News

Houston-based Halliburton has won a contract for a lithium extraction project in Northeast Texas. Halliburton will plan and design GeoFrame Energy’s first demonstration phase wells in the Smackover ...
GeoFrame Energy awarded Halliburton (NYSE: HAL) a contract to plan and design the first demonstration phase wells in the Smackover formation in […] ...
GeoFrame Energy’s geothermal and direct lithium extraction (DLE) project is set to start work with Halliburton in late 2025 and will extract battery-grade lithium carbonate from the Smackover ...
Halliburton Company (NYSE:HAL) provides products and services to the energy industry worldwide. GeoFrame Energy is a leader in green lithium carbonate and geothermal energy production.
GeoFrame Energy aims to produce ~83,500 metric tons of battery-grade lithium carbonate annually, which is projected to be enough to fully meet current US demand.
GeoFrame said it is set to become the first company to deliver battery-grade lithium carbonate from Smackover Formation to the market.
Global fossil fuel industry is sitting on a potentially game-changing resource - and it's not oil or gas Schlumberger-Thermal Energy venture GeoFrame Energy's targeting of deep geothermal ...
Halliburton was awarded a contract for GeoFrame Energy's geothermal and direct lithium extraction project in east Texas' Smackover formation.
Meanwhile, GeoFrame Energy, a company formed last month by the New Energies business of oilfield services giant Schlumberger and Texas-based Thermal Energy Partners (TEP), told Upstream at the ...
Halliburton will plan and design GeoFrame Energy's first demonstration phase wells in the Smackover Formation for a project using Direct Lithium Extraction (DLE).
GeoFrame Energy aims to produce ~83,500 metric tons of battery-grade lithium carbonate annually, which is projected to be enough to fully meet current US demand.
Halliburton will plan and design GeoFrame Energy's first demonstration phase wells in the Smackover Formation for a project using Direct Lithium Extraction (DLE).