Environmental Engineering Reference
In-Depth Information
Yoshioka T, Mostofa KMG, Konohira E, Tanoue E, Hayakawa K, Takahashi M, Ueda S,
Katsuyama M, Khodzher T, Bashenkhaeva N, Korovyakova I, Sorokovikova L, Gorbunova
L (2007) Distribution and characteristics of molecular size fractions of freshwater dissolved
organic matter in watershed environments: its implication to degradation. Limnology 8:29-44
Yu G-H, Luo Y-H, Wu M-J, Tang Z, Liu D-Y, Yang X-M, Shen Q-R (2010) PARAFAC mod-
eling of fluorescence excitation-emission spectra for rapid assessment of compost maturity.
Bioresour Technol 101:8244-8251
Yue L, Wu FC, Liu C, Li W, Fu P, Bai Y, Wang L, Yin Z, Lü Z (2006) Relationship between fluo-
rescence characteristics and molecular weight distribution of natural dissolved organic matter
in Lake Hongfeng and Lake Baihua, China. Chin Sci Bull 51:89-96
Zanardi-Lamardo E, Moore C, Zika RG (2004) Seasonal variation in molecular mass and optical
properties of chromophoric dissolved organic material in coastal waters of southwest Florida.
Mar Chem 89:37-54
Zepp RG, Scholtzhauer PF (1981) Comparisson of photochemical behavior of various humic
substances in water: III Spectroscopic properties of humic substances. Chemosphere
10:479-486
Zepp RG, Braun AM, Hoigne J, Leenheer JA (1987) Photoproduction of hydrated electrons from
natural organic solutes in aquatic environments. Environ Sci Technol 21:485-490
Zepp RG, Faust BC, Hoigné J (1992) Hydroxyl radical formation in aqueous reactions (pH
3-8) of iron(II) with hydrogen peroxide: the Photo-Fenton reaction. Environ Sci Technol
26:313-319
Zhang Y, Zhu L, Zeng X, Lin Y (2004) The biogeochemical cycling of phosphorus in the upper
ocean of the East China Sea. Est Coast Shelf Sci 60:369-379
Zhang X, Minear RA, Barrett SE (2005) Characterization of high molecular weight disinfection
byproducts from chlorination of humic substances with/without coagulation pretreatment
using UF-SEC-ESI-MS/MS. Environ Sci Technol 39:963-972
Zhang Y, van Dijk MA, Liu M, Zhu G, Qin B (2009a) The contribution of phytoplankton degra-
dation to chromophoric dissolved organic matter (CDOM) in eutrophic shallow lakes: field
and experimental evidence. Water Res 43:4685-4697
Zhang Y, Liu M, Qin B, Feng S (2009b) Photochemical degradation of chromophoric-dissolved
organic matter exposed to simulated UV-B and natural solar radiation. Hydrobiologia
627:159-168
Zhang DY, Pan XL, Mostofa KMG, Chen X, Mu G, Wu FC, Liu J, Song WJ, Yang JY, Liu Y, Fu
QL (2010) Complexation between Hg(II) and biofilm extracellular polymeric substances: an
application of fluorescence spectroscopy. J Hazard Matter 175(1-3):359-365
Zhao WH, Wang JT, Cui X, Ji NY (2006) Research on fluorescence excitation and emission
matrix spectra of dissolved organic matter in phytoplankton growth process. Chin High
Technol Lett 16:425-430 (in Chinese with English abstract)
Zhao W, Wang J, Chen M (2009) Three-dimensional fluorescence characteristics of dissolved
organic matter produced by Prorocentrum donghaiense Lu. Chin J Oceanol Limnol 27:564-
569. doi: 10.1007/s00343-009-9141-z
Zimmerman JTF, Rommets JW (1974) Natural fluorescence as a tracer in the Dutch Wadden Sea
and the adjacent North Sea. Neth J Sea Res 8:117-125
Zinder SH (1993) Physiological ecology of methanogens. In: Ferry JG (ed) Methanogenesis:
ecology, physiology, biochemistry and genetics. Chapman and Hall, New York, pp 128-206
Zsolnay A, Baigar E, Jimenez M, Steinweg B, Saccomandi F (1999) Differentiating with fluo-
rescence spectroscopy the sources of dissolved organic matter in soils subjected to drying.
Chemosphere 38:45-50
Search WWH ::




Custom Search