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Exploring Geopolymer Concrete In Archiving A Sustainable, Low Carbon Construction
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This report explores how to how to archive a sustainable, low-carbon construction with the use of Geopolymer
concrete. Geopolymer Concrete (GPC) has gained much attraction over the past years due to its materials, which
makes it sustainable and durable. This makes Geopolymer Concrete a sustainable alternative to traditional
concrete. As an alternative to Portland cement, Geopolymer Concrete uses low-carbon materials that are rich in
aluminosilicate such as fly ash and slag. This also improves Geopolymer Concrete durability, making it suitable
for various applications like Building, Aquatic, Roads and bridge construction. This report explores the
challenges of Geopolymer concrete which include cost, and material, future direction on how to reduce its cost,
make materials available and integrate it with self-healing and fibre reinforced concrete technology. In
conclusion, as the industry increasingly prioritizes sustainable and durable alternatives to Portland cement
concrete, Geopolymer concrete use is expected to expand in future
International Organization of Scientific Research
Title: Exploring Geopolymer Concrete In Archiving A Sustainable, Low Carbon Construction
Description:
This report explores how to how to archive a sustainable, low-carbon construction with the use of Geopolymer
concrete.
Geopolymer Concrete (GPC) has gained much attraction over the past years due to its materials, which
makes it sustainable and durable.
This makes Geopolymer Concrete a sustainable alternative to traditional
concrete.
As an alternative to Portland cement, Geopolymer Concrete uses low-carbon materials that are rich in
aluminosilicate such as fly ash and slag.
This also improves Geopolymer Concrete durability, making it suitable
for various applications like Building, Aquatic, Roads and bridge construction.
This report explores the
challenges of Geopolymer concrete which include cost, and material, future direction on how to reduce its cost,
make materials available and integrate it with self-healing and fibre reinforced concrete technology.
In
conclusion, as the industry increasingly prioritizes sustainable and durable alternatives to Portland cement
concrete, Geopolymer concrete use is expected to expand in future.
Related Results
AN EXPERIMENTAL APPROACH ON THE INFLUENCE OF ADDITIION OF METAKAOLIN ON THE PROPERTIES OF GEOPOLYMER CONCRETE
AN EXPERIMENTAL APPROACH ON THE INFLUENCE OF ADDITIION OF METAKAOLIN ON THE PROPERTIES OF GEOPOLYMER CONCRETE
Geopolymer concrete (GPC) is an innovative alternative to conventional Portland cement concrete, utilizing industrial by-products such as fly ash, slag, and metakaolin as primary b...
Durability Studies on Fly Ash Based Geopolymer Concrete Incorporated with Slag and Alkali Solutions
Durability Studies on Fly Ash Based Geopolymer Concrete Incorporated with Slag and Alkali Solutions
This study explores the durability of green cementitious material of geopolymer concrete. Geopolymer concrete is produced from the polycondensation reaction of aluminosilicate mate...
BRIEF REVIEW OF GEOPOLYMER BINDER
BRIEF REVIEW OF GEOPOLYMER BINDER
Concrete is a famous component in construction due to the ease of work in shape and dimension. However, concrete is highly dependent on the availability of Ordinary Portland cement...
Assessment of Geopolymer Concrete for Underwater Concreting Properties
Assessment of Geopolymer Concrete for Underwater Concreting Properties
For ages, concrete has been used to construct underwater structures. Concrete laying underwater is a very complex procedure important to the success or failure of underwater projec...
Life Cycle Impact Assessment of Recycled Aggregate Concrete, Geopolymer Concrete, and Recycled Aggregate-Based Geopolymer Concrete
Life Cycle Impact Assessment of Recycled Aggregate Concrete, Geopolymer Concrete, and Recycled Aggregate-Based Geopolymer Concrete
This study presents a life cycle impact assessment of OPC concrete, recycled aggregate concrete, geopolymer concrete, and recycled aggregate-based geopolymer concrete by using the ...
Systematic multiscale models to predict the compressive strength of fly ash-based geopolymer concrete at various mixture proportions and curing regimes
Systematic multiscale models to predict the compressive strength of fly ash-based geopolymer concrete at various mixture proportions and curing regimes
Geopolymer concrete is an inorganic concrete that uses industrial or agro by-product ashes as the main binder instead of ordinary Portland cement; this leads to the geopolymer conc...
Durability of alumina silicate concrete based on slag/fly ash blends against corrosion
Durability of alumina silicate concrete based on slag/fly ash blends against corrosion
Purpose
The durability of concrete structures, especially built-in corrosive environments, starts to deteriorate after 20–30 years, even though they have been designed for more tha...
Evaluation of non-destructive testing and long-term durability of geopolymer aggregate concrete
Evaluation of non-destructive testing and long-term durability of geopolymer aggregate concrete
Recent advancements in concrete technology focus more on increasing strength than durability. Concrete with good durability will withstand adverse conditions like frost, chloride p...

