This study compares the degradation behavior of the alkali-activated slag/fly ash (AASF) and ordinary Portland cement (OPC) mortars exposed to phosphoric acid with different pH values. The experimental results show that AASF mortars exhibit better resistance than OPC mortars against surface damage, although both systems get white deposits on the surface in phosphoric acid with a relatively high pH level. AASF mortars obtained lower mass loss than OPC mortars in phosphoric acid with pH at 2 and 3. The strength reduction in AASF mortars after immersion in phosphoric acid is more significant than that in OPC mortars. However, total degradation depth of AASF was smaller than that of OPC regardless of the pH of the acid solutions. Based on the e...
The use of fly ash as a supplementary cementing material in concrete and mortar has dramatically inc...
In this paper, we comparitvley studied acetic acid attacks on geopolymer (GP-M), calcium aluminate (...
This study aims to evaluate the performance of low calcium fly ash based geopolymer (FA-GPm) and alk...
Acidic environments constitute serious chemical threats to concrete-like cementitious materials. The...
High costs are currently involved in the repair and replacement of sewage concrete pipes due to the ...
© 2019 Jie RenThe acidic aggressive environments in sewage system constitute a severe chemical threa...
Sewer wastewater systems pose great threats to OPC-based concretes used for pipes due to the presenc...
The acid resistance of 60-day cured alkali-activated slag (AAS) mortars, in comparison with Portland...
Abstract The study described in the present paper addresses the durability of alkali-activated fly a...
Alkali-activated materials (AAMs) have high potential as alternative binder to ordinary portland cem...
In the present work alkali-activated fly ash/slag cements (AACs) are synthesized and exposed to sulp...
The implementation of sustainable development in civil engineering society has led to the use of new...
The durability of Portland cement concrete, regardless of its composition, in presence of low-pH sol...
Durability of alkalis-activated fly ash (AAFA) concretes is of vital concern for their commercial ap...
Abstract The main aim of the work is to study the effect of different fibres (steel, glass and basa...
The use of fly ash as a supplementary cementing material in concrete and mortar has dramatically inc...
In this paper, we comparitvley studied acetic acid attacks on geopolymer (GP-M), calcium aluminate (...
This study aims to evaluate the performance of low calcium fly ash based geopolymer (FA-GPm) and alk...
Acidic environments constitute serious chemical threats to concrete-like cementitious materials. The...
High costs are currently involved in the repair and replacement of sewage concrete pipes due to the ...
© 2019 Jie RenThe acidic aggressive environments in sewage system constitute a severe chemical threa...
Sewer wastewater systems pose great threats to OPC-based concretes used for pipes due to the presenc...
The acid resistance of 60-day cured alkali-activated slag (AAS) mortars, in comparison with Portland...
Abstract The study described in the present paper addresses the durability of alkali-activated fly a...
Alkali-activated materials (AAMs) have high potential as alternative binder to ordinary portland cem...
In the present work alkali-activated fly ash/slag cements (AACs) are synthesized and exposed to sulp...
The implementation of sustainable development in civil engineering society has led to the use of new...
The durability of Portland cement concrete, regardless of its composition, in presence of low-pH sol...
Durability of alkalis-activated fly ash (AAFA) concretes is of vital concern for their commercial ap...
Abstract The main aim of the work is to study the effect of different fibres (steel, glass and basa...
The use of fly ash as a supplementary cementing material in concrete and mortar has dramatically inc...
In this paper, we comparitvley studied acetic acid attacks on geopolymer (GP-M), calcium aluminate (...
This study aims to evaluate the performance of low calcium fly ash based geopolymer (FA-GPm) and alk...