The Fluidized-Bed Waste-Heat Recovery (FBWHR) System is designed to preheat this combustion air using the heat available in dirty flue gas streams. In this system, a recirculating medium is heated by the flue gas in a fluidized bed. The hot medium is then removed from the bed and placed in a second fluidized bed where it is fluidized by the combustion air. Through this process, the combustion air is heated. The cooled medium is then returned to the first bed. Initial development of this concept is for the aluminum smelting industry
Circulating fluidized bed combustion processes have demonstrated successful destruction of wastes in...
Fluidized bed exchangers can be successfully used to recover heat and sep. soot from exhaust gases o...
Abstract. The energy consumption is increasing year after year with the development of economy in ou...
The Fluidized-Bed Waste-Heat Recovery (FBWHR) System is designed to preheat this combustion air usin...
The Fluidized-Bed Waste-Heat Recovery (FBWHR) System is designed to preheat this combustion air usin...
A major energy loss in industry is the heat content of the flue gases from industrial process heater...
The Fluidized-Bed Waste-Heat Recovery (FBWHR) System is a combustion air preheater designed for ex...
Information was developed on potential applications of Fluidized-Bed Waste Heat Recovery Systems (FW...
The fluidized-bed, waste-heat boiler (FBWHB) may represent a significant opportunity for industrial ...
The first industrial fluid bed waste heat boiler in the U. S. is operating on an aluminium melting...
An agreement was reached in July 1982 with the Aluminum Company of America regarding the Massena ope...
The principles of fluidized-bed operation and the factors affecting the performance of a fluidized-b...
Because of its unique ability to handle a wide variety of liquids and solids in an energy efficient ...
At chemical processing plants, incinerators that burn wastewater and waste oil generate a great deal...
A healthy fluidization state in circulating fluidized-bed combustion (CFBC) combustor is attributed ...
Circulating fluidized bed combustion processes have demonstrated successful destruction of wastes in...
Fluidized bed exchangers can be successfully used to recover heat and sep. soot from exhaust gases o...
Abstract. The energy consumption is increasing year after year with the development of economy in ou...
The Fluidized-Bed Waste-Heat Recovery (FBWHR) System is designed to preheat this combustion air usin...
The Fluidized-Bed Waste-Heat Recovery (FBWHR) System is designed to preheat this combustion air usin...
A major energy loss in industry is the heat content of the flue gases from industrial process heater...
The Fluidized-Bed Waste-Heat Recovery (FBWHR) System is a combustion air preheater designed for ex...
Information was developed on potential applications of Fluidized-Bed Waste Heat Recovery Systems (FW...
The fluidized-bed, waste-heat boiler (FBWHB) may represent a significant opportunity for industrial ...
The first industrial fluid bed waste heat boiler in the U. S. is operating on an aluminium melting...
An agreement was reached in July 1982 with the Aluminum Company of America regarding the Massena ope...
The principles of fluidized-bed operation and the factors affecting the performance of a fluidized-b...
Because of its unique ability to handle a wide variety of liquids and solids in an energy efficient ...
At chemical processing plants, incinerators that burn wastewater and waste oil generate a great deal...
A healthy fluidization state in circulating fluidized-bed combustion (CFBC) combustor is attributed ...
Circulating fluidized bed combustion processes have demonstrated successful destruction of wastes in...
Fluidized bed exchangers can be successfully used to recover heat and sep. soot from exhaust gases o...
Abstract. The energy consumption is increasing year after year with the development of economy in ou...