Iron oxidation affects nitrous oxide emissions via donating electrons to denitrification in paddy soils is mainly regulated through redox processes and electron transfer. Ferrous iron [
Fe(II)]
oxidation coupled
Iron oxidation affects nitrous oxide emissions via donating electrons to denitrification in paddy soils is mainly regulated through redox processes and electron transfer. Ferrous iron [
Fe(II)]
oxidation coupled
Ferrous Wheel Hypothesis: Abiotic nitrate incorporation into dissolved organic matter (
Fe) with
nitrate (NO3 −) in the dissolved organic matter (DOM) of volcanic soils in a temperate
Separation and Determination of Fe(III) and Fe(II) in Natural and Waste Waters Using Silica Gel Sequentially Modified with Polyhexamethylene Guanidine and TironSvetlana, Didukh,
Vladimir, Losev,
Elena, Borodina,
Nikolay, Maksimov,
Anatoly, Trofimchuk,
Olga, Zaporogets (III) sorption. During interaction between
Fe(II) and Tiron, fixed on the sorbent surface, its
oxidation up to
Fe Labile organic matter intensifies phosphorous mobilization in paddy soils by microbial iron (III) reductionKhan I.,
Fahad S.,
Wu L.,
Zhou W.,
Xu P.,
Sun Z.,
Salam A.,
Imran M.,
Jiang M.,
Kuzyakov Y.,
Hu R. weathered tropical and subtropical soils. The strong affinity of phosphate to
Fe oxides and hydroxides
A study of the properties of core/shell/shell Ag/FeCo/Ag nanoparticles/shell/shell Ag/
FeCo/Ag nanoparticles are interpreted by assuming partial
oxidation of the surface layer of a
Fenton-Hydroxyl Radical Antioxidant Efficiency of Ibuprofen-Fe3O4-GO Nanospheres efficiency of ibuprofen-
Fe3O4-GO nanospheres is due to the increased
concentration of inactive protonated
Fe(II Hard X-ray photoelectron and X-ray absorption spectroscopy characterization of oxidized surfaces of iron sulfidesMikhlin, Yuri,
Tomashevich, Yevgeny,
Vorobyev, Sergey,
Saikova, Svetlana,
Romanchenko, Alexander,
Felix, Roberto V in combination with
Fe K- and S K-edge XANES, measured simultaneously in total electron (TEY) and partial