All Stories

  1. Bioavailability of biogenic iron(III) oxyhydroxides for Fe(III)-reducing bacteria
  2. Antimony uptake by iron(III) (oxyhydr)oxide nanoparticles: Roles of particle size and Ni(II) co-sorption
  3. Desulfosporosinus and Acididesulfobacillus dominate an acidophilic sulfate-reducing bacteria consortium during acid mine drainage bioremediation
  4. Anomalous Heavy Metal Sequestration via MnO 2 Layer-to-Tunnel Transformation
  5. Antimony coprecipitation suppresses microbial reduction of goethite and hematite and limits Sb release across particle sizes
  6. Terrestrial iron biosignatures and their potential in solar system exploration for astrobiology
  7. Microbes that breathe iron and eat sulfur
  8. Experimental diagenesis reveals preservation of biosignatures in filamentous sulfur mats under hydrothermal conditions
  9. Coupling of Fe and N cycles by nitrate-reducing Fe(II)-oxidizing microorganisms in the tidal sediments of an extreme acidic river (Río Tinto, Spain)
  10. Microbial respiration - a biomineral perspective
  11. Biogeochemistry of an Iron‐ and Manganese‐Rich Stratified Lake: Tasik Biru, Malaysia, as a Modern Model Habitat for the Ancient Ocean
  12. Early diagenetic versus hydrothermal signals in pyrite from ancient metamorphic sediment-hosted massive sulfides – implications for the stability of sulfur and iron isotope records in deep time
  13. Sulfur microenvironments as hotspots for biogenic pyrite formation
  14. Degradation of the organic carbon associated with Biogenic Iron (Oxyhydr)oxides by fermenting cultures enriched from Lake Constance
  15. Sulfide supply rate and organic surface coating affect pyrite formation during sulfidization of ferric (oxy)hydroxides
  16. Size-Dependent Reduction Kinetics of Iron Oxides in Single and Mixed Mineral Systems
  17. Biogenic pyrite and metastable iron sulfides: Emerging formation pathways and geological and societal relevance
  18. Microbial weathering of iron-bearing minerals in deep hydrothermally altered granitic rock of a semi-arid environment (Chilean Coastal Cordillera)
  19. Acidophilic sulphate‐reducing bacteria: Diversity, ecophysiology, and applications
  20. Interactions between iron and carbon in permafrost thaw ponds
  21. Hydrothermal sulfidation of biogenic magnetite produces framboid-like pyrite
  22. Kinetic constraints for the formation of microniches for microaerophilic Fe(II) oxidation
  23. Sulfidation of nano-magnetite to pyrite: Implications for interpreting paleoenvironmental proxies and biosignature records in hydrothermal sulfide deposits
  24. Impact of Biogenic Magnetite Formation and Transformation on Biogeochemical Cycles
  25. Inferred pyrite growth via the particle attachment pathway in the presence of trace metals
  26. Networks of Dissolved Organic Matter and Organo-Mineral Associations Stimulate Electron Transfer over Centimeter Distances
  27. Metabolic Performance and Fate of Electrons during Nitrate-Reducing Fe(II) Oxidation by the Autotrophic Enrichment Culture KS Grown at Different Initial Fe/N Ratios
  28. Co-reduction of Fe(III) and S0 drives Fe-S biomineral formation and phosphate mobilisation
  29. Microbial biosignatures in ancient deep‐sea hydrothermal sulfides
  30. Environmental Risk of Arsenic Mobilization from Disposed Sand Filter Materials
  31. Simultaneous Insight into Dissolution and Aggregation of Metal Sulfide Nanoparticles through Single-Particle Inductively Coupled Plasma Mass Spectrometry
  32. Co-sorption of metal ions and inorganic anions/organic ligands on environmental minerals: A review
  33. Phosphate remobilization from banded iron formations during metamorphic mineral transformations
  34. Temperature dependence of nitrate-reducing Fe(II) oxidation by Acidovorax strain BoFeN1 – evaluating the role of enzymatic vs. abiotic Fe(II) oxidation by nitrite
  35. Isotopic Labeling Reveals Microbial Methane Oxidation Coupled to Fe(III) Mineral Reduction in Sediments from an As-Contaminated Aquifer
  36. Fe(II) Redox Chemistry in the Environment
  37. Application of Single-Particle ICP-MS to Determine the Mass Distribution and Number Concentrations of Environmental Nanoparticles and Colloids
  38. An evolving view on biogeochemical cycling of iron
  39. Microbes can utilize natural nanoparticles for their own benefits
  40. Insights into the Biogeochemical Cycling of Cobalt: Precipitation and Transformation of Cobalt Sulfide Nanoparticles under Low-Temperature Aqueous Conditions
  41. Nanoparticulate Nickel-Hosting Phases in Sulfidic Environments: Effects of Ferrous Iron and Bacterial Presence on Mineral Formation Mechanism and Solid-Phase Nickel Distribution
  42. A novel framework for interpreting pyrite-based Fe isotope records of the past
  43. Calcium isotopic fractionation in microbially mediated gypsum precipitates
  44. Draft Genome Sequence of Lampenflora Chlorobium limicola Strain Frasassi in a Sulfidic Cave System
  45. Metabolic diversity and ecological niches of Achromatium populations revealed with single-cell genomic sequencing