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TechnoCarbon

TechnoCarbon develops Pierre-Carbone, a patented low-carbon composite material that is five times more durable than steel and requires 50% less energy to produce than traditional materials. This technology provides a sustainable alternative for construction and infrastructure, significantly reducing greenhouse gas emissions and resource consumption.

Paris, FranceFounded 2018101K+ followers
Updated 20 months ago

Funding

$2.2M 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.

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Funding rounds are not available yet.

Founders

Product

Problem

The construction and infrastructure sectors rely heavily on traditional materials like steel and concrete, which have high carbon footprints due to energy-intensive production processes and significant greenhouse gas emissions. These materials also often lack durability, leading to frequent replacements and further resource depletion.

Solution

TechnoCarbon addresses these challenges with Pierre-Carbone, a patented low-carbon composite material designed as a sustainable alternative to conventional construction materials. Pierre-Carbone requires significantly less energy to produce, resulting in a reduced carbon footprint. The composite material offers enhanced durability and resilience compared to traditional materials like steel and reinforced concrete. TechnoCarbon's material can be manufactured in various forms, including sheets, walls, beams, and pipes, enabling diverse applications across building, infrastructure, energy, defense, aerospace, and design sectors.

Target Audience

TechnoCarbon's primary customers include companies in the building, infrastructure, energy, defense, aerospace, and design sectors seeking sustainable, high-performance materials.

Features

  • Patented Pierre-Carbone (CarbonFibreStone) technology
  • Low-carbon composite material with a reduced carbon footprint
  • Higher durability and resilience than steel and reinforced concrete
  • Greater stress resistance than aluminum or concrete
  • Lighter weight compared to steel
  • Lower energy requirements for production compared to conventional materials
  • Customizable into thin and thick sheets, walls, beams, construction elements, and pipes
This profile is AI-generated and may contain inaccuracies.