Environmental Engineering Reference
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Lovley DR (2006) Bug juice: harvesting electricity with microorganisms. Nature Rev Microbiol
4:497-508
Lovley DR, Chapelle FH (1995) Deep subsurface microbial processes. Rev Geophys 33:365-381
Lovley DR, Coates JD, Blunt-Harris EL, Phillips EJP, Woodward JC (1996) Humic substances as
electron acceptors for microbial respiration. Nature 382:445-448
Lowe LE, Bustin RM (1989) Forms and hydrolytic behavior of sulfur in humic acid and residue
fractions of four peats from the Fraser Lowland. Can J Soil Sci 69:287-293
Lu H, Yan C, Liu J (2007) Low-molecular-weight organic acids exuded by Mangrove (Kandelia
candel (L) Druce) roots and their effect on cadmium species change in the rhizosphere.
Environ Exp Bot 61:159-166
Ma X, Ali N (2009) Detection of a DNA-like materials in Suwannee River fulvic acid. In: Wu
FC, Xing B (eds) Natural organic matter and its significance in the environment. Science
Press, Beijing, pp 66-89
Ma X, Green SA (2004) Photochemical transformation of dissolved organic carbon in Lake
Superior-an in situ experiment. J Great Lakes Res 30(suppl 1):97-112
Ma H, Allen E, Yin Y (2001) Characterization of isolated fractions of dissolved organic matter
from natural waters and a wastewater effluent. Water Res 35:985-996
Macalady DL, Walton-Day K (2009) New light on a dark subject: on the use of fluorescence
data to deduce redox states of natural organic matter (NOM). Aquat Sci. doi: 101007/
s00027-009-9174-6
MacFarlane RB (1978) Molecular weight distribution of humic and fulvic acids of sediments
from a north Florida estuary. Geochim Cosmochim Acta 42:1579-1582
Mahieu N, Olk DC, Randall EW (2000) Accumulation of heterocyclic nitrogen in humified
organic matter: a 15 N NMR study of lowland rice soils. Eur J Soil Sci 51:379-389
Mahieu N, Olk DC, Randall EW (2002) Multinuclear magnetic resonance analysis of two humic
acid fractions from lowland rice soils. J Environ Qual 31:421-430
Majewski MS, Foreman WT, Goolsby DA (2000) Pesticides in the atmosphere of the Mississippi
River Valley, part I—rain. Sci Total Environ 248:201-212
Mak YL, Taniyasu S, Yeung LWY, Lu G, Jin L, Yang Y, Lam PKS, Kannan K, Yamashita N
(2009) Perfluorinated compounds in tap water from China and several other countries.
Environ Sci Technol 43:4824-4829
Malcolm RL (1985) Geochemistry of stream fulvic and humic substances. In: Aiken GR,
McKnight DM, Wershaw RL, MacCarthy P (eds) Humic substances in soil, sediment, and
water: geochemistry, isolation and characterization. Wiley, New York, pp 181-209
Malcolm RL (1990) The uniqueness of humic substances in each of soil, stream and marine envi-
ronments. Anal Chim Acta 232:19-30
Malcolm RL (1991) Factors to be considered in the isolation and characterization of aquatic
humic substances In: Allard B, Borén H, Grimvall A (eds) Humic substances in the aquatic
and terrestrial environments. Lecture notes in earth sciences, vol 33. Springer, Berlin, pp
9-36
Malcolm RL, MacCarthy P (1992) Quantitative evaluation of XAD-8 and XAD-4 resins used in
tandem for removing organic solutes from water. Environ Int 18:597-607
Malinsky-Rushansky NZ, Legrand C (1996) Excretion of dissolved organic carbon by
phytoplankton of different sizes and subsequent bacterial uptake. Mar Ecol Prog Ser
132:249-255
Malkin SY, Guildford SJ, Hecky RE (2008) Modeling the growth response of Cladophora
in a Laurentian Great Lake to the exotic invader Dreissena and to lake warming. Limnol
Oceanogr 53:1111-1124
Mandal R, Sekaly ALR, Murimboh J, Hassan NM, Chakrabarti CL, Back MH, Grégoire DC,
Schroeder WH (1999) Effect of the competition of copper and cobalt on the lability of Ni(II)-
organic ligand complexes Part I In model solutions containing Ni(II) and a well-characterized
fulvic acid. Anal Chim Acta 395:323
Mann CJ, Wetzel RG (1995) Dissolved organic carbon and its utilization in a riverine wetland
ecosystem. Biogeochemistry 31:99-120
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