Research is being conducted under United States Department of Energy (USDOE) Contract DE-AC21-86MC21023 to develop a new type of coal-fueled plant for electric power generation. This new type of plant--called an Advanced or Second-generation Pressurized Fluidized Bed Combustion (APFBC) plant--offers the promise of efficiencies greater than 45 percent (HHV), with both emissions and a cost of electricity that are significantly lower than conventional pulverized-coal-fired plants with scrubbers. This paper summarizes the pilot-plant R&D work being conducted to develop this new type of plant and discusses a proposed design that should reduce demonstration-plant risks and costs
The advanced pressurized fluidized bed combustor (APFBC) power plant combines an efficient gas-fired...
This study assesses the atmospheric fluidized-bed combustion (AFBC) technology with respect to desig...
This report was prepared at the request of the Tennessee Valley Authority (TVA) to clarify the devel...
Research is being conducted under a United States Department of Energy (USDOE) contract to develop a...
Second-generation on pressurized fluidized bed combustion (PFBC) plants promise higher efficiency wi...
Advanced or second-generation pressurized fluidized bed combustion plants (APFBC) that generate elec...
The economics and performance of advanced pressurized fluidized bed (PFBC) cycles developed for util...
Research is being conducted to develop a new type of coal fired plant for electric power generation....
Shortly after the year 2000 it is expected that new generating plants will be needed to meet the gro...
Research has been conducted under United States Department of Energy Contract (USDOE) DE-AC21-86MC21...
When DOE funds were exhausted in March 1995, all Phase 2 activities were placed on hold. In February...
When DOE funds were exhausted in March 1995, all Phase 2 activities were placed on hold. In February...
A paper study for a highly efficient, environmentally benign, coal-fired electric power generation s...
Air Products has been selected in the DOE Clean Coal Technology Round V program to build, own, and o...
The development of pressurized fluidized bed combustion (PFBC) has reached the stage where the techn...
The advanced pressurized fluidized bed combustor (APFBC) power plant combines an efficient gas-fired...
This study assesses the atmospheric fluidized-bed combustion (AFBC) technology with respect to desig...
This report was prepared at the request of the Tennessee Valley Authority (TVA) to clarify the devel...
Research is being conducted under a United States Department of Energy (USDOE) contract to develop a...
Second-generation on pressurized fluidized bed combustion (PFBC) plants promise higher efficiency wi...
Advanced or second-generation pressurized fluidized bed combustion plants (APFBC) that generate elec...
The economics and performance of advanced pressurized fluidized bed (PFBC) cycles developed for util...
Research is being conducted to develop a new type of coal fired plant for electric power generation....
Shortly after the year 2000 it is expected that new generating plants will be needed to meet the gro...
Research has been conducted under United States Department of Energy Contract (USDOE) DE-AC21-86MC21...
When DOE funds were exhausted in March 1995, all Phase 2 activities were placed on hold. In February...
When DOE funds were exhausted in March 1995, all Phase 2 activities were placed on hold. In February...
A paper study for a highly efficient, environmentally benign, coal-fired electric power generation s...
Air Products has been selected in the DOE Clean Coal Technology Round V program to build, own, and o...
The development of pressurized fluidized bed combustion (PFBC) has reached the stage where the techn...
The advanced pressurized fluidized bed combustor (APFBC) power plant combines an efficient gas-fired...
This study assesses the atmospheric fluidized-bed combustion (AFBC) technology with respect to desig...
This report was prepared at the request of the Tennessee Valley Authority (TVA) to clarify the devel...