Pure mineral carbonate produced by CCM's process

What we do

Two waste streams in. A premium product out.

CCM combines captured CO₂ with alkaline industrial waste — fly ash, slag, kiln dust, C&D residue — to make precipitated carbonates, which have a high market value for many industries.

Process steps

From emissions to safe mineral – in four steps

A continuous, closed-loop pipeline. Each stage is engineered for maximum efficiency and minimum environmental cost.

01

Capture

CO₂ is captured directly from industrial flue gases at the emission source — no atmospheric concentration required.

  • Point-source capture
  • Industrial flue gas
  • Modular intake
02

Convert

Our proprietary process transforms CO₂ and waste in a controlled, low-energy reaction

  • High efficiency
  • Low energy input
03

Mineralize

CO₂ becomes a stable, non-toxic carbonate mineral — permanently converted and reusable as a raw material.

  • Permanent conversion of CO₂
  • Non-toxic output
  • Reusable mineral
04

Recycle

Water is recovered and recycled in a closed loop, while industrial waste is repurposed as process input.

  • Closed-loop water
  • Waste as feedstock
  • Zero discharge

The CCM module

A single process, two waste streams, multiple valuable products

A single CCM module converts industrial CO₂ and locally available alkaline waste into a high-purity carbonate product, a usable mineral residue and recycled water.

Inputs

  • Alkaline waste (fly ash, slag, CKD, CDW)
  • CO₂ stream (cement, ammonia, industrial…)
  • Water & utilities

Outputs

  • High-purity calcium carbonate (PCC)
  • Usable mineral residue (e.g. sand)
  • Recycled water

Why it matters

Broader benefits of CCM technology.

Mineralization does more than lock away CO₂ — it gives industrial operators flexibility, lower operating cost, and new revenue.

01

Climate impact

Reduce greenhouse gas emissions and support climate mitigation efforts through durable CO₂ conversion.

02

Feedstock flexibility

Accommodate a range of industrial waste inputs and adapt to changing market needs.

03

Low-energy operation

Operate with exceptionally low energy requirements, primarily limited to pumping, improving both sustainability and cost efficiency.

04

New revenue potential

Create opportunities for additional revenue through the generation of carbon credits.

05

Waste-management savings

Use industrial waste streams in ways that may reduce landfill-related costs, taxes, and exposure to environmental policy penalties.

06

Multi-end-product

Depending on the alkaline content in the feedstock, different types of precipitated carbonates can be produced.

Why CCM

A different category of carbon removal.

Most carbon technologies stop at storage or low-value reuse. CCM delivers permanent mineralization and a saleable premium product.

ApproachWhat happens to CO₂Economic output
Geological storageInjected undergroundCost only
CO₂ utilizationConverted to fuels / chemicalsTemporary products (re-emits CO₂)
Mineralization (low-grade)Converted to solid carbonateAggregates / fillers (low value)
CCMPermanently mineralizedHigh-purity CaCO₃ (saleable product)

Permanent storage in mineral form

Uses cheap, locally available wastes

High-purity CaCO₃ (PCC quality)

Modular, scalable, decentralized

Strong MRV potential

CCM holds its own IP and patents · MRV = Monitoring, Reporting & Verification

Validation & readiness

TRL7 — proven in an operational environment.

Lab and pilot tests using commercial CaO and real industrial waste streams have validated the CCM process at technology readiness level 7 — ready for first commercial deployment.

  • TRL7 model demonstration in operational environment
  • 2,000 hours of continuous testing
  • Close-to-complete conversion for high-CaO content in the feedstock.
  • ~90% conversion demonstrated for lower-CaO content in the feedstock.
TRL7

Achieved

2,000h

Continuous testing

~90%

CO₂ conversion

2.27t

Carbonate per t CO₂ + feed

From waste to premium markets

Local waste in. A premium global product out.

Alkaline waste inputs

Site-specific, abundant, and chemically suitable — often landfilled today at a cost.

  • Fly ash (coal / biomass)
  • Biomass & bark ash
  • Cement kiln dust (CKD)
  • Construction & demolition waste
Often landfilled today
Low or negative cost
Chemically suitable (CaO)

Precipitated calcium carbonate (PCC)

A premium segment of the calcium carbonate market.

  • Paper & pulp (filler, coating)
  • Paperboard & packaging
  • Plastics & polymers
  • Paints & coatings
~$45BGlobal CaCO₃ market
PremiumPCC vs mined GCC
FragmentedSupply base
Avoids mining and grinding of virgin minerals
Lower CO₂ footprint vs incumbent supply
  • Supports industrial circularity
  • Reduces waste-disposal costs for industrial partners

FAQ

Technical questions, answered.

The most common questions we receive from engineers, plant operators and partners.

Ask our team

Highly cost-effective. Twice the impact.

Our process operates at 99% conversion efficiency in a highly cost-effective way — making sustainable industry economically realistic, today.