Macro and microstructural evolution of low-calcium fly ash-based geopolymer mortar exposed to sulphuric acid corrosion

被引:6
|
作者
Ariyadasa, Piumika W. [1 ]
Manalo, Allan C. [1 ]
Lokuge, Weena [2 ]
Aravinthan, Vasantha [3 ]
Gerdes, Andreas [4 ]
Kaltenbach, Jonas [4 ]
Galvan, Beatriz Arevalo [4 ]
机构
[1] Univ Southern Queensland, Ctr Future Mat, Toowoomba, Qld 4350, Australia
[2] Univ Southern Queensland, Ctr Future Mat, Sch Engn, Springfield, Qld 4300, Australia
[3] Univ Southern Queensland, Sch Engn, Toowoomba, Qld 4350, Australia
[4] Karlsruhe Inst Technol, Inst Funct Surfaces, Karlsruhe, Germany
关键词
Low-calcium fly ash geopolymer; Laboratory-induced sewer corrosion; Acid neutralisation; Mass change; Microstructural evolution; CONCRETE SEWER; DURABILITY; MECHANISM; DETERIORATION; RESISTANCE; DESIGN;
D O I
10.1016/j.cemconres.2024.107436
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This article reports an investigation of the behaviour of a low-calcium fly ash-only geopolymer (FAGP) mortar in comparison to Ordinary Portland Cement (OPC) mortar and a commercially available geospray mortar (P-GP) under laboratory-induced sewer conditions. An aggressive sewer condition was simulated by an accelerated corrosion rate, with mortar specimens immersed in 0.5pH sulphuric acid at a controlled temperature of 40 C for 31 days. The macro and microstructural evolution of the specimens was analysed through visual observations, mass changes, and SEM coupled with EDS, XRD, and MIP analysis. OPC exhibited a 49 % mass loss attributed to the loss of the gypsum layer formed during the acid attack. The mass reduction in the low-calcium FAGP was only 6 %, which was 42 % lower than that of OPC, indicating that calcium-bearing hydrates in the cementitious binder systems are susceptible to sulphuric acid corrosion. The acid-resistant properties of FAGP mortar suggest its suitability for sewer rehabilitation applications.
引用
收藏
页数:13
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