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PlasmaLeap

PlasmaLeap builds non‑thermal plasma reactors that directly synthesize ammonia, hydrocarbon e‑fuels, and green nitrogen fertilizer with higher energy efficiency than traditional catalytic or electrochemical methods. Their eNFix units enable on‑farm, on‑demand production of cost‑competitive fertilizer, while modular reactor designs support industrial scale and custom R&D applications for low‑carbon chemical synthesis.

Sydney, AustraliaFounded 2019263K+ followers
Updated 3 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Conventional production of ammonia, hydrocarbon e‑fuels, and nitrogen fertilizers relies on energy‑intensive, carbon‑emitting processes such as steam methane reforming and Haber‑Bosch, limiting the ability to supply green chemicals at scale and on‑site.

Solution

PlasmaLeap develops non‑thermal plasma reactors that enable direct synthesis of zero‑emission ammonia, hydrocarbon e‑fuels, and green nitrogen fertilizer. Their eNFix units can be deployed on farms to produce cost‑competitive, on‑demand fertilizer without relying on external utilities. The plasma technology offers higher energy efficiency than traditional electrochemical or catalytic routes, supporting the Power‑to‑X transition. Lab‑scale plasma products and services extend the platform to research and custom green‑chemistry applications, allowing partners to explore low‑carbon synthesis pathways.

Target Audience

Primary customers include agricultural producers seeking on‑site fertilizer, energy and chemical companies pursuing low‑carbon ammonia and e‑fuel production, and research institutions developing green chemistry processes.

Features

  • Non‑thermal plasma reactors that drive direct ammonia and hydrocarbon e‑fuel synthesis with minimal energy loss
  • eNFix on‑farm units delivering on‑demand, cost‑competitive green nitrogen fertilizer
  • Scalable reactor design suitable for large‑scale industrial deployment and modular lab‑scale systems
  • Higher energy efficiency compared to conventional electrochemical and catalytic processes
  • Capability to convert hazardous industrial waste streams into valuable green chemicals
  • Custom R&D services for academic and industrial partners seeking green chemistry solutions
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