Soils contain two different activities for oxidation of hydrogen
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- Type
- article
- Published
- 1990-01-01
- Cited by
- 79
- References
- 19
- Access
- Open access
- OpenAlex
- https://openalex.org/W2096683316
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:86520219
Keywords
Oxidizing agent, Soil water, Chemistry, Loam, Fumigation
References
- Conservation in Soil of H2 Liberated from N2 Fixation by Hup- Nodules
- Kinetics of Mixed Microbial Assemblages Enhance Removal of Highly Dilute Organic Substrates
- Influences of pH, Temperature, and Moisture on Gaseous Tritium Uptake in Surface Soils
- Hydrolases extracted from soil: Kinetic parameters of several enzymes catalysing the same reaction
- Kinetics and electron transport of soil hydrogenases catalyzing the oxidation of atmospheric hydrogen
- The role of hydrogen bacteria during the decomposition of hydrogen by soil
- Decomposition of atmospheric hydrogen by soil microorganisms and soil enzymes
- The inability of hydrogen bacteria to utilize atmospheric hydrogen is due to threshold and affinity for hydrogen
- THE UPTAKE OF ORGANIC SOLUTES IN LAKE WATER1
- Multiphasic Kinetics for D-Glucose Uptake by Assemblages of Natural Marine Bacteria
- Biological oxidation of hydrogen in soils flushed with a mixture of H2, CO2, O2 and N2
- Environmental tritium oxidation in surface soil
- Enzyme activity in soil: Location and a possible role in microbial ecology
- Microbial growth rates in nature.
- Physiology and biochemistry of aerobic hydrogen-oxidizing bacteria.
- Uptake of Elementary Tritium by the Soil
- Bodenkundliches Praktikum
- Biogeochemistry and ecophysiology of atmospheric CO and H2
- The Hydrogen-Oxidizing Bacteria
- Regulatory Phenomena in the Metabolism of Knallgasbacteria
Cited by
- Physiological roles of the three [NiFe]-hydrogenases in Mycobacterium smegmatis
- In vitro determination of HT oxidation activity and tritium concentration in soil and vegetation during the chronic HT release experiment at Chalk River
- Thermoanaerobacteriaceae oxidize acetate in methanogenic rice field soil at 50°C.
- Identification of major increased T-RFs in T-RFLP profiles of hydrogen treated soil samples using molecular fingerpr[in]ting techniques
- H2 oxidation, O2 uptake and CO2 fixation in hydrogen treated soils
- Autotrophic, Hydrogen-Oxidizing, Denitrifying Bacteria in Groundwater, Potential Agents for Bioremediation of Nitrate Contamination
- Consumption of atmospheric hydrogen during the life cycle of soil-dwelling actinobacteria.
- Phenotypic characterization of Rice Cluster III archaea without prior isolation by applying quantitative polymerase chain reaction to an enrichment culture.
- Streptomycetes contributing to atmospheric molecular hydrogen soil uptake are widespread and encode a putative high-affinity [NiFe]-hydrogenase.
- Fermentation pattern of methanogenic degradation of rice straw in anoxic paddy soil.
- Tropospheric H(2) budget and the response of its soil uptake under the changing environment.
- HT to HTO conversion and field experiments near Darlington Nuclear Power Generating Station (DNPGS) site.
- Soil microbial processes and the cycling of atmospheric trace gases
- Thermal deactivation of high-affinity H2 uptake activity in soils
- Isolation of Streptomyces sp. PCB7, the first microorganism demonstrating high-affinity uptake of tropospheric H2
- Identification of acetate-utilizing Bacteria and Archaea in methanogenic profundal sediments of Lake Kinneret (Israel) by stable isotope probing of rRNA.
- Hydrogen oxidation in soil following rhizobial H2 production due to N2 fixation by a Vicia faba-Rhizobium leguminosarum symbiosis
- The tropospheric cycle of H2: a critical review
- Localization of atmospheric H2-oxidizing soil hydrogenases in different particle fractions of soil
- Hydrogen oxidation activities in soil as influenced by pH, temperature, moisture, and season
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