The goals of this Energy & Environmental Research Center project are to develop a short course for transferring technical information from the research community to the industrial community, to seek out the research needs of industry, and to continually upgrade course materials. The Coal Ash Behavior and Deposition short course developed in the project provides an overview of recent research that is increasing the understanding of mineral behavior in coal utilization. This research leads to the advancement of methods to predict ash behavior, which can economically resolve fouling problems for the utility industry
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...
A mechanistic model of ash deposition is compared with pilot- and utility-scale experiments. The mod...
Advanced power systems such as integrated gasifier combined cycle systems and fluidized bed systems ...
The technical objectives of this project are to: identify the partitioning of inorganic coal constit...
The inorganic impurities in coal are converted to ash during combustion and gasification. The proble...
A mechanistic approach has been used for assessing the ash deposition tendency and has been used for...
Gasification-type entrained ash and deposits were produced in a pressurized test furnace at high tem...
The objectives of this research program include: the identification of the partitioning of inorganic...
The overall goal of this research in the area of ash transport was to advance the capability of maki...
The technical objectives of this project are: (a) To identify the partitioning of inorganic coal con...
The Energy & Environmental Research Center (EERC) has been conducting research on gasification for s...
This report summarizes experimental and theoretical work performed at Sandia's Combustion Research F...
Currently a lot of power plants have a problem with storage of coal combustion solid by-products (as...
Toward a Cleaner Coal The Fort Union Region offers a unique combination of material and energy resou...
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...
A mechanistic model of ash deposition is compared with pilot- and utility-scale experiments. The mod...
Advanced power systems such as integrated gasifier combined cycle systems and fluidized bed systems ...
The technical objectives of this project are to: identify the partitioning of inorganic coal constit...
The inorganic impurities in coal are converted to ash during combustion and gasification. The proble...
A mechanistic approach has been used for assessing the ash deposition tendency and has been used for...
Gasification-type entrained ash and deposits were produced in a pressurized test furnace at high tem...
The objectives of this research program include: the identification of the partitioning of inorganic...
The overall goal of this research in the area of ash transport was to advance the capability of maki...
The technical objectives of this project are: (a) To identify the partitioning of inorganic coal con...
The Energy & Environmental Research Center (EERC) has been conducting research on gasification for s...
This report summarizes experimental and theoretical work performed at Sandia's Combustion Research F...
Currently a lot of power plants have a problem with storage of coal combustion solid by-products (as...
Toward a Cleaner Coal The Fort Union Region offers a unique combination of material and energy resou...
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...
A mechanistic model of ash deposition is compared with pilot- and utility-scale experiments. The mod...