Abstract This paper presents the results of experimental evaluation of curing conditions on the microstructure and performance of geopolymer binders developed from iron-rich laterite soils. Two calcined iron-rich laterites namely LB600 and LY600 were used as solid precursors in the preparation of geopolymer binders. The geopolymer samples were cured at 20, 60 and 80 °C. FTIR, XRD, EDS and DTA/TG were used to evaluate the microstructural properties of the prepared products. The performance of the binder was evaluated in terms of the compressive strengths, water absorption, porosity, bulk density and thermal conductivity. The findings from this study showed that the dissolution of the calcined laterites in 8 M NaOH increased the dissolution ...
Through the process of extracting iron from iron ore, a by-product is generated known as granulated ...
International audienceIn this work, two different laterites (iron contents of 13.07 and 49.34 wt%, r...
The objective of this study is to develop low cost, eco-friendly and sustainable building materials ...
This paper presents the results of experimental evaluation of curing conditions on the microstructur...
This paper studies the alkali activation of iron-rich aluminosilicates (laterites). Three activating...
Geopolymers from laterite, an iron-rich soil available in developing countries, have great potential...
The present work carried out the influence of curing cycles on the performance of laterite-based geo...
Iron-rich aluminosilicates with disordered structure (laterites) due to the corrosion of kaolinite b...
peer reviewedThis work reports the mechanical, durability and insulating properties of novel geopoly...
International audienceThe main objective of this study is to evaluate the feasibility of stabilizing...
Geopolymer was synthesized from raw material clay using alkali activation method. Laterite clay char...
Fired clayey products have been successfully used as structural materials for many engineering appli...
A high amount of energy is required to produce different types of clay and sand-lime bricks, and a h...
In India at present there are 151 coal/lignite based power plants which produces about 300 million t...
Two iron-rich clayey materials (L1 and L2, with the main difference being the level of iron accumula...
Through the process of extracting iron from iron ore, a by-product is generated known as granulated ...
International audienceIn this work, two different laterites (iron contents of 13.07 and 49.34 wt%, r...
The objective of this study is to develop low cost, eco-friendly and sustainable building materials ...
This paper presents the results of experimental evaluation of curing conditions on the microstructur...
This paper studies the alkali activation of iron-rich aluminosilicates (laterites). Three activating...
Geopolymers from laterite, an iron-rich soil available in developing countries, have great potential...
The present work carried out the influence of curing cycles on the performance of laterite-based geo...
Iron-rich aluminosilicates with disordered structure (laterites) due to the corrosion of kaolinite b...
peer reviewedThis work reports the mechanical, durability and insulating properties of novel geopoly...
International audienceThe main objective of this study is to evaluate the feasibility of stabilizing...
Geopolymer was synthesized from raw material clay using alkali activation method. Laterite clay char...
Fired clayey products have been successfully used as structural materials for many engineering appli...
A high amount of energy is required to produce different types of clay and sand-lime bricks, and a h...
In India at present there are 151 coal/lignite based power plants which produces about 300 million t...
Two iron-rich clayey materials (L1 and L2, with the main difference being the level of iron accumula...
Through the process of extracting iron from iron ore, a by-product is generated known as granulated ...
International audienceIn this work, two different laterites (iron contents of 13.07 and 49.34 wt%, r...
The objective of this study is to develop low cost, eco-friendly and sustainable building materials ...