AbstractDurability is a major concern for concrete, therefore initiatives are needed to improve the durability of concrete. One way to improve concrete durability is improving its surface quality. This study focuses on the improvement of the surface durability of pozzolan concrete by applying coating of alkali solution or geopolymer paste. There were two different pozzolanic materials used to manufacture the pozzolan concrete, i.e. class-F fly ash and calcined volcanic mud with two different particle sizes. The alkaline solution was a combination of NaOH and sodium silicate solution. Fly ash-based geopolymer paste was prepared for the geopolymer coating. Concrete specimens were exposed to 10% sulphuric acid solution by applying the wet–dry ...
This paper presents an experimental investigation on the durability properties of metakaolin (MK) an...
AbstractThis study investigates relationships between concrete containing pozzolanic additive and mi...
Abstract — Geopolymer concrete technology has the potential to reduce globally the carbon emission a...
The challenge for the civil engineering community in the near future will be to realize the buildin...
This study presents an investigation into the durability of geopolymer concrete prepared using high ...
The treatment of concrete surface using more durable material is one way to slow down the damage pro...
In 2015, the United Nations (UN) set sustainable construction as one of the major goals when launchi...
This paper presents chloride induced corrosion durability of reinforcing steel in geopolymer concret...
Geopolymer is a class of aluminosilicate binding materials synthesized by thermal activation of soli...
The present study mainly aims at the identification and laboratory production of geopolymer concrete...
Historically, Class F fly ash has been chosen as a supplementary cementitious material (SCM) in conc...
In recent years, geopolymers, as a new class of green cement binders, have been considered as an env...
This paper presents the chloride induced corrosion durability of reinforcing steel in geopolymer con...
This work presents the effect of Ground granulated blast furnace slag (GGBS), fly ash (FA) and metak...
Geopolymer is synthesized by activating alumino-silicate materials with an alkaline activator. The c...
This paper presents an experimental investigation on the durability properties of metakaolin (MK) an...
AbstractThis study investigates relationships between concrete containing pozzolanic additive and mi...
Abstract — Geopolymer concrete technology has the potential to reduce globally the carbon emission a...
The challenge for the civil engineering community in the near future will be to realize the buildin...
This study presents an investigation into the durability of geopolymer concrete prepared using high ...
The treatment of concrete surface using more durable material is one way to slow down the damage pro...
In 2015, the United Nations (UN) set sustainable construction as one of the major goals when launchi...
This paper presents chloride induced corrosion durability of reinforcing steel in geopolymer concret...
Geopolymer is a class of aluminosilicate binding materials synthesized by thermal activation of soli...
The present study mainly aims at the identification and laboratory production of geopolymer concrete...
Historically, Class F fly ash has been chosen as a supplementary cementitious material (SCM) in conc...
In recent years, geopolymers, as a new class of green cement binders, have been considered as an env...
This paper presents the chloride induced corrosion durability of reinforcing steel in geopolymer con...
This work presents the effect of Ground granulated blast furnace slag (GGBS), fly ash (FA) and metak...
Geopolymer is synthesized by activating alumino-silicate materials with an alkaline activator. The c...
This paper presents an experimental investigation on the durability properties of metakaolin (MK) an...
AbstractThis study investigates relationships between concrete containing pozzolanic additive and mi...
Abstract — Geopolymer concrete technology has the potential to reduce globally the carbon emission a...