Two iron-rich clayey materials (L1 and L2, with the main difference being the level of iron accumulation) have been studied for their suitability as solid precursors for inorganic polymer composites. L1, with the lower iron content, was calcined at 700\ub0C for 4 h and used as replacement, in the range of 15-35 wt%, for both raw laterites in the formulations of geopolymeric composites. The different mixtures were activated with a highly concentrated alkaline solution containing sodium hydroxide and sodium silicate. River sand with semi-crystalline structure was added to form semi-dry pastes which were pressed to appropriate shape. X-ray diffraction, Infrared spectroscopy, Scanning Electron Microscopy and Mercury Intrusion Porosimetry result...
World is pound with million tonnes of industrial wastes such as ground granulated blast furnace slag...
Geopolymers from laterite, an iron-rich soil available in developing countries, have great potential...
This paper investigates the direct transformation of laterites (natural iron-rich aluminosilicates) ...
Two iron-rich clayey materials (L1 and L2, with the main difference being the level of iron accumula...
Two iron-rich clayey materials (L1 and L2, with the main difference being the level of iron accumula...
Fired clayey products have been successfully used as structural materials for many engineering appli...
Iron-rich aluminosilicates with disordered structure (laterites) due to the corrosion of kaolinite b...
Iron-rich aluminosilicates with disordered structure (laterites) due to the corrosion of kaolinite b...
The objective of this study is to develop low cost, eco-friendly and sustainable building materials ...
peer reviewedThis work reports the mechanical, durability and insulating properties of novel geopoly...
In this paper, the results of the experimental investigation were used to understand the effect of f...
In India, due to fast pace development there is a drastic growth in the iron and steel industry. As ...
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...
Abstract A great variety of silica and alumina-rich materials have been investigated in the producti...
World is pound with million tonnes of industrial wastes such as ground granulated blast furnace slag...
Geopolymers from laterite, an iron-rich soil available in developing countries, have great potential...
This paper investigates the direct transformation of laterites (natural iron-rich aluminosilicates) ...
Two iron-rich clayey materials (L1 and L2, with the main difference being the level of iron accumula...
Two iron-rich clayey materials (L1 and L2, with the main difference being the level of iron accumula...
Fired clayey products have been successfully used as structural materials for many engineering appli...
Iron-rich aluminosilicates with disordered structure (laterites) due to the corrosion of kaolinite b...
Iron-rich aluminosilicates with disordered structure (laterites) due to the corrosion of kaolinite b...
The objective of this study is to develop low cost, eco-friendly and sustainable building materials ...
peer reviewedThis work reports the mechanical, durability and insulating properties of novel geopoly...
In this paper, the results of the experimental investigation were used to understand the effect of f...
In India, due to fast pace development there is a drastic growth in the iron and steel industry. As ...
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...
Abstract A great variety of silica and alumina-rich materials have been investigated in the producti...
World is pound with million tonnes of industrial wastes such as ground granulated blast furnace slag...
Geopolymers from laterite, an iron-rich soil available in developing countries, have great potential...
This paper investigates the direct transformation of laterites (natural iron-rich aluminosilicates) ...