Distribution and characteristics of ultraviolet absorption and fluorescenceof dissolved organic matter in a large lake (Lake Biwa, Japan)
Autor: | Daiya Bamba, Kazuhide Hayakawa, Naoko Takei, Chizuru Wada, Tetsu Kumagai, Reiji Kojima, Yuko Sugiyama, Tomoyo Suzuki |
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Rok vydání: | 2016 |
Předmět: |
Hydrology
010504 meteorology & atmospheric sciences Ecology Chemistry Aquatic ecosystem 010501 environmental sciences Aquatic Science medicine.disease_cause 01 natural sciences Fluorescence Matrix (chemical analysis) Epilimnion Environmental chemistry Dissolved organic carbon medicine Hypolimnion Absorption (electromagnetic radiation) Ecology Evolution Behavior and Systematics Ultraviolet 0105 earth and related environmental sciences |
Zdroj: | Journal of Great Lakes Research. 42:571-579 |
ISSN: | 0380-1330 |
DOI: | 10.1016/j.jglr.2016.02.006 |
Popis: | To measure chromophoric properties of DOM in aquatic environments is relatively simple, but similarities in properties among extensive DOM samples make it difficult to identify characteristics that indicate different sources of DOM. We conducted a field survey of DOM ultraviolet (UV) absorption and fluorescence in a large lake (Lake Biwa, Japan). We used an integrated analysis of their spectra, including their derivatives and apparent quantum yield. From this analysis we were able to identify the different DOM sources. Variations of dissolved organic carbon concentrations in the epilimnion were correlated with the first derivative of UV absorption at 285 nm and a protein-like peak in the fluorescence excitation–emission matrix (EEM). Both fingerprints were derived from living organisms. Although the variations of UV absorption over 300 nm and a humic-like peak in EEM in the lake water were affected by multiple sources and reactions, several complementary methods, including field studies and laboratory experiments, led to the conclusion that chromophoric DOM in the hypolimnion was intensively affected by microbial alteration. Our results indicate that an integrated analysis of UV absorption and fluorescence can improve the utility of DOM characterization in lake environments. |
Databáze: | OpenAIRE |
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