Dissolved hydrogen and methane in the oceanic basaltic biosphere
Explore this paper's citation graph
- Type
- article
- Published
- 2014-11-01
- Cited by
- 50
- References
- 142
- OpenAlex
- https://openalex.org/W2009324344
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:129103262
Keywords
Geology, Basalt, Geochemistry, Basement, Crust
References
- Hydrogeologic Controls on Episodic H2 Release from Precambrian Fractured Rocks—Energy for Deep Subsurface Life on Earth and Mars
- Isotopic composition of Yb and the determination of Lu concentrations and Lu/Hf ratios by isotope dilution using MC‐ICPMS
- Controls on methane concentration and stable isotope (δ2H‐CH4 and δ13C‐CH4) distributions in the water columns of the Black Sea and Cariaco Basin
- Geochemical controls on hydrothermal fluids from the Kairei and Edmond Vent Fields, 23°–25°S, Central Indian Ridge
- ABIOTIC METHANE ON EARTH
- In situ enrichment of ocean crust microbes on igneous minerals and glasses using an osmotic flow‐through device
- A marine microbial consortium apparently mediating anaerobic oxidation of methane
- Isotope fractionation and mixing in methane plumes from the Logatchev hydrothermal field
- Venting formation fluids from deep‐sea boreholes in a ridge flank setting: ODP Sites 1025 and 1026
- Subseafloor seawater‐basalt‐microbe reactions: Continuous sampling of borehole fluids in a ridge flank environment
- Rayleigh wave phase velocity maps of Tibet and the surrounding regions from ambient seismic noise tomography
- Diffusion of the Interspecies Electron Carriers H2 and Formate in Methanogenic Ecosystems and Its Implications in the Measurement of Km for H2 or Formate Uptake
- Fractionation of carbon and hydrogen isotopes by methane-oxidizing bacteria
- Observations of natural-state fluid pressures and temperatures in young oceanic crust and inferences regarding hydrothermal circulation
- On the role of microbes in the alteration of submarine basaltic glass: a TEM study
- Fluids from Aging Ocean Crust That Support Microbial Life
- Lithoautotrophic Microbial Ecosystems in Deep Basalt Aquifers
- Enriched H2, CH4, and 3He concentrations in hydrothermal plumes associated with the 1996 Gorda Ridge eruptive event
- Acetogenesis in Deep Subseafloor Sediments of The Juan de Fuca Ridge Flank: A Synthesis of Geochemical, Thermodynamic, and Gene-based Evidence
- Microbial sulfate reduction and the sulfur budget for a complete section of altered oceanic basalts, IODP Hole 1256D (eastern Pacific)
Cited by
- Dissolved amino acids in oceanic basaltic basement fluids
- Activity and phylogenetic diversity of sulfate-reducing microorganisms in low-temperature subsurface fluids within the upper oceanic crust
- Geomicrobiology and Metagenomics of Terrestrial Deep Subsurface Microbiomes.
- Deep Crustal Communities of the Juan de Fuca Ridge Are Governed by Mineralogy
- Nanocalorimetric Characterization of Microbial Activity in Deep Subsurface Oceanic Crustal Fluids
- Novel microbial assemblages inhabiting crustal fluids within mid-ocean ridge flank subsurface basalt
- Nitrogen Stimulates the Growth of Subsurface Basalt-associated Microorganisms at the Western Flank of the Mid-Atlantic Ridge
- Thermodynamic and hydrochemical controls on CH4 in a coal seam gas and overlying alluvial aquifer: new insights into CH4 origins
- Genomic comparisons of a bacterial lineage that inhabits both marine and terrestrial deep subsurface systems
- Nitrate effects on chromate reduction in a methane-based biofilm.
- Viruses in the Oceanic Basement
- Seawater recirculation through subducting sediments sustains a deeply buried population of sulfate‐reducing bacteria
- Carboxydotrophy potential of uncultivated Hydrothermarchaeota from the subseafloor crustal biosphere
- Subsurface Microbial Hydrogen Cycling: Natural Occurrence and Implications for Industry
- Dissolved organic carbon in basalt-hosted deep subseafloor fluids of the Juan de Fuca Ridge flank
- Carbon fixation and energy metabolisms of a subseafloor olivine biofilm
- Fluid discharge linked to bending of the incoming plate at the Mariana subduction zone
- Ecology of Subseafloor Crustal Biofilms
- Expedition 385T Preliminary Report: Panama Basin Crustal Architecture and Deep Biosphere
- Deep Microbial Colonization in Saponite-Bearing Fractures in Aged Basaltic Crust: Implications for Subsurface Life on Mars
Related papers
- Crust to crust, basalt to basalt
- The uptake of carbon during alteration of ocean crust
- Punctiform initiation of seafloor spreading in the Red Sea during transition from a continental to an oceanic rift
- Role of the subducted oceanic crust in the origin of HIMU ocean island basalts : evidence from dehydration experiments and geochemistry of Polynesian basalts
- Variations in thickness of layer 3 dominate oceanic crustal structure
- Variable Seafloor Spreading off Baja California
- Relative rates of movement of the ocean floor
- Labrador Sea: the extent of continental and oceanic crust and the timing of the onset of seafloor spreading
- An introduction to the Special Section on Oceanic Crustal Evolution