Environmental Engineering Reference
In-Depth Information
antimicrobial agent, and an insect repellent in fish, 815-823, Copyright (2009), with permission
from Elsevier; and copyright (2007) by the Association for the Sciences of Limnology and
Oceanography, Inc.
References
Abbt-Braun G, Frimmel FH (1990) Restmetallgehalte isolierter Huminstoffe aus Erde, Moor und
Deponie. Acta Hydrochim Hydrobiol 18:649-656
Abbt-Braun G, Frimmel FH, Lipp P (1991) Isolation of organic substances from aquatic and ter-
restial systems—Comparison of some methods. Z Wasser Abwasser Forsch 24:285-292
Abe T, Watanabe A (2004) X-ray photoelectron spectroscopy of nitrogen functional groups in
soil humic acids. Soil Sci 169:35-43
Abril G, Etcheber H, Borges AV, Frankignoulle M (2000) Excess atmospheric crbon dioxide
transported by rivers into the Scheldt Estuary. Comptes Rendus l'Académie des Sciences
Série IIa 330:761-768
Abril G, Nogueira M, Etcheber H, Cabeçadas G, Lemaire E, Brogueira MJ (2002) Behaviour of
organic carbon in nine contrasting European estuaries. Estuar Coast Shelf Sci 54:241-262
Ahel M, Conrad T, Giger W (1987) Persistent organic chemicals in sewage effluents. 3.
Determination of nonylphenoxy carboxylic acids by high-resolution gas chromatography/
mass spectrometry and high-performance liquid chromatography. Environ Sci Technol
21:697-703
Aiken GR, Gillam AH (1989) Determination of molecular weights of humic substances by ultra-
centrifugation. In: Hayes MB, MacCarthy P, Malcolm RL (eds) Humic substances II. In
search of structure. Wiley, New York, pp 515-544
Aiken GR, Malcolm RL (1987) Molecular weight of aquatic fulvic acids by vapor pressure
osmometry. Geochem Cosmochim Acta 51:2177
Aiken GR, McKnight DM, Wershal RL, MacCarthy P (1985) Humic substances in soil, sediment
and water. Wiley, New York
Aitkenhead JA, McDowell WH (2000) Soil C:N ratios as a predictor of annual riverine DOC flux
at local and global scales. Global Biogeochem Cycles 14:127-138
Aitkenhead JA, Hope D, Billett MF (1999) The relationship between dissolved organic carbon
in stream water and soil organic carbon pools at different spatial scales. Hydrol Process
13:1289-1302
Alberts JJ, Takács M (1999) Importance of humic substances for carbon and nitrogen transport
into southeastern United States estuaries. Org Geochem 30:385-395
Alberts JJ, Giesy JP, Evans DW (1984) Distribution of dissolved organic carbon and metal-
binding capacity among ultrafilterable fractions isolated from selected surface waters of the
southeastern United States. Environ Geol Water Sci 6:91-101
Allard B, Arsenie I (1991) Abiotic reduction of mercury by humic substances in aquatic sys-
tem—an important process for the mercury cycle. Water Air Soil Pollut 56:457-464
Allard B, Borén H, Pattersson C, Zhang G (1994) Degradation of humic substances by UV irra-
diation. Environ Int 20:97-101
Aller RC, Blair NE (2006) Carbon remineralization in the Amazon-Guianas tropical mobile
mudbelt: a sedimentary incinerator. Cont Shelf Res 26:2241-2259
Aluwihare LI, Repeta DJ, Chen RF (2002) Chemical composition and cycling of dis-
solved organic matter in the Mid-Atlantic Bight. Deep Sea Res Part II Top Stud Oceanogr
49:4421-4437
Amado AM, Cotner JB, Suhett AL, de Assis Esteves F, Reinaldo Luiz Bozelli RL, Farjalla VF
(2007) Contrasting interactions mediate dissolved organic matter decomposition in tropical
aquatic ecosystems. Aquat Microb Ecol 49:25-34
Amador JA, Alexander M, Zika RG (1989) Sequential photochemical and microbial degradation
of organic molecules bound to humic acid. App Environ Microb 55:2843-2849
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