| Waste Heat driven Power Plants |
| Cement industry |
Waste Heat Recovery from hot gases exhausted by Preheater Cyclones and Clinker Cooler of Cement Plant |
| Cement industry |
Waste Heat Recovery based Thermal Oil Heater on hot gases exhausted by Clinker Cooler of Cement Plant to drive Organic Rankine Cycle Power Plant |
| Cement industry |
Waste Heat Recovery from hot gases exhausted by Preheater of Cement Plant |
| Cement industry |
Waste Heat Recovery from hot gases exhausted by Preheater and Clinker Cooler of Cement Plant |
| Steel plant – scrap melting Arc Furnace |
Waste Heat Recovery for Power Generation using Hot Gases Exhausted by scrap melting Arc Furnace |
| Gas based IPP |
Waste Heat Recovery for Power Generation from Hot Gases exhausted by Natural Gas fired three IC Engines of 6 MW capacity each making it total 18 MW IPP |
| Float Glass plant |
Waste Heat Recovery from hot gases exhausted by Float Glass Melting Furnace for Power Generation |
| Waste Heat Recovery Systems |
| Steel plant – Incinerator |
Waste Heat Recovery from hot gases exhausted by Incinerator in steel plant |
| Steel plant – scrap melting Arc Furnace |
Waste Heat Recovery on Flue Gases exhausted by scrap melting Arc Furnace |
| Float Glass plant |
Waste Heat Recovery from hot gases exhausted by Float Glass Melting Furnace |
| Ceramic Industry |
Waste Heat Recovery from exhaust gases and jacket water of Deutz Gas Engine and its utilization in Spray Drier |
| Automobile Industry |
Waste Heat Recovery from engine testing facility |
| Automobile Industry |
Waste Heat Recovery from hot gases exhausted by Holcraft Furnace |
| Textile Industry |
Waste Heat Recovery from hot gases exhausted by 6.5 MW Roll Royce gas engine generator |
| Chemical plant |
Waste Heat Recovery from hot gases exhausted by Exothermic Chemical Process |
| Pig Iron plant – Stoves |
Waste heat recovery from flue gases of Stoves and its utilization in preheating BFG and combustion air, in Pig Iron manufacturing steel plant |