Contribution of hydrogen production by biological nitrogen fixation to the global hydrogen budget
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Summary
H2 evolution rates were found to be dependent on N2 fixation rates and decreased rapidly when the plants (Trifolium hybridum) were topped, kept in darkness, or fertilized with NH4Cl.
- Type
- article
- Published
- 1980-10-20
- Cited by
- 118
- References
- 29
- OpenAlex
- https://openalex.org/W2026132502
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:128543771
Keywords
Nitrogen fixation, Sink (geography), Nitrogen, Atmospheric sciences, Environmental science
References
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- Expression of hydrogenase activity in free-living Rhizobium japonicum.
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- Hydrogenase system in legume nodules: a mechanism of providing nitrogenase with energy and protection from oxygen damage.
- Nitrogen fixation research: a key to world food?
- Hydrogen evolution: A major factor affecting the efficiency of nitrogen fixation in nodulated symbionts.
- Estimates of gross and net fluxes of carbon between the biosphere and the atmosphere from biomass burning
- Cell-Free Nitrogenase and Hydrogenase from Actinorhizal Root Nodules
- Nichtenzymatische Simulierung von Nitrogenasereaktionen und der Mechanismus der biologischen Stickstoff‐Fixierung
- Biological nitrogen fixation for food and fiber production.
- Estimates on the production of CO and H2 from the oxidation of hydrocarbon emissions from vegetation
- The nitrogen-fixing complex of bacteria.
- Die Bindung des atmosphärischen Stickstoffs durch Mikroorganismen
- Molecular hydrogen in the atmosphere
- Field measurements of hydrogen evolution by nitrogen-fixing legumes
Cited by
- Estimation des sources et puits du dihydrogène troposphérique : développements instrumentaux, mesures atmosphériques et assimilation variationnelle
- Simulation of Global Hydrogen Levels Using a Lagrangian Three-Dimensional Model
- Physiological roles of the three [NiFe]-hydrogenases in Mycobacterium smegmatis
- Hydrogen Uptake Genes and Nitrogen Fixation Efficiency of Rhizobium Species in Symbiosis With Alfalfa, Chickpea and Pigeonpea
- Denitrification in Soil and Sediment
- Finnish Meteorological Institute contributions
- Conservation in Soil of H2 Liberated from N2 Fixation by Hup- Nodules
- Distribution of Hydrogen-Metabolizing Bacteria in Alfalfa Field Soil
- Hydrogen soil deposition and atmospheric variations in the boreal zone
- Biotechnological potentials of anoxygenic phototrophic bacteria. II. Biopolyesters, biopesticide, biofuel, and biofertilizer.
- H2 oxidation, O2 uptake and CO2 fixation in hydrogen treated soils
- Radioassay for Hydrogenase Activity in Viable Cells and Documentation of Aerobic Hydrogen-Consuming Bacteria Living in Extreme Environments
- Isotopic signatures of production and uptake of H 2 by soil
- Hydrogen fertilization of soils – is this a benefit of legumes in rotation?
- Estimation of the molecular hydrogen soil uptake and traffic emissions at a suburban site near Paris through hydrogen, carbon monoxide, and radon‐222 semicontinuous measurements
- Deuterium component of the global molecular hydrogen cycle
- Estimation of hydrogen deposition velocities from 1995-2008 at Mace Head, Ireland using a simple box model and concurrent ozone depositions
- Influences of cloud photochemical processes on tropospheric ozone
- Phototrophy, diazotrophy and palaeoatmospheres: biological catalysis and the H,. C, N and O cycles
- Compensation concentration as critical variable for regulating the flux of trace gases between soil and atmosphere
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