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- Geopolymer is a
term covering a class of synthetic aluminosilicate materials with
potential use in a number of areas, essentially as a replacement for
Portland cement and for advanced high-tech composites, ceramic
applications or as a form of cast stone.
- Geopolymer
binders and geopolymer cements are generally formed by reaction of
an aluminosilicate powder with an alkaline silicate solution at
roughly ambient conditions.
- Geopolymer
cements can also be made from sources of pozzolanic materials, such
as lava or fly ash from coal.
- Geopolymer
concrete based on pozzolana is a new material that does not need the
presence of Portland cement as a binder.
- Since no
limestone is used as a material, geopolymer cement has excellent
properties within both acid and salt environments.
- Sea water can be
used for the blending of the geopolymer cement.
- Geopolymer
materials represent an innovative technology that is generating
considerable interest in the construction industry, particularly in
light
of the ongoing emphasis on sustainability.
- User-friendly
geopolymer cements that can be used under conditions similar to
those suitable for portland cement are the current focus of
extensive world-wide research efforts.
- The production of
versatile, cost-effective geopolymer cements that can be mixed and
hardened essentially like portland cement would represent a “game
changing” advancement, revolutionizing the construction of
transportation infrastructure.
- Geopolymerisation
starts with the alkalination step involving NaOH or KOH. Its
mechanism can be followed with MAS-NMR spectroscopy.
- The fly ash-based
geopolymer paste binds the loose coarse aggregates, fine aggregates
and other un-reacted materials together to form the
geopolymer concrete, with or without the presence of admixtures. The
manufacture of geopolymer concrete is carried out using the usual
concrete technology methods.
- The properties
and uses of geopolymers are being explored in many scientific and
industrial disciplines such as modern inorganic chemistry, physical
chemistry, colloid chemistry and in all types of engineering process
technologies.
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General
Information
- About Geopolymer
Cement
- Geopolymer Cement
- Technical Information
- Geopolymer Cement
Company
Profiles
- Company from
Australia
- Company from
Florida
- Company from UK
Application
- Applications
Non-for traditional Cements in
Highway Transportation Systems
- Sustainability
with Ultra High Performance and Geopolymer Concrete Construction
- Experiment
evaluation of self-cure Geopolymer concrete for mass pour
applications
- Fatigue Behavior
of Geopolymer Cemente Concrete
- Performance of
Geopolymeric concrete reinforced with steel fibers
- Application of
Ca-based geopolymer with blast furnace slag, a review
- The Potentials of
Geopolymer for rapid set high strength cement in concrete repair
- A New way to
reduce global warming
Production
- High Strength
Geopolymers Produced from coal combustion fly ash
- Green Concrete :
Cement-less Concrete
- Investigating The
Possibility Of Utilization Of Kaolin And The Potential Of Metakaolin
To
Produce Green Cement For Construction Purposes – A Review
- Geopolymer Cement
from Alkali-Activated Natural Pozzolans: Effect of Addition of
Minerals
- Investigating
21st Century Cement Production in Interior Alaska Using Alaskan
Resources
Technology
-
Valorisation of fly
ashes by Geopolymerisation
-
Geopolymers: An
Environmental Alternative to Carbon Dioxide Producing Ordinary
Portland Cement
-
Development of
sustainable cementitious materials
-
Applications of
Geopolymer technology to waste stabilization
-
Durability and
diffusive behaviour evaluation of Geopolymer material
-
Development of
Geopolymer concrete supported by system analytical tools
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Process
- Compressive
strength and embodied energy optimization of fly ash based
Geopolymer concrete
- Development and
properties of low-calcium fly ash based Geopolymer Concrete
- Sulfuric acid
attack on hardened paste of Geopolymer cements
- Taftan pozzolan
based Geopolymer cement
- Experimental
evaluation of electrical conductivity of
carbon fiber reinforced fly-ash based geopolymer
- Carbonation of
Geopolymer concrete
Turnkey
Plants
- Plant from
Germany
- Plant from
Haryana
- Plant from
Jamshedpur
- Plant from Noida
Consultant
- Consultant from
Australia
- Consultant from
France
- Consultant from
USA
- Consultant from
Washington
Patent
- Cementitious
materials including slag and geopolymers
- Geopolymer
composites and structures formed therefrom
-
Geopolymer-modified, gypsum-based construction materials
- Geopolymer
concrete and method of preparation and casting
- Geopolymeric
cement based on fly ash and harmless to use
Report
- 30 Years of
Successes and Failures in Geopolymer Applications. Market Trends and
Potential Breakthroughs.
- Characterization
and performance optimization of a cementitious composite for
quasi-static and dynamic loads
- Effect of Alkali
silica reaction(ASR) in Geopolymer concrete
- Modified
Guidlines for Geopolymer concrete mix design using indian standard
- Project report –
Grant FA23860814096, "Fire resistance of geopolymer concretes" – J.
Provis, University of Melbourne
Suppliers
- Supplier from
India
- Supplier from
Singapore
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