Agricultural harvester collecting corn in a field

Live Oak consortium announced the launch of Front-End Engineering Design (FEED) Read more

The future of natural gas.
Made differently.

Live Oak brings together the Midwest's renewable energy potential, Nebraska's biogenic CO₂ from the bioethanol industry and existing energy infrastructure to produce a new generation of natural gas, electric natural gas (e-NG), with a very low carbon intensity. From the heart of the Midwest, the project is building a supply chain designed to serve customers around the world such as Japan. There, it will gradually substitute for fossil natural gas across existing city-gas networks, delivering lower-carbon energy without requiring an entirely new energy system.

Live Oak at a Glance

The project in numbers

Northeast Nebraska

Location

250 MW

Electrolysis capacity

~75,000 t/yr

e-NG production capacity

5

Global industrial partners

2027

Target FID

2030

Target operations

Project Overview

Project Live Oak is advancing a new way to produce natural gas with a lower carbon footprint

Located near Norfolk, Nebraska, the project will produce e-NG using renewable electricity, water, and captured carbon dioxide. Through this process, the facility will create methane that is chemically identical to conventional natural gas.

That compatibility is one of the project's key advantages because:

e-NG is the same molecule as the natural gas already in use

it can be transported through existing natural gas pipelines

used by existing customers without requiring new equipment or infrastructure

Project Live Oak is being developed by TotalEnergies, together with TES, Osaka Gas, Itochu, and Toho Gas.

The project is now entering Front End Engineering Design (FEED)—a critical stage in which the facility's design, expected costs, and schedule are developed in detail ahead of a final investment decision

Solar panels\
Solar panels\
Team working together

Why Live Oak?

Local resources. Existing infrastructure. Very low-carbon energy.

Live Oak brings together renewable electricity, biogenic CO₂ from the Midwest's bioethanol industry, and existing natural gas infrastructure to produce e-NG with a very low lifecycle carbon footprint. By combining renewable hydrogen with recycled biogenic CO₂, Live Oak is designed to provide the same molecule as conventional natural gas, but with dramatically lower greenhouse-gas emissions across its lifecycle.

Built on Nebraska's strengths

The Midwest and Nebraska combine strong renewable energy potential with a well-established agricultural and bioethanol industry, providing the key resources needed to produce e-NG at industrial scale.

Very low carbon, fully compatible

Live Oak e-NG is chemically equivalent to conventional natural gas, allowing it to use existing pipelines, liquefaction facilities, ships and customer equipment. This makes it possible to significantly reduce the carbon intensity of gas supply while leveraging infrastructure already in place.

Connecting Nebraska to Japan

Developed by 5 global energy and industrial partners, Live Oak transforms local renewable resources and biogenic carbon into a very low-carbon fuel for customers seeking to reduce emissions from existing gas-based energy systems. Live Oak e-NG will primarily serve the decarbonization of gas distribution in Japan, supporting its commitment to inject 1% of renewable natural gas into the city gas network by 2030 as part of a broader strategy to achieve carbon neutrality by 2050.

Pioneering a new industrial value chain

Live Oak brings together technologies and infrastructure that already exist individually, but integrates them at a scale and across a value chain that remains pioneering for the e-NG industry. The project is designed not only to produce e-NG, but to establish a model that can be replicated as the market develops.

The Process

Same gas • Same infrastructure • A different carbon story.

e‑NG — electric natural gas — is produced by combining renewable hydrogen with biogenic CO₂. The result is chemically identical to conventional natural gas, meaning it works with existing pipelines, LNG facilities, and customer equipment without requiring any changes to the energy system it serves.

01

Renewable electricity + water

Live Oak uses renewable electricity from the Midwest's abundant wind and solar resources to power a large-scale electrolyser. The electrolyser splits water into hydrogen and oxygen, with the resulting hydrogen carrying a very low carbon intensity.

Renewable electricity+WaterRenewable hydrogen

Very low carbon

02

Biogenic CO₂ + renewable hydrogen

The renewable hydrogen is combined with biogenic CO₂ — captured from bioethanol production in Nebraska — in a methanation reaction. This produces methane chemically identical to conventional natural gas, with a very low lifecycle carbon footprint.

Biogenic CO₂+Renewable hydrogene‑NG

Electric natural gas • Very low carbon

03

e‑NG into existing infrastructure

e‑NG can enter the existing natural gas supply chain without modification. It can be transported through pipelines, liquefied and shipped as LNG, then regasified and distributed through city‑gas networks — with no new infrastructure required.

e‑NGExisting infrastructure

Pipelines • LNG • City-gas

Want to learn more about e‑NG? Visit the e‑NG Coalition

Local by-products

Turning local by-products into valuable resources

Recycling carbon already in the natural cycle

Live Oak uses biogenic CO₂ captured from the Midwest's bioethanol industry — a carbon stream that would otherwise be released to the atmosphere — and combines it with renewable hydrogen to create e‑NG. Unlike fossil natural gas, which brings additional carbon out of geological reservoirs and into the atmosphere, Live Oak recycles carbon that was recently absorbed from the atmosphere by plants as they grew. By turning this biogenic CO₂ into a valuable fuel, Live Oak creates a circular carbon pathway: plants capture CO₂, the bioethanol industry concentrates it, Live Oak recycles it into e‑NG, and the carbon returns to the atmosphere when the fuel is used, ready to enter the biological cycle again. Combined with renewable electricity, this circular use of biogenic carbon enables Live Oak e‑NG to achieve a very low lifecycle carbon footprint compared with conventional fossil natural gas.

Recycling water, preserving a vital local resource

Live Oak is working in close collaboration with the City of Norfolk to develop a water solution based on the reuse of treated wastewater rather than relying on fresh water resources for its industrial needs. In Nebraska, water is a vital resource for agriculture, communities and the wider economy. By giving wastewater a second productive use, Live Oak can reduce pressure on freshwater supplies while supporting the development of a new industrial activity.

This collaboration with the City of Norfolk illustrates how Live Oak is being designed as part of the local ecosystem, working with the community to make efficient use of existing resources and infrastructure while protecting the resources the region depends on most. It reflects a broader principle behind the project: integrate locally, reuse resources intelligently, and create new value while minimising pressure on the region's natural resources.

The supply chain

From Nebraska to Japan

Live Oak e‑NG is designed to enter the existing natural gas and LNG supply chain, from pipelines and liquefaction to shipping, regasification and city‑gas distribution. In Japan, it can progressively substitute for fossil natural gas while using infrastructure and customer equipment already in place.

Nebraska

01

Pipeline

02

Liquefaction

03

LNG shipping

04

Regasification

05

City-gas networks

06

Japan

07

Project Timeline

From partnership to production

Live Oak has moved rapidly from its founding partnership to active engineering — with a clear path to Final Investment Decision and commercial operations.

2023

Foundation

Initial TotalEnergies–TES partnership formed.

2025

Partnership expands

Osaka Gas, Toho Gas and ITOCHU join the project.

2026–2027

FEED

Live Oak is in Front-End Engineering Design.

Current phase

End 2027

Target FID

Final Investment Decision.

End 2030

Target operations

Target commercial operations.

Latest News

Project updates

Commencement of FEED for the Live Oak Project for e-NG Production in Nebraska
LiveOak e-NGAugust 27, 2026

Commencement of FEED for the Live Oak Project for e-NG Production in Nebraska

Houston, August 27th, 2026 – The Live Oak consortium today announced the launch of Front-End Engineering Design (FEED) activities for the Live Oak project, a large-scale electric natural gas (e-NG, also known as e-methane) production facility currently under development in Nebraska, United States. The consortium comprises TotalEnergies and TES (each holding a 33.35% stake in Live Oak), alongside Osaka Gas, Toho Gas and ITOCHU (33.3% combined).

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TotalEnergies, TES, Osaka Gas, Toho Gas and ITOCHU Partner to Develop the Live Oak Project
TotalEnergies USDecember 2, 2025

TotalEnergies, TES, Osaka Gas, Toho Gas and ITOCHU Partner to Develop the Live Oak Project

Five major energy companies announced a strategic partnership for the Live Oak project in Nebraska — a facility producing e-NG at 250 MW electrolysis capacity, with a Final Investment Decision anticipated in 2027 and commercial operations starting by 2030.

Read article

FAQ

Frequently asked questions

Answers to common questions about the Live Oak project, the technology, and what it means for the region.

Contact

Get in touch with us

Have a question about the Live Oak project? We'd love to hear from you — we aim to respond within one business day.

[email protected]

Location

Norfolk, Nebraska