The objective of this study is to develop low cost, eco-friendly and sustainable building materials by applying the technology of mineral polymerization (geopolymerization) process on naturally abundant iron-rich aluminosilicate (laterite) materials. Iron-rich aluminosilicates based-geopolymer composites containing 10 to 40 wt% of rice husk ash (RHA) were cured at room temperature and at 90 °C. This paper examines the phase transformation, microstructural and mechanical changes that occur in the geopolymer composites when fine aggregates of quartz sand are added. Experimental results indicate good polycondensation and more cohesion resulting in high strength due to the better dissolution of RHA that provides soluble reactive silica to equil...
Geopolymers from laterite, an iron-rich soil available in developing countries, have great potential...
The main objectives of this study was to investigate the potential of lateritic soils deposit South ...
AbstractGeopolymer is a new class of inorganic polymer synthesized by activation of an aluminosilica...
The progressive addition of the reactive silica from rice husk ash (10–50 wt%) changes the phases ev...
The progressive addition of the reactive silica from rice husk ash (10–50 wt%) changes the phases ev...
This paper studies the alkali activation of iron-rich aluminosilicates (laterites). Three activating...
This paper studies the alkali activation of iron-rich aluminosilicates (laterites). Three activating...
Two iron-rich clayey materials (L1 and L2, with the main difference being the level of iron accumula...
Iron rich brown fly ash has been segregated into (a) coarse, and (b) fine size fractions using air c...
The physical, mechanical and microstructural properties of metakaolin/volcanic ash-based geopolymer ...
Two iron-rich clayey materials (L1 and L2, with the main difference being the level of iron accumula...
The physical, mechanical and microstructural properties of metakaolin/volcanic ash-based geopolymer ...
The main objectives of this study was to investigate the potential of lateritic soils deposit South ...
Geopolymers from laterite, an iron-rich soil available in developing countries, have great potential...
Two iron-rich clayey materials (L1 and L2, with the main difference being the level of iron accumula...
Geopolymers from laterite, an iron-rich soil available in developing countries, have great potential...
The main objectives of this study was to investigate the potential of lateritic soils deposit South ...
AbstractGeopolymer is a new class of inorganic polymer synthesized by activation of an aluminosilica...
The progressive addition of the reactive silica from rice husk ash (10–50 wt%) changes the phases ev...
The progressive addition of the reactive silica from rice husk ash (10–50 wt%) changes the phases ev...
This paper studies the alkali activation of iron-rich aluminosilicates (laterites). Three activating...
This paper studies the alkali activation of iron-rich aluminosilicates (laterites). Three activating...
Two iron-rich clayey materials (L1 and L2, with the main difference being the level of iron accumula...
Iron rich brown fly ash has been segregated into (a) coarse, and (b) fine size fractions using air c...
The physical, mechanical and microstructural properties of metakaolin/volcanic ash-based geopolymer ...
Two iron-rich clayey materials (L1 and L2, with the main difference being the level of iron accumula...
The physical, mechanical and microstructural properties of metakaolin/volcanic ash-based geopolymer ...
The main objectives of this study was to investigate the potential of lateritic soils deposit South ...
Geopolymers from laterite, an iron-rich soil available in developing countries, have great potential...
Two iron-rich clayey materials (L1 and L2, with the main difference being the level of iron accumula...
Geopolymers from laterite, an iron-rich soil available in developing countries, have great potential...
The main objectives of this study was to investigate the potential of lateritic soils deposit South ...
AbstractGeopolymer is a new class of inorganic polymer synthesized by activation of an aluminosilica...