Paebbl develops a high-performance Supplementary Cementitious Material (SCM) by accelerating mineralisation to convert captured CO₂ into a stable mineral powder. This proprietary technology permanently locks carbon into the built environment, significantly reducing the embodied carbon of concrete. The resulting material is deployed in construction projects to deliver durable, carbon-storing building solutions.
Funding
$25M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

2DACAICGF+2Founders
Product
Problem
The production of concrete, a widely used building material, contributes significantly to global greenhouse gas emissions, with up to 8% of all emissions originating from this industry. Simultaneously, large quantities of carbon dioxide are released into the atmosphere annually, necessitating effective carbon capture and storage solutions.
Solution
Paebbl offers a technology that transforms captured carbon dioxide into solid, sustainable building materials through accelerated mineralization. This process speeds up the natural mineralization of CO₂ by a factor of 10 million, permanently sequestering the carbon dioxide within the resulting material. By utilizing captured CO₂ to create construction materials, Paebbl reduces the reliance on traditional, carbon-intensive clinker used in concrete production, offering a dual benefit of carbon sequestration and reduced emissions from the construction sector. The resulting materials are future-proof and designed for long-lasting construction projects.
Target Audience
Paebbl's primary customers are construction companies, developers, and infrastructure projects seeking sustainable and carbon-reducing building materials.
Features
- Accelerated mineralization technology that transforms CO₂ into solid building materials.
- Permanent carbon sequestration within the construction material.
- On-site production capabilities.
- Pilot plant operational in Rotterdam since November 2023.
- Technology that substitutes carbon-intensive clinker in concrete.