
How We Work
Engineered Processes that Ensure Consistency
We capture and process flare gas using field-tested equipment designed for mobility, speed, and efficiency. Every project is engineered to minimize emissions, maximize value, and reduce operational disruption. Everything is modular, which allows quick deployment, easy relocation, and low capital intensity.Our systems convert flare gas into:
Beyond the three core outputs, the same flare can become a wider set of products. Power for your own facilities or the grid. LNG, moved by micro-LNG systems to mines, fleets, and communities with no pipeline. CNG for field power. Hydrogen for fuel cells. Graphene, a genuinely high-value material that the same process leaves behind when it strips hydrogen. Pipeline-quality gas, conditioned and returned to the market. Or liquids, converted into gasoline, diesel, naphtha, lubricants, and LPG for local sale.
Every flare capture deployment is built around one standardized core, engineered to eliminate routine flaring and diesel reliance in a single step. The uniform design is what lets us deploy fast across very different sites while still flexing to local conditions. There are three core modules. Gas capture and compression collects and compresses up to 50 million standard cubic feet a day of flare gas. Gas conditioning and recovery cools and stabilizes the stream to recover valuable liquids and produce clean fuel. The power generation unit turns recovered gas into reliable electricity and ends diesel dependence. From there, configurable blocks can be added or removed without a redesign: NGL recovery, LPG fractionation, gas sweetening, expanded power up to 40 megawatts per cluster, micro-LNG, and sulphur removal that turns acid gas into fertilizer feedstock.
As global methane regulations tighten, producers face increasing scrutiny from regulators and investors alike. Our systems help you meet emissions benchmarks, avoid penalties, and align with reporting standards such as OGMP 2.0 and the US EPA methane rule. Our projects regularly achieve more than 95 percent flare reduction efficiency, which translates into significant carbon offset potential and better ESG scores. [Confirm the 95 percent figure against project data before publishing; an unverified number on this page undermines every verified one.] And you generate new revenue from what was previously a liability.
Independent satellite and aerial monitoring has repeatedly found real-world methane emissions running well above official estimates. In the Permian Basin, measurement put oil and gas emissions at around four times the EPA's reported figures. As detection gets cheaper and more public, that gap becomes a liability you cannot manage on paper. Capture closes it at the source, and turns the molecule you would have lost into something you can sell. [Source on the Sustainability page: peer-reviewed study in Atmospheric Chemistry and Physics, 2026, with supporting data from the Environmental Defense Fund and MethaneSAT.]






