Global Clean Energy, Inc. operates as a developer of waste to energy and platinum group metals (PGM) smelting and recovery plants across North America.
The company intends to optimize commercially available technologies to recover, reclaim, and convert waste and PGM into commercially viable energy and off takes, a process that the company refers to as Reforming Environmental Salvage into Clean Usable Energy.
The company is focused on the North American markets in implementing commercially prov...
Global Clean Energy, Inc. operates as a developer of waste to energy and platinum group metals (PGM) smelting and recovery plants across North America.
The company intends to optimize commercially available technologies to recover, reclaim, and convert waste and PGM into commercially viable energy and off takes, a process that the company refers to as Reforming Environmental Salvage into Clean Usable Energy.
The company is focused on the North American markets in implementing commercially proven technologies to convert and recover end-of-life plastic, tires, biomass, ASR auto shred, and PGM. The company intends to build-own-operate plants utilizing technologies worldwide in the plastic and tire waste to energy field with sites under contract in the Southeast and Midwestern U.S., which would process 30-60 tons per day of each substrate. The company is in the midst of finalizing agreements for the development of a Plasma Arch PGM recovery site in the Southern U.S.
Target Clients
The company would target industries, such as the automotive, chemical, plastic, paper, and tire industries.
Significant Events
In January 2015, Global Clean Energy, Inc. and MicroEnergies, LLC have formed a Joint Venture to develop pyrolysis projects utilizing proven technologies and feedstock agreements acquired by MicroEnergies, LLC. Additionally, MicroEnergies, LLC would oversee current and future projects in the Project Development division of GCEI.
Competition
The company competes with Techemet, Johnson Matthey, and BASF in the PGM recovery industry.