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Removr

Removr builds industrial‑scale direct air capture (DAC) systems that use a solid sorbent to remove CO₂ from ambient air without water, fossil‑fuel heat, chemicals, or critical minerals, and stores the captured carbon permanently in the geosphere. The company validates its low‑footprint technology through a funded pilot portfolio and aims to launch the first megaton‑scale solid‑sorbent DAC facility in North America, offering high‑quality carbon‑removal credits to corporations and industrial emitters.

Oslo, NorwayFounded 202161K+ followers
Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Achieving net‑zero emissions requires removing gigatonnes of CO₂ from the atmosphere, but existing direct air capture (DAC) technologies often rely on water, fossil‑fuel energy, chemicals, or scarce minerals, leading to high operational costs and environmental footprints.

Solution

Removr develops an industrial‑scale DAC platform that captures CO₂ directly from ambient air using a solid sorbent that operates without water, fossil‑fuel heat, chemicals, or critical minerals. The technology is designed for permanent geologic storage, producing high‑quality carbon‑removal credits with minimal land and resource use. Removr validates its approach through a fully funded pilot portfolio aimed at delivering the most cost‑effective sorbent by 2030, and it plans to launch the world’s first megaton‑scale solid‑sorbent DAC facility in North America. By partnering with research institutions and global corporates, the company accelerates technology development and prepares for large‑volume deployment.

Target Audience

Primary customers are corporations and organizations seeking high‑quality, permanent carbon‑removal credits to meet net‑zero commitments, as well as utilities and industrial emitters looking for large‑scale negative‑emission solutions.

Features

  • Solid‑sorbent capture system that operates without water, external heat, fossil fuels, chemicals, or critical minerals
  • Modular design optimized for low land and resource footprint, enabling scalable megaton‑level deployment
  • Pilot projects that validate sorbent performance and cost‑effectiveness for low‑concentration CO₂ streams
  • Integration with permanent geologic storage to generate durable carbon‑removal credits
  • Partnerships with leading research institutes (SINTEF, TNO, IFEU) and industry players to accelerate development
This profile is AI-generated and may contain inaccuracies.