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Endaris

Endaris provides a passive, bolt‑on nanowire catalyst that acts as an industrial catalytic converter for natural‑gas engine exhaust, oxidizing unburned methane without external power.

San Francisco, United StatesFounded 202525+ followers
Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Natural‑gas engines used in data centers, marine vessels, and gas compressors emit unburned methane, a greenhouse gas with a warming potential over 80 times that of CO₂. This methane slip contributes significantly to CO₂‑equivalent emissions and harms air quality.

Solution

Endaris offers a passive, bolt‑on nanowire catalyst that can be installed directly onto existing exhaust systems. The catalyst functions as an industrial catalytic converter, oxidizing methane in the exhaust stream without requiring additional power or complex controls. Because it integrates with current infrastructure, operators can reduce methane slip and lower overall CO₂‑equivalent emissions with minimal retrofitting effort. The technology is designed for high‑temperature exhaust environments typical of natural‑gas engines, delivering continuous methane removal across a range of operating conditions.

Target Audience

Primary customers are operators of natural‑gas‑powered equipment in data centers, maritime shipping, and gas compression facilities seeking to meet emissions regulations and reduce greenhouse‑gas footprints.

Features

  • Nanowire catalyst material engineered for rapid methane oxidation at exhaust temperatures
  • Passive, plug‑and‑play design that bolts onto existing exhaust manifolds without external power
  • Compatibility with a variety of natural‑gas engine applications, including data‑center generators, marine propulsion, and gas compressors
  • Low maintenance requirements due to catalyst stability and resistance to fouling
  • Scalable solution that can be deployed across fleets to achieve aggregate emissions reductions
This profile is AI-generated and may contain inaccuracies.