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Building Energy Efficiency Enhancement Technologies for Municipal Waste Systems

"Turning Municipal Waste into Municipal Power"

GELF Energy Projects

Renewable Natural Gas Fuel

Energy for Direct Potable Reuse

Energy for Direct Potable Reuse

The municipal renewable natural gas project sector focuses heavily on producing and delivering fuel for power generation, industrial processes, transportation, and residential and commercial heating.

Energy for Direct Potable Reuse

Energy for Direct Potable Reuse

Energy for Direct Potable Reuse

The direct potable reuse (DPR) energy sector focuses on treating wastewater to drinking water standards using advanced, energy-intensive processes like reverse osmosis and UV disinfection. 

Energy for Water Purification

Energy for Direct Potable Reuse

Energy for Water Purification

The energy for water purification sector supports the treatment and delivery of clean water through energy-intensive processes such as filtration, reverse osmosis,  and UV disinfection treatment

Energy for Data Centers

Energy for Direct Potable Reuse

Energy for Water Purification

The data center energy sector focuses on providing reliable, efficient power to facilities that store, process, and manage vast amounts of digital information. 

We Build and Install Turnkey Energy Efficiency Enhancements

The building and installation process for waste to energy efficiency enhancement systems involves working with our municipal partners to design bolt-on retrofit infrastructure for anaerobic digesters. Our team focuses on integrating our energy enhancement ensuring that all components are connected and functional. Our systems are thoroughly tested to ensure the integrated systems operate as intended, meeting regulatory standards for safety, efficiency, and reliability. 

Projected Efficiency Enhancements

More RNG
Less Food Waste
Less Digestate

RNG production volumes, food waste diverted and digestate reductions  may vary based on factors such as feedstock type, system design, operating conditions, and maintenance practices. Actual results may differ from projections.

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