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United States Environmental Protection Agency
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Items Found: 20
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Your Search: (SUBJECT=Sulfate reducing bacteria)
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CEMM/GEMMD Library/Gulf Breeze,FL
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Anaerobic Biodegradation of Nitrogen-Substituted and Sulfonated Benzene Aquifer Contaminants.
Anaerobic Biodegradation of o-, m- and p-cresol by Sulfate-Reducing Bacterial Enrichment Cultures Obtained from a Shallow Anoxic Aquifer.
Biological Treatment of Acid Mine Water.
Bioremediation of Acid Mine Drainage Using Sulfate-Reducing Bacteria.
Chemical and microbiological investigations of a surface coal mine settling pond /
Comparison of Phylogenetic Relationships Based on Phospholipid Fatty Acid Profiles and Ribosomal RNA Sequence Similarities among Dissimilatory Sulfate-Reducing Bacteria.
Evaluation of Anaerobic Expanded Bed Reactor for Sewage Treatment.
Genus- and Group-Specific Hybridization Probes for Determinative and Environmental Studies of Sulfate-Reducing Bacteria.
Handbook for constructed wetlands receiving acid mine drainage /
In Situ Source Control of Acid Generation Using Sulfate-Reducing Bacteria.
Microbial degradation of alkylbenzenes under sulfate-reducing and methanogenic conditions /
Microbial Degradation of Nitrogen, Oxygen and Sulfur Heterocyclic Compounds under Anaerobic Conditions: Studies with Aquifer Samples.
Microbial Degradation of Toluene under Sulfate-Reducing Conditions and the Influence of Iron on the Process.
Mine Drainage Treatment State of the Art and Research Needs.
Molecular Phylogenetic Explorations of Natural Microbial Community Composition and Diversity.
Organic wastes as a means of accelerating recovery of acid strip-mine lakes /
Phylogenetic Tree of 16S rRNA Sequences from Sulfate-Reducing Bacteria in a Sandy Marine Sediment.
Sulfate-reducing bacteria reactive wall demonstration. Mine Waste Technology Program activity III, project 12 / Final report :
Sulfur Budget of Lake Shelbyville, Illinois, and the Effects of Sulfides Upon 'Chaoborus'.
Treatment of CERCLA (Comprehensive Environmental Response, Compensation, and Liability Act) Leachates by Carbon-Assisted Anaerobic Fluidized Beds.
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