AbstractAluminosilicate materials can be transformed into very compact binding material by the process called alkaline activation. The paper presents results of alkaline activation of fly ash and waste fine-grained brick body. Prepared geopolymers were tested for the compressive and flexural strengths, bulk density, and microstructure was examined by means of SEM. The results of investigated parameters showed the differences in relation to the ratio of fly ash to brick binder
The influence of alkali cations on mix design of geopolymers is essential for their mechanical, ther...
An experimental investigation of fly ash activated with sodium-based alkali-silicate activating solu...
This paper presents a summary of experimental work that has been conducted to compare the strength o...
Aluminosilicate materials can be transformed into very compact binding material by the process calle...
AbstractAluminosilicate materials can be transformed into very compact binding material by the proce...
The thesis is focused on the application of brick powder in production of binary alkali-activated bi...
The aim of this work is to study the influence of the type of activator on the formulation of geopol...
AbstractPoor reactivity of fly ash (FA) in alkali activation process can be improved either by mecha...
This paper investigates the properties of geopolymer obtained by alkali-activation of fly ash (FA), ...
Geopolymers have been the subject of substantial research and commercial interest during the beginni...
In line with the current focus on utilizing side products of various production processes, this diss...
This research work has been carried out to tailor the development of different type of microstructur...
Alkali-activated materials (AAM) are widely applied in the field of building materials and civil eng...
As concrete demand is constantly increasing in recent years and also considering that cement product...
Abstract This paper concentrates on valorization of the fly ash originating from thermal power plan...
The influence of alkali cations on mix design of geopolymers is essential for their mechanical, ther...
An experimental investigation of fly ash activated with sodium-based alkali-silicate activating solu...
This paper presents a summary of experimental work that has been conducted to compare the strength o...
Aluminosilicate materials can be transformed into very compact binding material by the process calle...
AbstractAluminosilicate materials can be transformed into very compact binding material by the proce...
The thesis is focused on the application of brick powder in production of binary alkali-activated bi...
The aim of this work is to study the influence of the type of activator on the formulation of geopol...
AbstractPoor reactivity of fly ash (FA) in alkali activation process can be improved either by mecha...
This paper investigates the properties of geopolymer obtained by alkali-activation of fly ash (FA), ...
Geopolymers have been the subject of substantial research and commercial interest during the beginni...
In line with the current focus on utilizing side products of various production processes, this diss...
This research work has been carried out to tailor the development of different type of microstructur...
Alkali-activated materials (AAM) are widely applied in the field of building materials and civil eng...
As concrete demand is constantly increasing in recent years and also considering that cement product...
Abstract This paper concentrates on valorization of the fly ash originating from thermal power plan...
The influence of alkali cations on mix design of geopolymers is essential for their mechanical, ther...
An experimental investigation of fly ash activated with sodium-based alkali-silicate activating solu...
This paper presents a summary of experimental work that has been conducted to compare the strength o...