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Alkaline fused phosphate mine tailings for geopolymer mortar synthesis: Thermal stability, mechanical and microstructural properties
被引:118
作者:
Moukannaa, S.
[1
,2
,3
]
Nazari, A.
[3
]
Bagheri, A.
[3
]
Loutou, M.
[4
]
Sanjayan, J. G.
[3
]
Hakkou, R.
[1
,2
]
机构:
[1] Univ Cadi Ayyad, Fac Sci & Tech, LCME, BP 549, Marrakech 40000, Morocco
[2] Mohammed VI Polytech Univ, Mat Sci & Nanoengn Ctr, Lot 660 Hay Moulay Rachid, Bengurir, Morocco
[3] Swinburne Univ Technol, Fac Sci Engn & Technol, Dept Civil & Construct Engn, Hawthorn, Vic 3122, Australia
[4] Univ Mohammed 1, Fac Pluridisciplinaire Nador, BP 300, Selouane 62700, Nador, Morocco
关键词:
Phosphate sludge;
Alkaline fusion;
Geopolymers;
Mine waste valorization;
Compressive strength;
Thermal stability;
ACTIVATED MATERIALS;
FUSION METHOD;
BOROALUMINOSILICATE GEOPOLYMERS;
VOLCANIC ASH;
FLY;
STRENGTH;
METAKAOLIN;
BEHAVIOR;
SLAG;
TRANSFORMATION;
D O I:
10.1016/j.jnoncrysol.2018.12.031
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:
The present study investigates the efficiency of alkaline fusion method to enhance the geopolymeric reactivity of phosphate mine tailings. The effect of sodium hydroxide content and fusion temperature on the mineralogical composition of the fused phosphate sludge was assessed by XRD measurement. The microstructure as well as the mechanical behavior of the prepared geopolymer mortars were investigated using compressive strength test and EDS/SEM analysis. Furthermore, the thermal stability of samples was studied by measuring the mechanical properties after exposure to several cycles of heat treatment at different elevated temperatures (350, 500, 650 and 800 degrees C). The obtained results showed that the structure of phosphate sludge underwent a significant variation after fusion. Alkali thermal treatment led mainly to the decomposition of illite, palygorskite and dolomite, and the formation of Na-rich crystalline phases. NaOH content as well as temperature of fusion has been proved to be essential factors controlling the transformations of the material structure and hence the development of the geopolymer strength. The optimum conditions of fusion were set at 10 wt% of NaOH and a temperature of 550 degrees C, providing geopolymer mortars with high compressive strength (40 MPa).
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页码:76 / 85
页数:10
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