Turning Industrial Waste into AI Power:
A Coal Chemical Tail Gas Case Study
A technical rendering of a modern coal chemical refinery plant integrated with a high-efficiency ENN EGT20 gas turbine unit and a clean waste-heat boiler stack, showing how low-calorific coal chemical tail gas can be piped directly from industrial chemical processes into the micro gas turbine combustion chamber to convert waste gas into reliable onsite power for AI infrastructure applications.
Advanced gas turbine technology capable of stably burning low-BTU, hydrogen-rich chemical tail gas that conventional internal combustion engines cannot handle
Integrated Waste-to-Energy Recovery
The system directs gas turbine exhaust into a waste-heat boiler to produce superheated steam for industrial processes
RMB 6.89 million in annual energy cost savings, supported by improved comprehensive energy efficiency
Complete Environmental Compliance
Converted an environmental liability—flared gas—into high-value utility assets while meeting local emissions limits without additional treatment equipment
RELIABLE BEHIND-THE-METER POWER / OPTIMIZED PUE FOR GPU COMPUTING
Proves that complex industrial waste gases can be repurposed as reliable energy assets to support independent, off-grid computing facilities.
CCHP technology directs turbine waste heat to thermal absorption chillers, lowering data center PUE and maximizing the amount of power available for compute workloads.