The use of a mixing method based on a novel dry dispersion procedure that enables a proper mixing of simultaneous nanometric functional additions while avoiding the health risks derived from the exposure to nanoparticles is reported and compared with a common manual mixing in this work. Such a dry dispersion method allows a greater workability by avoiding problems associated with the dispersion of the particles. The two mixing methods have been used to prepare Portland cement CEM I 52.5R pastes with additions of nano-ZnO with bactericide properties and micro- or nanopozzolanic SiO2. The hydration process performed by both mixing methods is compared in order to determine the efficiency of using the method. The hydration analysis of these cem...
Water permeability of cement-based concrete has been recognized as a critical intrinsic property hig...
The present research is focused on the investigation of the influence of ultrafine additives on the ...
The present study investigates the possibility of introducing zinc oxide nanoparticles into the ceme...
Nano-engineering of concrete is a research area gaining significant interest at present. It involves...
The influence of nano- and microsilica addition on ordinary Portland cement (OPC) pastes has been st...
The study outlined the raw materials and mix proportions to prepare composite cement pastes with the...
This study examines the impact of 20 wt% zirconium oxide nanoparticles on the early hydration kineti...
It is known that nano-and microparticles have been very popular in recent years since their advantag...
The dispersion medium of nano-SiO2 (nS) particles can have a significant effect on the properties of...
The aim of this work is to study the effect of nanomaterials on the properties of cement paste, the ...
This paper systematically studied the modification of cement-based materials by nano-SiO2 particles ...
The phenomena involved in portland cement hydration and interactions with nanosilica are very comple...
The purpose of this study is to explore the potential of nano-SiO2 (NS) to prevent early frost damag...
Mineralogical analysis on pastes of Spanish Portland cement Type I, blended with nanosilica was carr...
This article presents test results of cement paste and binders with admixture of hydrophilic or hydr...
Water permeability of cement-based concrete has been recognized as a critical intrinsic property hig...
The present research is focused on the investigation of the influence of ultrafine additives on the ...
The present study investigates the possibility of introducing zinc oxide nanoparticles into the ceme...
Nano-engineering of concrete is a research area gaining significant interest at present. It involves...
The influence of nano- and microsilica addition on ordinary Portland cement (OPC) pastes has been st...
The study outlined the raw materials and mix proportions to prepare composite cement pastes with the...
This study examines the impact of 20 wt% zirconium oxide nanoparticles on the early hydration kineti...
It is known that nano-and microparticles have been very popular in recent years since their advantag...
The dispersion medium of nano-SiO2 (nS) particles can have a significant effect on the properties of...
The aim of this work is to study the effect of nanomaterials on the properties of cement paste, the ...
This paper systematically studied the modification of cement-based materials by nano-SiO2 particles ...
The phenomena involved in portland cement hydration and interactions with nanosilica are very comple...
The purpose of this study is to explore the potential of nano-SiO2 (NS) to prevent early frost damag...
Mineralogical analysis on pastes of Spanish Portland cement Type I, blended with nanosilica was carr...
This article presents test results of cement paste and binders with admixture of hydrophilic or hydr...
Water permeability of cement-based concrete has been recognized as a critical intrinsic property hig...
The present research is focused on the investigation of the influence of ultrafine additives on the ...
The present study investigates the possibility of introducing zinc oxide nanoparticles into the ceme...