Works matching DE "HYDROGEN bacteria"
Results: 34
Thiosulfate Oxidation by a Thermo-Neutrophilic Hydrogen-Oxidizing Bacterium, Hydrogenobacter thermophilus.
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- Bioscience, Biotechnology & Biochemistry, 2010, v. 74, n. 4, p. 892, doi. 10.1271/bbb.90948
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Bio-hydrogen production from cellulose by sequential co-culture of cellulosic hydrogen bacteria of Enterococcus gallinarum G1 and Ethanoigenens harbinense B49.
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- Biotechnology Letters, 2009, v. 31, n. 9, p. 1321, doi. 10.1007/s10529-009-0028-z
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Underground Storage of Hydrogen: In Situ Self-Organisation and Methane Generation.
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- Transport in Porous Media, 2010, v. 85, n. 3, p. 841, doi. 10.1007/s11242-010-9595-7
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Isolation and characterization of hydrogen-oxidizing bacteria induced following exposure of soil to hydrogen gas and their impact on plant growth.
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- Environmental Microbiology, 2007, v. 9, n. 2, p. 435, doi. 10.1111/j.1462-2920.2006.01155.x
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Perchlorate reduction by a novel chemolithoautotrophic, hydrogen-oxidizing bacterium.
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- Environmental Microbiology, 2002, v. 4, n. 10, p. 570, doi. 10.1046/j.1462-2920.2002.00338.x
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Effect of fermentation temperature on hydrogen production from xylose and the succession of hydrogen-producing microflora.
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- Journal of Chemical Technology & Biotechnology, 2017, v. 92, n. 8, p. 1990, doi. 10.1002/jctb.5190
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Effects of phosphate addition on methane fermentation in the batch and upflow anaerobic sludge blanket (UASB) reactors.
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- Applied Microbiology & Biotechnology, 2015, v. 99, n. 24, p. 10457, doi. 10.1007/s00253-015-6942-1
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Reconstructing a Thauera genome from a hydrogenotrophic-denitrifying consortium using metagenomic sequence data.
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- Applied Microbiology & Biotechnology, 2014, v. 98, n. 15, p. 6885, doi. 10.1007/s00253-014-5756-x
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Cell growth and P(3HB) accumulation from CO of a carbon monoxide-tolerant hydrogen-oxidizing bacterium, Ideonella sp. O-1.
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- Applied Microbiology & Biotechnology, 2011, v. 92, n. 6, p. 1161, doi. 10.1007/s00253-011-3420-2
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Synthesis of 3-hydroxybutyrate-CO-4-hydroxybutyrate copolymers by hydrogen-oxidizing bacteria.
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- Applied Biochemistry & Microbiology, 2011, v. 47, n. 5, p. 494, doi. 10.1134/S0003683811050152
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Characteristics of proteins synthesized by hydrogen-oxidizing microorganisms.
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- Applied Biochemistry & Microbiology, 2010, v. 46, n. 6, p. 574, doi. 10.1134/S0003683810060037
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Dynamics of Activity of the Key Enzymes of Polyhydroxyalkanoate Metabolism in Ralstonia eutropha B5786.
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- Applied Biochemistry & Microbiology, 2004, v. 40, n. 2, p. 170, doi. 10.1023/B:ABIM.0000018921.04863.d5
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Kinetic Parameters of a Culture of the Hydrogen-Oxidizing Bacterium Ralstonia eutropha Grown under Conditions Favoring Polyhydroxybutyrate Biosynthesis.
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- Applied Biochemistry & Microbiology, 2003, v. 39, n. 2, p. 166, doi. 10.1023/A:1022585912873
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The Hydrogenase Chip: a tiling oligonucleotide DNA microarray technique for characterizing hydrogen-producing and -consuming microbes in microbial communities.
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- ISME Journal: Multidisciplinary Journal of Microbial Ecology, 2012, v. 6, n. 4, p. 814, doi. 10.1038/ismej.2011.136
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AUTECOLOGY AND TAXONOMY OF BACTERIA ISOLATED FROM EXTREME ENVIRONMENTS.
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- Microbiological Journal / Mikrobiolohichnyi Zhurnal, 2017, v. 79, n. 1, p. 100, doi. 10.15407/microbiolj79.01.100
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The hydrogen reactions of nitrogenase.
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- Physiologia Plantarum, 1987, v. 69, n. 1, p. 187, doi. 10.1111/j.1399-3054.1987.tb01965.x
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Proteomic Insights into Sulfur Metabolism in the Hydrogen-Producing Hyperthermophilic Archaeon Thermococcus onnurineus NA1.
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- International Journal of Molecular Sciences, 2015, v. 16, n. 5, p. 9167, doi. 10.3390/ijms16059167
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Clinical efficacy of a triclosan/copolymer/NaF dentifrice and a commercially available breath-freshening dentifrice on hydrogen sulfide-forming bacteria.
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- Oral Diseases, 2005, v. 11, p. 64, doi. 10.1111/j.1601-0825.2005.01095.x
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Autotrophic synthesis of polyhydroxyalkanoates by the bacteria Ralstonia eutropha in the presence of carbon monoxide.
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- Applied Microbiology & Biotechnology, 2002, v. 58, n. 5, p. 675, doi. 10.1007/s00253-002-0941-8
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Gas Fermentation Enhancement for Chemolithotrophic Growth of Cupriavidus necator on Carbon Dioxide.
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- Fermentation (Basel), 2018, v. 4, n. 3, p. 1, doi. 10.3390/fermentation4030063
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Sulfur Metabolism of Hydrogenovibrio thermophilus Strain S5 and Its Adaptations to Deep-Sea Hydrothermal Vent Environment.
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- Frontiers in Microbiology, 2017, p. 1, doi. 10.3389/fmicb.2017.02513
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Metabolic engineering for enhanced hydrogen production: a review.
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- Canadian Journal of Microbiology, 2013, v. 59, n. 2, p. 59, doi. 10.1139/cjm-2012-0494
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Arhodomonas recens sp. nov., a halophilic alkane-utilizing hydrogen-oxidizing bacterium from the brines of flotation enrichment of potassium minerals.
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- Microbiology (00262617), 2012, v. 81, n. 5, p. 582, doi. 10.1134/S002626171205013X
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Physiological and Biochemical Characteristics and Capacity for Polyhydroxyalkanoates Synthesis in a Glucose-Utilizing Strain of Hydrogen-Oxidizing Bacteria, Ralstonia eutropha B8562.
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- Microbiology (00262617), 2005, v. 74, n. 6, p. 684, doi. 10.1007/s11021-005-0124-6
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Autotrophic, Heterotrophic, and Mixotrophic Nitrogen Assimilation for Single-Cell Protein Production by Two Hydrogen-Oxidizing Bacterial Strains.
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- Applied Biochemistry & Biotechnology, 2019, v. 187, n. 1, p. 338, doi. 10.1007/s12010-018-2824-1
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A New Hydrogen-Producing Strain and Its Characterization of Hydrogen Production.
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- Applied Biochemistry & Biotechnology, 2015, v. 177, n. 8, p. 1676, doi. 10.1007/s12010-015-1845-2
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Feasibility of a Two-Step Culture Method to Improve the CO-Fixing Efficiency of Nonphotosynthetic Microbial Community and Simultaneously Decrease the Spontaneous Oxidative Precipitates from Mixed Electron Donors.
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- Applied Biochemistry & Biotechnology, 2014, v. 173, n. 8, p. 2307, doi. 10.1007/s12010-014-1036-6
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Molecular Structure of Tetrahydroxycalix[4]arene [-(C<sub>6</sub>H<sub>3</sub>OH)-CH<sub>2</sub>-]<sub>4</sub> in the Gas Phase.
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- Russian Journal of General Chemistry, 2005, v. 75, n. 12, p. 1949, doi. 10.1007/s11176-006-0020-4
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Physiological and genetic basis for self-aggregation of a thermophilic hydrogenotrophic methanogen, M ethanothermobacter strain CaT2.
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- Environmental Microbiology Reports, 2014, v. 6, n. 3, p. 268, doi. 10.1111/1758-2229.12128
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Carboxylation reaction catalyzed by 2-oxoglutarate:ferredoxin oxidoreductases from Hydrogenobacter thermophilus.
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- Extremophiles, 2010, v. 14, n. 1, p. 79, doi. 10.1007/s00792-009-0289-4
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Microbial life in Champagne Pool, a geothermal spring in Waiotapu, New Zealand.
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- Extremophiles, 2007, v. 11, n. 4, p. 605, doi. 10.1007/s00792-007-0073-2
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Thiofractor thiocaminus gen. nov., sp. nov., a novel hydrogen-oxidizing, sulfur-reducing epsilonproteobacterium isolated from a deep-sea hydrothermal vent chimney in the Nikko Seamount field of the northern Mariana Arc.
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- Archives of Microbiology, 2012, v. 194, n. 9, p. 785, doi. 10.1007/s00203-012-0814-1
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Nitrate respiratory metabolism in an obligately autotrophic hydrogen-oxidizing bacterium, Hydrogenobacter thermophilus TK-6.
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- Archives of Microbiology, 2001, v. 175, n. 1, p. 75, doi. 10.1007/s002030000230
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A kinetic model for quantitative evaluation of the effect of hydrogen and osmolarity on hydrogen production by Caldicellulosiruptor saccharolyticus.
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- Biotechnology for Biofuels, 2011, v. 4, n. 1, p. 31, doi. 10.1186/1754-6834-4-31
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