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VerdantRock Technology

Low-Carbon Concrete Technology

Cut Cement. Keep Performance.

A high-performance low-carbon solution designed to reduce cement-related emissions while supporting strength, durability, and industrial scalability.

Planet Under Pressure

A global emissions problem

The planet is carryingthe weight of cement.

Every structure begins with a material decision. Reducing cement use is one of the most direct ways to reduce concrete's embodied carbon.

IEA estimate - global energy-system CO2 including process emissions

7 percent

of global CO2 emissions

0.596 tonnes of carbon dioxide

t CO2 emitted per tonne of cement

4,470 tonnes of carbon dioxide t CO2

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Solar System Scope / NASA Blue Marble CC BY 4.0

From impact to intervention

This is whyVerdantRock Technologyexists

Created to reduce cement demand where concrete's carbon footprint begins.

High-Performance Mineral Admixture

VerdantRock Technology's High-Performance Mineral Admixture is primarily used to replace 30%-50% of the cement in the original concrete mix on an equal-mass basis. Its highly reactive composite mineral constituents improve the efficiency of the cementitious system, significantly reducing cement use while meeting workability, strength and durability requirements.

White concrete mixer truck with subtle blue trim, representing ready-mixed concrete applications of the mineral admixture.

High-Performance Fly Ash

High-Performance Fly Ash is primarily used to replace 100% of the S95-grade ground granulated blast-furnace slag in the original mix on an equal-mass basis. After replacement, the S95 slag content is zero, without adding another type of mineral admixture.

Two stacked grey concrete masonry blocks with visible mineral grain and hollow cavities.

Autoclave-Free PHC Admixture

VerdantRock Technology's Autoclave-Free PHC Admixture is primarily used in steam-cured products such as prestressed concrete pipe piles. By increasing the activity of the cementitious system under steam-curing conditions, it enables pipe piles to retain atmospheric-pressure steam curing while eliminating the high-pressure steam-curing (autoclave) stage after validation.

Three long hollow prestressed concrete piles, stacked on timber supports with their annular ends visible.

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