Alkali-activated materials from different aluminosilicate sources: Effect of aluminum and calcium availability
-
Add time:07/23/2019 Source:sciencedirect.com
The present study aims to determine the influence of aluminum and calcium availability from two different aluminosilicate sources (COx argillite and sediment), thermally treated at 750 °C, on the formation, the structure and the working properties of the resulting alkali-activated materials. Despite their similar chemical composition, some differences in terms of aluminum coordination, amorphous phase and calcium availability were detected between the two studied aluminosilicate sources. Indeed, sediment sample exhibits higher reactive aluminum and lower reactive calcium compared to argillite sample. Moreover, FTIR spectroscopy has revealed that available calcium interacts with free silicon and aluminum and alkali cation in excess (sodium or potassium) leading to the formation of several networks (SiOAl and SiOCa bonds). For both aluminosilicates, the calcium content (0.33 < Ca/Si < 0.36) seems to be not sufficient to produce C-S-H hydrated phases. It was also demonstrated that the low availability of aluminum in addition to the high availability of calcium favor the precipitation of secondary reaction products in the detriment of the geopolymer network. These products fill the voids inducing a decrease of the porosity and the pore size but also lead to higher heterogeneity that decreases the mechanical properties of the final material. However, the higher availability of aluminum and the lower availability of calcium in presence of high alkaline conditions favor the polycondensation reaction.
We also recommend Trading Suppliers and Manufacturers of Aluminum calcium oxide (cas 11104-48-6). Pls Click Website Link as below: cas 11104-48-6 suppliers
Prev:Nitric oxide ameliorates aluminium toxicity in Anabaena PCC 7120: Regulation of aluminium accumulation, exopolysaccharides secretion, photosynthesis and oxidative stress markers
Next:Inhibited effect of graphene oxide on calcium leaching of cement pastes) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Surface immobilization of active vancomycin on calcium aluminum oxide07/26/2019
- Viscosity temperature properties from molecular dynamics simulation: The role of calcium oxide, sodium oxide and ferrous oxide07/25/2019
- Inhibited effect of graphene oxide on calcium leaching of cement pastes07/24/2019
- Nitric oxide ameliorates aluminium toxicity in Anabaena PCC 7120: Regulation of aluminium accumulation, exopolysaccharides secretion, photosynthesis and oxidative stress markers07/22/2019
- Investigation of leaching kinetics of aluminum extraction from secondary aluminum dross with use of hydrochloric acid07/20/2019
- Effect of co-solvent on biodiesel production using calcium aluminium oxide as a reusable catalyst and waste vegetable oil07/21/2019
- Characteristics of dynamically formed oxide films in aluminum–calcium foamable alloys07/19/2019
- Experimental and theoretical investigation on calcium oxide and L-aspartic as an effective hybrid inhibitor for aluminum-air batteries07/18/2019
- Nanostructural approach to the thickening behavior and oxidation of calcium-stabilized aluminum foams07/17/2019
-
Health and Chemical more >
-
Related Products
- Aluminum 1,4,8,11,15,18,22,25-octabutoxy-29H,31H-phthalocyanine triethylsiloxide
- Aluminum aceglutamide
- Aluminum Acetate
- Aluminum acetylacetonate
- Aluminum ammonium sulfate
- Aluminum arsenide(AlAs)
- ALUMINUM AZIDE
- Aluminum barium magnesium oxide
- Aluminum barium titanium oxide
- Aluminum bismuth oxide(Al3BiO6), monohydrate (9CI)


