This report summarizes the progress made during the first quarter of the research project entitled ``A Novel Microorganism for Selective Separation of Coal from Ash and Pyrite,`` DOE Grant No. DE-FG22-93PC93215. The objective of this project is to study the effectiveness of a novel hydrophobic microorganism, Mycobacterium phlei (M. phlei), for the selective flocculation of coal from pyrite and ash-forming minerals. During the reporting period, three different coal samples: Illinois No. 6 coal, Kentucky No. 9 coal and Pittsburgh No. 8 coal, were collected to be used in the investigation. The microorganism, M. phlei, was obtained as freeze-dried cultures and the growth characteristics of the bacteria were studied. Scanning electron microphoto...
The desulfurization of coal using biological methods is an emerging technology. The biodesulfurizati...
Microbial depyritization of coal using chemoautotrophic bacteria is gaining acceptance as an efficie...
In this paper, sulfur compounds in coal, microorganism for biodesulphurization and microbial action ...
The objective of this research project is to study the effectiveness of a novel hydrophobic microorg...
The separation of fine coal from ash and pyrite was evaluated using a microorganism Mycobacterium ph...
The selective separation of pyrite and ash-forming minerals from coal can be accomplished by flotati...
Most Indian coals have high ash content of the order of 25–35%. High ash in the coal not only reduce...
Most Indian coals have high ash content of the order of 25-35%. High ash in the coal not only reduce...
Discoveries of aerobic coal degrading microorganisms have led to their utilisation invarious biotech...
The application of Bacillus subtilis as a flocculant for fine coal has been reported here. Zeta-pote...
The surface properties of coal and solution pH play a major role in determining the adhesion of micr...
Coal is becoming more important both as an energy source and as the source of organic chemical feeds...
Microorganisms, such as the bacteria Thiobacillus ferrooxidans, have been reported to depress pyrite...
The main objective of this study was to determine the capability of acidophilic microorganisms in re...
The present study is aimed at to isolate the sulfur and iron oxidizing bacteria that can be used to ...
The desulfurization of coal using biological methods is an emerging technology. The biodesulfurizati...
Microbial depyritization of coal using chemoautotrophic bacteria is gaining acceptance as an efficie...
In this paper, sulfur compounds in coal, microorganism for biodesulphurization and microbial action ...
The objective of this research project is to study the effectiveness of a novel hydrophobic microorg...
The separation of fine coal from ash and pyrite was evaluated using a microorganism Mycobacterium ph...
The selective separation of pyrite and ash-forming minerals from coal can be accomplished by flotati...
Most Indian coals have high ash content of the order of 25–35%. High ash in the coal not only reduce...
Most Indian coals have high ash content of the order of 25-35%. High ash in the coal not only reduce...
Discoveries of aerobic coal degrading microorganisms have led to their utilisation invarious biotech...
The application of Bacillus subtilis as a flocculant for fine coal has been reported here. Zeta-pote...
The surface properties of coal and solution pH play a major role in determining the adhesion of micr...
Coal is becoming more important both as an energy source and as the source of organic chemical feeds...
Microorganisms, such as the bacteria Thiobacillus ferrooxidans, have been reported to depress pyrite...
The main objective of this study was to determine the capability of acidophilic microorganisms in re...
The present study is aimed at to isolate the sulfur and iron oxidizing bacteria that can be used to ...
The desulfurization of coal using biological methods is an emerging technology. The biodesulfurizati...
Microbial depyritization of coal using chemoautotrophic bacteria is gaining acceptance as an efficie...
In this paper, sulfur compounds in coal, microorganism for biodesulphurization and microbial action ...