H2 oxidation, O2 uptake and CO2 fixation in hydrogen treated soils
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- Type
- article
- Published
- 2001-02-01
- Cited by
- 103
- References
- 21
- OpenAlex
- https://openalex.org/W1597831373
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8757667
Keywords
Soil water, Chemistry, Nitrogen fixation, Animal science, Environmental chemistry
References
- Conservation in Soil of H2 Liberated from N2 Fixation by Hup- Nodules
- Distribution of Hydrogen-Metabolizing Bacteria in Alfalfa Field Soil
- Soil H2-uptake in relation to soil properties and rhizobial H2-production
- Influence of temperature, moisture, and organic carbon on the flux of H2 and CO between soil and atmosphere: Field studies in subtropical regions
- The role of hydrogen bacteria during the decomposition of hydrogen by soil
- Decomposition of atmospheric hydrogen by soil microorganisms and soil enzymes
- Hydrogen oxidation in soil following rhizobial H2 production due to N2 fixation by a Vicia faba-Rhizobium leguminosarum symbiosis
- Localization of atmospheric H2-oxidizing soil hydrogenases in different particle fractions of soil
- The inability of hydrogen bacteria to utilize atmospheric hydrogen is due to threshold and affinity for hydrogen
- Contribution of hydrogen production by biological nitrogen fixation to the global hydrogen budget
- The simultaneous measurement of low rates of CO2 and O2 exchange in biological systems.
- Demonstration of two different H2-oxidizing activities in soil using an H2 consumption and a tritium exchange assay
- Economy of Photosynthate Use in Nitrogen-fixing Legume Nodules: Observations on Two Contrasting Symbioses.
- Hydrogen-stimulated CO2 fixation and coordinate induction of hydrogenase and ribulosebiphosphate carboxylase in a H2-uptake positive strain of Rhizobium japonicum
- Field measurements of hydrogen evolution by nitrogen-fixing legumes
- Stage of Development Descriptions for Soybeans, Glycine Max (L.) Merrill
- Soils contain two different activities for oxidation of hydrogen
- Gas Exchange of Legume Nodules and the Regulation of Nitrogenase Activity
- The Microbiology of Terrestrial Ecosystems
- Model of gas exchange and diffusion in legume nodules
Cited by
- Development of PCR primers for community studies of bacterial hydrogenases in environmental samples
- Measuring plant-associated nitrogen fixation in agricultural systems
- Identification of major increased T-RFs in T-RFLP profiles of hydrogen treated soil samples using molecular fingerpr[in]ting techniques
- Hydrogen evolution from field pea biological nitrogen fixation and the effect on nitrous oxide production in soil
- Hydrogen fertilization of soils – is this a benefit of legumes in rotation?
- Root exudates mediated interactions belowground
- Classification and Modelling of Nonextractable Residue (NER) Formation of Xenobiotics in Soil – A Synthesis
- Assimilation of CO2 by soil microorganisms and transformation into soil organic matter
- Plant Growth Promoting H2-Oxidizing Bacteria as Seed Inoculants for Cereal Crops
- Isolation and Identification of Hydrogen-oxidizing Bacteria in Medicago sativa Rhizosphere*: Isolation and Identification of Hydrogen-oxidizing Bacteria in Medicago sativa Rhizosphere*
- Ecological services of faba bean
- Choice of hydrogen uptake (Hup) status in legume-rhizobia symbioses
- Hydrogen emission from nodulated soybeans [Glycine max (L.) Merr.] and consequences for the productivity of a subsequent maize (Zea mays L.) crop
- Incorporation of carbon originating from CO2 into different compounds of soil microbial biomass and soil organic matter
- Hydrogen production by nitrogenase as a potential crop rotation benefit
- Microbial phototrophic fixation of atmospheric CO2 in China subtropical upland and paddy soils
- Long-term field fertilization alters the diversity of autotrophic bacteria based on the ribulose-1,5-biphosphate carboxylase/oxygenase (RubisCO) large-subunit genes in paddy soil
- Applications of free living plant growth-promoting rhizobacteria
- Global budget of molecular hydrogen and its deuterium content: Constraints from ground station, cruise, and aircraft observations
- Cultivation-Independent Detection of Autotrophic Hydrogen-Oxidizing Bacteria by DNA Stable-Isotope Probing
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