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Microbial Biotechnology|March 11, 2020
Co-cultivation of Thermoanaerobacter strains with a methanogenic partner enhances glycerol conversionCarla Pereira Magalhães, Joaquim A Ribeiro, Ana P Guedes, et al.
FEMS Microbiology Ecology|August 8, 2009
Microbial sulfide oxidation in the oxic-anoxic transition zone of freshwater sediment: involvement of lithoautotrophic Magnetospirillum strain J10Jeanine S Geelhoed, Dimitry Y Sorokin, Eric Epping, et al.
Frontiers in Microbiology|January 9, 2019
Metabolism and Occurrence of Methanogenic and Sulfate-Reducing Syntrophic Acetate Oxidizing Communities in Haloalkaline EnvironmentsPeer H A Timmers, Charlotte D Vavourakis, Robbert Kleerebezem, et al.
FEMS Microbiology Ecology|March 27, 2010
Trace methane oxidation and the methane dependency of sulfate reduction in anaerobic granular sludgeRoel J W Meulepas, Christian G Jagersma, Yu Zhang, et al.
Biotechnology for Biofuels|February 9, 2018
Organic acid production from potato starch waste fermentation by rumen microbial communities from Dutch and Thai dairy cowsSusakul Palakawong Na Ayudthaya, Antonius H P van de Weijer, Antonie H van Gelder, et al.
Frontiers in Microbiology|February 22, 2020
Enrichment of Anaerobic Syngas-Converting Communities and Isolation of a Novel Carboxydotrophic Acetobacterium wieringae Strain JMAna L Arantes, João P C Moreira, Martijn Diender, et al.
Environmental Science & Technology|June 16, 2012
Pathways of sulfide oxidation by haloalkaliphilic bacteria in limited-oxygen gas lift bioreactorsJohannes B M Klok, Pim L F van den Bosch, Cees J N Buisman, et al.
International Journal of Systematic and Evolutionary Microbiology|September 17, 2005
Dechloromonas hortensis sp. nov. and strain ASK-1, two novel (per)chlorate-reducing bacteria, and taxonomic description of strain GR-1Arthur Wolterink, Sungyoun Kim, Margje Muusse, et al.
Applied Microbiology and Biotechnology|March 17, 2017
Sodium lauryl ether sulfate (SLES) degradation by nitrate-reducing bacteriaAna M S Paulo, Rozelin Aydin, Mauricio R Dimitrov, et al.
International Journal of Systematic and Evolutionary Microbiology|September 17, 2005
Desulfotomaculum carboxydivorans sp. nov., a novel sulfate-reducing bacterium capable of growth at 100% COSofiya N Parshina, Jan Sipma, Yutaka Nakashimada, et al.
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