This study investigated the effects of nano-silica on flowability, strength development, sorptivity and acid resistance properties of fly ash geopolymer mortars cured at 20 C. The changes in mass, compressive strength and microstructure of the specimens after immersion in acid solutions for different durations were determined. The microstructures were studied by scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS) and X-ray diffraction (XRD) analysis. It was found that addition of nanosilica in geopolymer mortars based on fly ash alone or fly ash blended with 15% GGBFS or 10% OPC improved the compactness of microstructure by reducing porosity. Thus, the nano-silica reduced sorptivity and increased compressive strength o...
This paper evaluates the effect of Ultrafine Fly Ash (UFFA) and Nano Silica (NS) on compressive stre...
This study, for the first time, reports using hollow glass microsphere waste (HGMW) and quartz powde...
In the present study, the mechanical properties and durability of blended cement mortars containing ...
This study investigated the effects of nano-silica on flowability, strength development, sorptivity ...
© 2015 Elsevier Ltd. All rights reserved. Use of nano-silica is gaining wider attention due to its s...
The influence of nano SiO2(NS) and CaCO3(NC) particles on the properties of class F fly ash based ge...
With the increasing infrastructure development across the globe, the demand of cement production inc...
Addition of Nano-SiO2 (NS) to geopolymer composites has been studied through measurement of compress...
In completing drilling operation, cementing job is conducted to restrict fluid movement between the ...
This paper presents the effect of nano silica (NS) on the compressive strength of mortars and concre...
This paper assesses the effect of the use of an alternative activator based on nanosilica/MOH (M = K...
Due to its unique qualities, concrete is the most extensively utilized substance in the construction...
ABSTRACT The main objective of this project is to study the durability properties of geopolymer mort...
The present study mainly aims at the identification and laboratory production of geopolymer concrete...
Colloidal nano-silica was added to normal and fly ash concretes with different rates to examine the ...
This paper evaluates the effect of Ultrafine Fly Ash (UFFA) and Nano Silica (NS) on compressive stre...
This study, for the first time, reports using hollow glass microsphere waste (HGMW) and quartz powde...
In the present study, the mechanical properties and durability of blended cement mortars containing ...
This study investigated the effects of nano-silica on flowability, strength development, sorptivity ...
© 2015 Elsevier Ltd. All rights reserved. Use of nano-silica is gaining wider attention due to its s...
The influence of nano SiO2(NS) and CaCO3(NC) particles on the properties of class F fly ash based ge...
With the increasing infrastructure development across the globe, the demand of cement production inc...
Addition of Nano-SiO2 (NS) to geopolymer composites has been studied through measurement of compress...
In completing drilling operation, cementing job is conducted to restrict fluid movement between the ...
This paper presents the effect of nano silica (NS) on the compressive strength of mortars and concre...
This paper assesses the effect of the use of an alternative activator based on nanosilica/MOH (M = K...
Due to its unique qualities, concrete is the most extensively utilized substance in the construction...
ABSTRACT The main objective of this project is to study the durability properties of geopolymer mort...
The present study mainly aims at the identification and laboratory production of geopolymer concrete...
Colloidal nano-silica was added to normal and fly ash concretes with different rates to examine the ...
This paper evaluates the effect of Ultrafine Fly Ash (UFFA) and Nano Silica (NS) on compressive stre...
This study, for the first time, reports using hollow glass microsphere waste (HGMW) and quartz powde...
In the present study, the mechanical properties and durability of blended cement mortars containing ...