This project is designed to develop a family of novel NO{sub x} control technologies, called Second Generation Advanced Reburning which has the potential to achieve 90+ NO{sub x} control in coal fired boilers at a significantly lower cost than Selective Catalytic Reduction. The sixth reporting period in Phase II (January 1-March 31, 1999) included experimental activities and combined chemistry-mixing modeling on advanced gas reburning. The goal of combustion tests was to continue the work on identifying prospective promoters for the advanced reburning process. Tests were conducted in Controlled Temperature Tower (CTT) and Boiler Simulator Facility (BSF). Tests showed that some promoters significantly affect the reburning process when co-inj...
There are currently no commercially demonstrated combustion modification techniques for cyclone boil...
Under the U.S. Department of Energy's Clean Coal Technology Program (Round 3), a project was complet...
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 ...
Existing NO{sub x} control technologies have limitations which may prevent them from successfully ac...
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 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...
This project develops a family of novel Second Generation Advanced Reburning (SGAR) NO{sub x} contro...
This paper summarizes an experimental study which was conducted to investigate the chemical constrai...
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 ...
There are currently no commercially demonstrated combustion modification techniques for cyclone boil...
Under the U.S. Department of Energy's Clean Coal Technology Program (Round 3), a project was complet...
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 ...
Existing NO{sub x} control technologies have limitations which may prevent them from successfully ac...
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 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...
This project develops a family of novel Second Generation Advanced Reburning (SGAR) NO{sub x} contro...
This paper summarizes an experimental study which was conducted to investigate the chemical constrai...
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 ...
There are currently no commercially demonstrated combustion modification techniques for cyclone boil...
Under the U.S. Department of Energy's Clean Coal Technology Program (Round 3), a project was complet...
This project is designed to develop a family of novel NO{sub x} control technologies, called Second ...