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Environmental Technology|July 29, 2010
Hydrogen production by hyperthermophilic and extremely thermophilic bacteria and archaea: mechanisms for reductant disposalMarcel R A Verhaart, Abraham A M Bielen, John van der Oost, et al.
Applied Microbiology and Biotechnology|August 4, 2010
(Per)chlorate reduction by an acetogenic bacterium, Sporomusa sp., isolated from an underground gas storageMelike Balk, Farrakh Mehboob, Antonie H van Gelder, et al.
Environmental Microbiology|April 23, 2002
Reduction of humic substances by halorespiring, sulphate-reducing and methanogenic microorganismsFrancisco J Cervantes, Frank A M de Bok, Tuan Duong-Dac, et al.
Applied and Environmental Microbiology|December 7, 2010
Microbial communities and electrochemical performance of titanium-based anodic electrodes in a microbial fuel cellUrania Michaelidou, Annemiek ter Heijne, Gerrit Jan W Euverink, et al.
Environmental Microbiology|October 12, 2018
Insight into the sulfur metabolism of Desulfurella amilsii by differential proteomicsAnna P Florentino, Inês A C Pereira, Sjef Boeren, et al.
Journal of Bacteriology|May 6, 2003
Characterization of the chlorate reductase from Pseudomonas chloritidismutansArthur F W M Wolterink, Emile Schiltz, Peter-Leon Hagedoorn, et al.
Environmental Science and Pollution Research International|October 2, 2015
Thiosulphate conversion in a methane and acetate fed membrane bioreactorDiego A Suarez-Zuluaga, Peer H A Timmers, Caroline M Plugge, et al.
Biotechnology and Bioengineering|February 9, 2007
Anaerobic methanethiol degradation in upflow anaerobic sludge bed reactors at high salinity (> or =0.5 M Na(+))Robin C van Leerdam, Frank A M de Bok, Piet N L Lens, et al.
The Science of the Total Environment|August 1, 2020
Immobilization of sulfate and thiosulfate-reducing biomass on sand under haloalkaline conditionsJoão A B Sousa, Andrea Bolgár, Stephan Christel, et al.
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