The objective of this project is to evaluate the surface wettability and flotation of coal and pyrite in order to establish a new separation strategy for advanced coal cleaning for premium fuel applications. During this quarter, mini-cell flotation tests were carried out on Upper Freeport, Pittsburgh No. 8, and Illinois No. 6 coals, and two pyrite samples. Flotation media used were kerosene, benzene, and amyl-xanthate. Test results are given and discussed
To better understand the surface chemical properties of coal and mineral pyrite, studies on the effe...
Goal is engineering development of two advanced physical fine coal cleaning processes, column flotat...
Column flotation provides excellent recovery of ultrafine coal while producing low ash content conce...
This project is concerned with the new concept for coal surface wettability and floatability evaluat...
The study was concerned with a new concept for coal surface wettability evaluation and modulation. T...
The objective of this project is to conduct extensive studies on the surface reactivity and surface ...
The primary objective in the scope of this research project is to develop advanced flotation methods...
In this study wettability and floatability of coal petrographic components were examined using the c...
Removal of pyrite from coals is very important to reduce the emission of SO2 during coal combustion....
The objective of this project is to conduct extensive studies on the surface reactivity and surface ...
An additional recovery of coking coal middlings can be utilized for increasing of the concentrate yi...
The hydrophobicity of bituminous coal surface has a significant effect on the separation of coal and...
The objective of the project is to conduct extensive fundamental studies on the surface reactivity a...
The primary goal of this project is the engineering development of two advanced physical fine coal c...
The primary goal of this project is the engineering development of two advanced physical fine coal c...
To better understand the surface chemical properties of coal and mineral pyrite, studies on the effe...
Goal is engineering development of two advanced physical fine coal cleaning processes, column flotat...
Column flotation provides excellent recovery of ultrafine coal while producing low ash content conce...
This project is concerned with the new concept for coal surface wettability and floatability evaluat...
The study was concerned with a new concept for coal surface wettability evaluation and modulation. T...
The objective of this project is to conduct extensive studies on the surface reactivity and surface ...
The primary objective in the scope of this research project is to develop advanced flotation methods...
In this study wettability and floatability of coal petrographic components were examined using the c...
Removal of pyrite from coals is very important to reduce the emission of SO2 during coal combustion....
The objective of this project is to conduct extensive studies on the surface reactivity and surface ...
An additional recovery of coking coal middlings can be utilized for increasing of the concentrate yi...
The hydrophobicity of bituminous coal surface has a significant effect on the separation of coal and...
The objective of the project is to conduct extensive fundamental studies on the surface reactivity a...
The primary goal of this project is the engineering development of two advanced physical fine coal c...
The primary goal of this project is the engineering development of two advanced physical fine coal c...
To better understand the surface chemical properties of coal and mineral pyrite, studies on the effe...
Goal is engineering development of two advanced physical fine coal cleaning processes, column flotat...
Column flotation provides excellent recovery of ultrafine coal while producing low ash content conce...