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TH

Tes H2

TES H2 produces electric natural gas (e‑NG), a renewable methane created by combining green hydrogen from renewable‑powered electrolysis with captured CO₂. The e‑NG can be injected into existing natural‑gas pipelines and used as a drop‑in fuel or feedstock for current gas‑based industries, enabling immediate emissions reductions without modifying equipment. By leveraging proven electrolysis, methanation, and carbon‑capture technologies, TES H2 offers a fast, cost‑effective pathway for utilities and industrial manufacturers to decarbonize using existing infrastructure.

Brussels, BelgiumFounded 201924310K+ followers
Updated 2 months ago

Funding

$151.7M 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

Existing gas infrastructure and industrial processes depend on fossil‑derived natural gas, creating high carbon emissions and limiting rapid decarbonization because replacing the whole system is costly and time‑consuming.

Solution

TES H2 produces electric natural gas (e‑NG), a renewable methane generated by combining green hydrogen—derived from renewable electricity—with captured CO₂. The resulting e‑NG can be injected directly into existing gas pipelines and used as a drop‑in fuel or feedstock for current gas‑based industries without modifying equipment. By leveraging proven electrolysis, methanation, and carbon‑capture technologies, TES offers a fast‑track, cost‑effective pathway to lower emissions across sectors such as ammonia, methanol, steel, shipping, and power generation. The company partners with global energy leaders to develop large‑scale e‑NG projects that source renewable power and biogenic CO₂ locally, enabling regional production and immediate market deployment.

Target Audience

Primary customers are gas utilities, industrial manufacturers (e.g., chemicals, steel, shipping), and energy traders seeking a carbon‑neutral substitute for natural gas that can be deployed using existing infrastructure.

Features

  • Green hydrogen production via renewable‑energy‑powered electrolysis
  • Methanation process that combines hydrogen with recycled CO₂ to synthesize renewable methane (e‑NG)
  • Drop‑in compatibility with existing natural‑gas pipelines, turbines, and industrial furnaces
  • Scalable project model that integrates local renewable electricity and biogenic CO₂ sources
  • Partnerships with major utilities and industrial off‑takers to secure offtake agreements and accelerate market adoption
  • Modular plant designs ranging from 250 MW electrolysis to multi‑hundred‑MW facilities for diverse geographic markets
This profile is AI-generated and may contain inaccuracies.