This study aims to investigate the chloride diffusion behavior of alkali activated slag and fly ash blends with different contents of waste glass powder (GP) addition. The reaction heat flow of alkali activated slag/fly ash/waste glass is characterized. The reaction products are determined by X-ray diffraction and thermogravimetric analysis (TGA). N2 adsorption analysis (BET) is used to evaluate the microstructure of samples. The accelerated chloride penetration test (ACPT) is applied to study the chloride resistance of the AAMs. Subsequently, the leaching test of chloride penetrated samples are conducted and ion chromatography is utilized to measure the chloride content in the samples. According to the BET results, the total volume of meso...
The potential of using waste glass powder to increase the chloride binding capacity of fly ash/cemen...
The application of recycled waste glass powder in high volume (60%) of ground granulated blast furna...
The feasibility of a waste glass powder residue (GP) from glass recycling as partial mineral precurs...
This study aims to investigate the chloride diffusion behavior of alkali activated slag and fly ash ...
This paper illustrates the application of waste glass powder as part of the binder in slag-fly ash s...
This is the final version. Available on open access from MDPI via the DOI in this recordSodium silic...
The massive carbon footprint of cement manufacturing has provided great opportunities for research a...
This paper discusses the results of alkali-activating waste glass in pursuit of a new type of alkali...
This study aims to evaluate the influence of microstructural properties on the chloride diffusion re...
In this paper, the effects of waste glass powder on reaction kinetics, gel characteristics, as well ...
Alkali activated materials have a variety of niche applications (other than as a large-scale civil i...
Fast increasing of generation and release of undesirable pollutants by the industrialization raise c...
The alkaline activation of aluminosilicates yields alkaline cements, eco-efficient alternatives to o...
The potential of using waste glass powder to increase the chloride binding capacity of fly ash/cemen...
The application of recycled waste glass powder in high volume (60%) of ground granulated blast furna...
The feasibility of a waste glass powder residue (GP) from glass recycling as partial mineral precurs...
This study aims to investigate the chloride diffusion behavior of alkali activated slag and fly ash ...
This paper illustrates the application of waste glass powder as part of the binder in slag-fly ash s...
This is the final version. Available on open access from MDPI via the DOI in this recordSodium silic...
The massive carbon footprint of cement manufacturing has provided great opportunities for research a...
This paper discusses the results of alkali-activating waste glass in pursuit of a new type of alkali...
This study aims to evaluate the influence of microstructural properties on the chloride diffusion re...
In this paper, the effects of waste glass powder on reaction kinetics, gel characteristics, as well ...
Alkali activated materials have a variety of niche applications (other than as a large-scale civil i...
Fast increasing of generation and release of undesirable pollutants by the industrialization raise c...
The alkaline activation of aluminosilicates yields alkaline cements, eco-efficient alternatives to o...
The potential of using waste glass powder to increase the chloride binding capacity of fly ash/cemen...
The application of recycled waste glass powder in high volume (60%) of ground granulated blast furna...
The feasibility of a waste glass powder residue (GP) from glass recycling as partial mineral precurs...