The overall goal of this initiative is to develop fundamental knowledge of ash behavior in power systems for the purpose of increasing power production efficiency, reducing operation and maintenance costs, and reducing greenhouse gas emissions into the atmosphere. The specific objectives of this initiative focus primarily on ash behavior related to advanced power systems and include the following: � Determine the current status of the fundamental ash interactions and deposition formation mechanisms as already reported through previous or ongoing projects at the EERC or in the literature. � Determine sintering mechanisms for temperatures and particle compositions that are less well known and remain for the most part undetermined. � Identify ...
Ash from burning biomass is considered to be a nuisance in combustion systems. It is potentially cor...
Solid hydrocarbon fuels-coal and biomass are commonly used for large-scale heat and power generation...
This study continues the investigation into the ash cenosphere formation mechanism using a series of...
The overall goal of this initiative is to develop fundamental knowledge of ash behavior in power sys...
Advanced power systems such as integrated gasifier combined cycle systems and fluidized bed systems ...
The objective of the project is to develop fundamental sintering-viscosity relationships for coal-ty...
Ash behavior in power systems can have a significant impact on the design and performance of advance...
Ash behavior in power systems can have a significant impact on the design and performance of advance...
Process conditions are briefly described for conventional and advanced power systems. The advanced s...
The use of Energy and Environmental Research Center (EERC) modeling tools and improved analytical me...
In this thesis several aspects of ash chemistry are discussed. An issue of primary concern for boile...
Due to the growing concerns about climate change, the power generation sector is increasingly facing...
The Energy and Environmental Research Center (EERC) is working with Electric Power Research Institut...
Solid hydrocarbon fuels-coal and biomass are commonly used for large-scale heat and power generation...
This article explores the effects of SiO2/Al2O3 ratios (S/A) on sintering characteristics and provid...
Ash from burning biomass is considered to be a nuisance in combustion systems. It is potentially cor...
Solid hydrocarbon fuels-coal and biomass are commonly used for large-scale heat and power generation...
This study continues the investigation into the ash cenosphere formation mechanism using a series of...
The overall goal of this initiative is to develop fundamental knowledge of ash behavior in power sys...
Advanced power systems such as integrated gasifier combined cycle systems and fluidized bed systems ...
The objective of the project is to develop fundamental sintering-viscosity relationships for coal-ty...
Ash behavior in power systems can have a significant impact on the design and performance of advance...
Ash behavior in power systems can have a significant impact on the design and performance of advance...
Process conditions are briefly described for conventional and advanced power systems. The advanced s...
The use of Energy and Environmental Research Center (EERC) modeling tools and improved analytical me...
In this thesis several aspects of ash chemistry are discussed. An issue of primary concern for boile...
Due to the growing concerns about climate change, the power generation sector is increasingly facing...
The Energy and Environmental Research Center (EERC) is working with Electric Power Research Institut...
Solid hydrocarbon fuels-coal and biomass are commonly used for large-scale heat and power generation...
This article explores the effects of SiO2/Al2O3 ratios (S/A) on sintering characteristics and provid...
Ash from burning biomass is considered to be a nuisance in combustion systems. It is potentially cor...
Solid hydrocarbon fuels-coal and biomass are commonly used for large-scale heat and power generation...
This study continues the investigation into the ash cenosphere formation mechanism using a series of...