230
A. V. Panko et al.
16. Refait P, Abdelmoula M, Genin J-MR (1998) Mechanisms of formation and structure of green
rust one in aqueous corrosion of iron in the presence of chloride ions. Corros Sci 40:1547–
1560
17. Cornell RM, Schwertmann U (2003) The iron oxides: structure, properties, reactions, occurrence and uses, 2th edn. Wiley-VCH, Weinheim
18. Jambor JL, Dutrizac JE (1998) The occurrence and constitution of natural and synthetic
ferrihydrite, a widespread iron oxyhydroxide. Chem Rev 98(7):2549–2585
19. Huang PM, Bollag J-M, Senesi N (2002) Interactions between soil particles and microorganisms: impact on the terrestrial ecosystem. Wiley, New York
20. Grassian VH (2005) Environmental catalysis. Taylor & Francis Group, New York
21. Deng Y, Stumm W (1994) Reactivity of aquatic iron(III) oxyhydroxides simplications for redox
cycling of iron in natural water. Appl Geochem 9:3–36
22. Geosci CR, Ona-Nguema G, Stemmler S et al (2006) Bioreduction of ferric species and
biogenesis of green rusts in soils. Comptes Rendus Geosci 338:447–455
23. Ona-Nguema G, Carteret C, Benali O et al (2004) Competitive formation of hydroxycarbonate
green rust I vs hydroxysulphate green rust II in Shewanella putrefaciens cultures. Geomicrobiol
J 21:79–90
24. Zachara JM, Kukkadapu RK, Fredrickson JK et al (2002) Biomineralization of poorly
crystalline Fe(III) oxides by dissimilatory metal reducing bacteria (DMRB). Geomicrobiol J
19:179–207
25. Glasauer S, Weidler PG, Langley S, Beveridge TJ (2003) Controls on Fe reduction and mineral
formation by a subsurface bacterium. Geochim Cosmochim Acta 67:1277–1288
26. Ona-Nguema G, Carteret C, Benali O et al (2004) Competitive formation of Hydroxycarbonate
Green Rust 1 versus Hydroxysulphate Green Rust 2 in Shewanella putrefaciens Cultures.
Geomicrobiol J 21(2):79–90
27. Shchukin YD, Pertsov AV, Amelina YA (2006) Colloid chemistry (Kolloidnaya khimiya)
“High School”, Moscow
28. Panko AV, Tsyganovich YA, Kozun IG, Prokopenko VA, Oleynik VA, Nikipelova EM
(2016) Modeling of nanostructural processes in ore materials and peloids (Modelirovaniye
nanostrukturnykh protsessov v rudnykh materialakh i peloidakh). Nanosistemi Nanomateriali
Nanotehnologii 14(4):609–626
29. Kovzun IG, Pan’ko AV, Yats’kiv EV, Nikipelova OM et al (2008) Application of Nanosize
Clay-Minerals’ Systems in the Complex Therapy for Haemophilia ‘A’ patients. Nanosistemi
Nanomateriali Nanotehnologii 6(2):613–623
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