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Methanogenesis and sulfate reduction in timber and drainage water from a gold mine
Linda D. Abraham
, Kenneth Westlake
,
Roderick I. Mackie
, John F. Putterill
, Albin A.W. Baecker
Animal Sciences
Nutritional Sciences
Carl R. Woese Institute for Genomic Biology
Research output
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Article
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peer-review
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Keyphrases
Methane
100%
Methanogenesis
100%
Drainage Water
100%
Sulfate Reduction
100%
Methanogens
100%
Timber
100%
Most Probable number
66%
Bacteria Count
33%
Gas Sampling
33%
Maximum Rate
33%
Environmental Constraints
33%
Wood
33%
Nutrient Limitation
33%
Laboratory Model
33%
Desulfotomaculum
33%
Biogenesis
33%
Antarctica
33%
Desulfovibrio Desulfuricans
33%
Methanobacterium
33%
Heartwood
33%
Underground Sites
33%
Sulfatereducing Bacteria
33%
Agricultural and Biological Sciences
Methane
100%
Return Flow
100%
Sulfate
100%
Methanogen
100%
Desulfotomaculum
33%
Desulfovibrio desulfuricans
33%
Methanobacterium bryantii
33%
Heartwood
33%
Biogenesis
33%