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EF

Earthics (formely Carbon SeaQuest)

Earthics develops proprietary metal-organic frameworks (MOFs) technology for carbon capture across various industrial gas streams. This solution offers exceptional adsorption capacity and selectivity at a significantly lower cost than conventional methods. The modular system enables scalable, high-performance CO2 removal to help industries meet net-zero compliance.

Chicago, United StatesFounded 20234100+ followers
Updated 3 months ago

Funding

$310K 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.

Funding rounds are not available yet.

Founders

Product

Problem

Many industries, including maritime, power generation, and manufacturing, face challenges in reducing greenhouse gas emissions, particularly carbon dioxide (CO2). Traditional carbon capture methods are often expensive and inefficient, hindering widespread adoption and the achievement of net-zero targets. These industries require cost-effective and high-performance solutions to comply with environmental regulations and mitigate their carbon footprint.

Solution

Earthics provides a carbon capture solution based on proprietary metal-organic frameworks (MOFs) that significantly reduces CO2 emissions from gas streams. Their technology offers a cost-effective alternative to conventional carbon capture methods, achieving savings of up to one-sixth the cost. The MOFs are engineered for high performance, featuring exceptional adsorption capacities, stability, CO2 selectivity, and minimal energy requirements. Earthics' solution is designed for seamless scalability, enabling both small-scale deployments and large industrial integrations without significant modifications to existing infrastructure.

Target Audience

Earthics' primary customers are industries with significant CO2 emissions, such as power plants, maritime shipping companies, and manufacturers in the cement, steel, oil refining, and chemical sectors.

Features

  • Proprietary metal-organic frameworks (MOFs) for efficient CO2 capture
  • High adsorption capacities, stability, and CO2 selectivity
  • Low energy requirements for CO2 capture process
  • Modular system design for seamless scalability
  • Adaptable to various industries, including power generation, maritime, and manufacturing
  • Cost-effective compared to traditional carbon capture methods
This profile is AI-generated and may contain inaccuracies.