Wook ;
Lee, Hee-Soo ;
Yang, Wan-Hee ;
Lee, Jung-Woo ;
Jeong, Young-Keun .
TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2011, 21 :S182-S187
[3]   Effect of slag content and activator dosage on the resistance of fly ash geopolymer binders to sulfuric acid attack [J].
Aiken, Timothy A. ;
Kwasny, Jacek ;
Sha, Wei ;
Soutsos, Marios N. .
CEMENT AND CONCRETE RESEARCH, 2018, 111 :23-40
[4]   Strength and durability characteristic of alkali activated GGBS stabilized red mud as geo-material [J].
Alam, Shamshad ;
Das, Sarat Kumar ;
Rao, B. Hanumantha .
CONSTRUCTION AND BUILDING MATERIALS, 2019, 211 :932-942
[5]  
Alehyen S., 2017, JMES, V8, P3676
[6]   Studies on the microstructure and durability characteristics of ambient cured FA-GGBS based geopolymer mortar [J].
Alexander, Anjana Elsa ;
Shashikala, A. P. .
CONSTRUCTION AND BUILDING MATERIALS, 2022, 347
[7]   Carbonation Versus Efflorescence in Alkali-Activated Blast-Furnace Slag in Relation with Chemical Composition of Activator [J].
Allahverdi, Ali ;
Kani, Ebrahim Najafi ;
Shaverdi, Babak .
INTERNATIONAL JOURNAL OF CIVIL ENGINEERING, 2017, 15 (4A) :565-573
[8]   Durability and service life analysis of metakaolin-based geopolymer concretes with respect to chloride penetration using chloride migration test and corrosion potential [J].
Amorim Junior, Nilson S. ;
Andrade Neto, Jose S. ;
Santana, Henrique A. ;
Cilla, Marcelo S. ;
Ribeiro, Daniel, V .
CONSTRUCTION AND BUILDING MATERIALS, 2021, 287 (287)
[9]   Fire resistance of geopolymer concrete: A critical review [J].
Amran, Mugahed ;
Huang, Shan-Shan ;
Debbarma, Solomon ;
Rashid, Raizal S. M. .
CONSTRUCTION AND BUILDING MATERIALS, 2022, 324
[10]   Influence of the geopolymer formulation on the endogeneous shrinkage [J].
Archez, Julien ;
Farges, Remi ;
Gharzouni, Ameni ;
Rossignol, Sylvie .
CONSTRUCTION AND BUILDING MATERIALS, 2021, 298