Results 171 to 180 of about 554 (200)
Some of the next articles are maybe not open access.

Sulfur cycling in mixed cultures of sulfide-oxidizing and sulfate- or sulfur-reducing oil field bacteria

Canadian Journal of Microbiology, 1999
Thiomicrospira strain CVO and Arcobacter strain FWKO B are two nitrate-reducing, sulfide-oxidizing bacteria (NR-SOB) isolated from the Coleville field in western Canada. Analysis by reverse sample genome probing (RSGP) indicates that both can be enriched from Coleville produced water samples by addition of nitrate. Neither could be enriched from waters
Anita J Telang   +2 more
openaire   +1 more source

Reducing Pollution, Restoring Balance: The Microbiology of Sulfur‐Reducing Bacteria in Textile Wastewater Treatment

Journal of Basic Microbiology
ABSTRACT The textile industry releases large volumes of harmful chemicals, including residual dyes and xenobiotics—synthetic or foreign compounds not naturally produced or expected in living systems, such as dyes, surfactants, and pesticides.
null Vishnu   +2 more
openaire   +2 more sources

Light scattering spectra of sulfur-reducing bacteria Desulfuromonas acetoxidans under the influence of ions Fe metals

SPIE Proceedings, 2011
Desulfuromonas acetoxidans are uncoloured gram-negative sulfur bacteria that inhabit sulfur containing aquatic environments. These are gram-negative obligatory anaerobes that have an ability to reduce S 0 to H 2 S and Fe 3+ to Fe 2+ in the processes of dissimilation Sulfur- and Fe (III)-reduction.
Oleksandr I. Bilyy   +2 more
openaire   +1 more source

Elimination of mercury methylation in elemental sulfur-reducing bacteria-enriched sludge : discovery, mechanism study, and potential application

2023
Mercury-contaminated wastewater from industries such as chlor-alkali and battery industries, is a severe threat to aquatic ecosystems and must be treated before discharge. Theoretically, the sulfidogenic process is an ideal biotechnology for the low-cost treatment of mercury-contaminated wastewater because biogenic sulfide can precipitate inorganic ...
openaire   +2 more sources

[Effect of various organic compounds on the growth and hydrocarbon production by sulfur-reducing bacteria].

Izvestiia Akademii nauk. Seriia biologicheskaia, 2000
The effects of lactate, pyruvate and ethanol on growth and formation of extracellular hydrocarbons by Desulfovibrio desulfuricans 1799 cultivated in H2 + CO2 atmosphere were studied. It was shown that sulfate reducing bacteria grow and produce hydrocarbons on all studied carbon and energy sources.
T V, Bagaeva, M I, Beliaeva
openaire   +1 more source

Regulatory and physicochemical properties of isoforms of succinate dehydrogenase from sulfur-reducing bacteria Sphaerotilus natans strains D-506 and D-380

Biology Bulletin, 2017
It was shown that in the conditions of organotrophic growth of colorless sulfur-reducing bacteria Sphaerotilus natans there was only one form of succinate dehydrogenase (SDH) and there were two in the mixotrophic type of nutrition. Three isoforms of SDH from S.
A. T. Eprintsev   +3 more
openaire   +1 more source

New Bioremediation Technologies to Remove Heavy Metals and Radionuclides using Fe(III)-, Sulfate- and Sulfur- Reducing Bacteria

2007
The importance of microbial metal reduction has been recently highlighted and studies on several microorganisms, which may serve as models, have been conducted. The use of Fe(III)-, sulfur- and sulfate-reducing bacteria provides challenges in the reduction of metals and radionuclides.
Mireille Bruschi, Florence Goulhen
openaire   +1 more source

Sulfur-Reducing Bacteria May Lower Corrosion Risk in Oil Fields by Coupling Oxidation of Oil Organics to Reduction of Sulfur-Polysulfide to Sulfide

CORROSION 2010, 2010
Abstract Sulfate-reducing bacteria are generally considered to have a profound impact on the petroleum industry as their sulfide production activity contributes to reservoir souring and pipeline corrosion. SRB can be controlled by injecting biocides into pipelines and above-ground facilities.
S. L. Johnston   +3 more
openaire   +1 more source

[Influence of transition metal compounds on superoxide dismutase activity of sulfur reducing Desulfuromonas acetoxidans bacteria].

Mikrobiolohichnyi zhurnal (Kiev, Ukraine : 1993), 2013
Superoxide dismutase, as one of the enzymes of cells' antioxidant defensive system, catalyzes superoxide anion-radical (O2-) dismutation with O2 and H2O2 forming. The influence of such transition metal compounds, as FeSO4, FeCl3, MnCl2, NiCl2, and CoCl2 on superoxide dismutase activity of sulfur-reducing Desulfuromonas acetoxidans bacteria has been ...
O M, Vasyliv, S O, Hnatush
openaire   +1 more source

The Dissimilatory Sulfur-Reducing Bacteria

1981
Norbert Pfennig, Hanno Biebl
openaire   +1 more source

Home - About - Disclaimer - Privacy