Existing NO{sub x} control technologies have limitations which may prevent them from successfully achieving commercial, cost effective application in the near future. This project develops a family of novel NO{sub x} control technologies, Second Generation Advanced Reburning (SGAR), which have a potential to achieve 90+% NO{sub x} control at a significantly lower cost than Selective Catalytic Reduction (SCR). Phase I consists of six tasks: Task 1.1, project coordination and reporting deliverables; Task 1.2, kinetics of Na{sub 2}CO{sub 3} reactions with flue gas components; Task 1.3, 0.1 {times} 10{sup 6} Btu/hr optimization studies; Task 1.4, 1.0 {times} 10{sup 6} Btu/hr process development tests; Task 1.5, mechanism development and modelin...
Reburning is a mature fuel staging NO{sub x} control technology which has been successfully demonstr...
There are currently no commercially-demonstrated combustion modification techniques for cyclone boil...
There are currently no commercially demonstrated combustion modification techniques for cyclone boil...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...
Energy and Environmental Research Corporation is developing a family of high efficiency and low cost...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...
This project develops a family of novel Second Generation Advanced Reburning (SGAR) NO{sub x} contro...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...
Energy and Envirorurental Research Corporation (EER) is developing a family of high efficiency and l...
Title 1 of the Clean Air Act Amendment (CAAA) of 1990 requires NO{sub x} controls in ozone non- atta...
This report presents results of studies under a Phase II SBIR program funded by the U. S. Department...
Reburning is a mature fuel staging NO{sub x} control technology which has been successfully demonstr...
There are currently no commercially-demonstrated combustion modification techniques for cyclone boil...
There are currently no commercially demonstrated combustion modification techniques for cyclone boil...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...
Energy and Environmental Research Corporation is developing a family of high efficiency and low cost...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...
This project develops a family of novel Second Generation Advanced Reburning (SGAR) NO{sub x} contro...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...
Energy and Envirorurental Research Corporation (EER) is developing a family of high efficiency and l...
Title 1 of the Clean Air Act Amendment (CAAA) of 1990 requires NO{sub x} controls in ozone non- atta...
This report presents results of studies under a Phase II SBIR program funded by the U. S. Department...
Reburning is a mature fuel staging NO{sub x} control technology which has been successfully demonstr...
There are currently no commercially-demonstrated combustion modification techniques for cyclone boil...
There are currently no commercially demonstrated combustion modification techniques for cyclone boil...