influence of environmental factors on spectral characteristics of chromophoric dissolved organic matter (cdom) in inner mongolia plateau, china
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ID: 173096
2016
Spectral characteristics of chromophoric dissolved organic matter (CDOM)
were examined in conjunction with environmental factors in the waters of
rivers and terminal lakes within the Hulun Buir plateau, northeast China.
Dissolved organic carbon (DOC), total nitrogen (TN), and total phosphorous (TP)
were significantly higher in terminal lakes than rivers waters
(p < 0.01). Principal component analysis (PCA) indicated that non-water light absorption and anthropogenic nutrient disturbances were the
likely causes of the diversity of water quality parameters. CDOM absorption
in river waters was significantly lower than terminal lakes. Analysis of the
ratio of absorption at 250 to 365 nm (E250 : 365), specific ultraviolet (UV) absorbance
(SUVA254), and the spectral slope ratio (Sr) indicated that CDOM
in river waters had higher aromaticity, molecular weight, and vascular plant
contribution than in terminal lakes. Furthermore, results showed that DOC
concentration, CDOM light absorption, and the proportion of autochthonous
sources of CDOM in plateau waters were all higher than in other freshwater
rivers reported in the literature. The strong evapoconcentration, intense
ultraviolet irradiance, and landscape features of the Hulun Buir plateau may be
responsible for the above phenomenon. Redundancy analysis (RDA) indicated
that the environmental variables total suspended matter (TSM), TN, and
electrical conductivity (EC) had a strong correlation with light absorption
characteristics, followed by total dissolved solid (TDS) and chlorophyll a. In most sampling
locations, CDOM was the dominant non-water light-absorbing substance. Light
absorption by non-algal particles often exceeded that by phytoplankton in
the plateau waters. Study of these optical–physicochemical correlations is
helpful in the evaluation of the potential influence of water quality
factors on non-water light absorption in cold plateau water environments.
The construction of a correlation between DOC concentration and water
quality factors may help contribute to regional estimates of carbon sources
and fate for catchment carbon budget assessments.
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wen2016hydrologyinfluence
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Authors | ;Z. D. Wen;K. S. Song;Y. Zhao;J. Du;J. H. Ma |
Journal | materials research bulletin |
Year | 2016 |
DOI | 10.5194/hess-20-787-2016 |
URL | |
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