355
Photoinduced and Microbial Degradation
Lovley DR, Phillips EJP (1987) Competitive mechanisms for inhibition of sulfate reduction and
methane production in the zone of ferric iron reduction in sediments. Appl Environ Microbiol
53:2636–2641
Lovley DR, Coates JD, Blunt-Harris EL, Phillips EJP, Woodward JC (1996) Humic substances as
electron acceptors for microbial respiration. Nature 382:445–448
Lovley DR, Holmes DE, Nevin KP (2004) Dissimilatory Fe(III) and Mn(IV) reduction. Adv
Microb Physiol 49:219–286
Lund V, Hongve D (1994) Ultraviolet irradiated water containing humic substances inhibits bacterial metabolism. Water Res 28:1111–1116
Ma X, Green SA (2004) Photochemical transformation of dissolved organic carbon in lake superior–an in situ experiment. J Great Lakes Res 30:97–112
Mack J, Bolton JR (1999) Photochemistry of nitrite and nitrate in aqueous solution: a review. J
Photochem Photobiol, A 128:1–13
Maddigapu P, Minella M, Vione D, Maurino V, Minero C (2011) Modeling phototransformation
reactions in surface water bodies: 2, 4-dichloro-6-nitrophenol as a case study. Environ Sci
Technol 45:209
Madronich S (1992) Implications of recent total atmospheric ozone measurements for biologically active ultraviolet radiation reaching the Earth’s surface. Geophys Res Lett 19:37–40
Maita Y, Montani S, Ishii J (1982) Early diagenesis of amino acids in Okhotsk Sea sediments.
Deep Sea Res Part A 29:485–498
Malcolm R (1985) Geochemistry of stream fulvic and humic substances
Malcolm RL (1990) The uniqueness of humic substances in each of soil, stream and marine environments. Analyt Chim Acta 232:19–30
Managaki S, Takada H (2005) Fluorescent whitening agents in Tokyo Bay sediments: molecular
evidence of lateral transport of land-derived particulate matter. Mar Chem 95:113–127
McKnight D, Kimball B, Bencala K (1988) Iron photoreduction and oxidation in an acidic
mountain stream. Science 240:637–640
Meier J, Babenzien H-D, Wendt-Potthoff K (2004) Microbial cycling of iron and sulfur in
sediments of acidic and pH-neutral mining lakes in Lusatia (Brandenburg, Germany).
Biogeochemistry 67:135–156
Merga G, Schuchmann HP, Rao BSM, von Sonntag C (1996) ˙ OH radical-induced oxidation
of chlorobenzene in aqueous solution in the absence and presence of oxygen. J Chem Soc,
Perkin Trans 2:1097–1103
Midorikawa T, Tanoue E (1996) Extraction and characterization of organic ligands from oceanic
water columns by immobilized metal ion affinity chromatography. Mar Chem 52:157–171
Midorikawa T, Tanoue E (1998) Molecular masses and chromophoric properties of dissolved
organic ligands for copper (II) in oceanic water. Mar Chem 62:219–239
Miles CJ, Brezonik PL (1981) Oxygen consumption in humic-colored waters by a photochemical
ferrous-ferric catalytic cycle. Environ Sci Technol 15:1089–1095
Milferstedt K, Youngblut ND, Whitaker RJ (2010) Spatial structure and persistence of methanogen populations in humic bog lakes. ISME J 4:764–776
Miller WL (1998) Effects of UV radiation on aquatic humus: photochemical principles and
experimental considerations. In: Hessen DO, Tranvik LJ (eds) Aquatic humic substances.
Springer, Berlin, pp 125–144
Miller WL, Moran MA (1997) Interaction of photochemical and microbial processes in the degradation of refractory dissolved organic matter from a coastal marine environment. Limnol
Oceanogr 42:1317–1324
Miller WL, Zepp RG (1995) Photochemical production of dissolved inorganic carbon from terrestrial organic matter: significance to the oceanic organic. Geophys Res Lett 22:417–420
Millero FJ, Sotolongo S (1989) The oxidation of Fe(II) with H 2 O 2 in seawater. Geochim
Cosmochim Acta 53:1867–1873
Minakata D, Crittenden J (2011) Linear free energy relationships between aqueous phase
Hydroxyl radical reaction rate constants and free energy of activation. Environ Sci Technol
45:3479–3486
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