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Dissolved organic carbon and chromophoric dissolved organic matter properties of rivers in the USA

有色溶解有机物 溶解有机碳 环境科学 光谱斜率 生物地球化学循环 水质 环境化学 生物地球化学 水文学(农业) 化学 生态学 地质学 浮游植物 营养物 生物 天文 谱线 岩土工程 物理
作者
Robert G. M. Spencer,Kenna D. Butler,George R. Aiken
出处
期刊:Journal of Geophysical Research [American Geophysical Union]
卷期号:117 (G3) 被引量:465
标识
DOI:10.1029/2011jg001928
摘要

Dissolved organic carbon (DOC) concentration and chromophoric dissolved organic matter (CDOM) parameters were measured over a range of discharge in 30 U.S. rivers, covering a diverse assortment of fluvial ecosystems in terms of watershed size and landscape drained. Relationships between CDOM absorption at a range of wavelengths ( a 254 , a 350 , a 440 ) and DOC in the 30 watersheds were found to correlate strongly and positively for the majority of U.S. rivers. However, four rivers (Colorado, Colombia, Rio Grande and St. Lawrence) exhibited statistically weak relationships between CDOM absorption and DOC. These four rivers are atypical, as they either drain from the Great Lakes or experience significant impoundment of water within their watersheds, and they exhibited values for dissolved organic matter (DOM) parameters indicative of autochthonous or anthropogenic sources or photochemically degraded allochthonous DOM and thus a decoupling between CDOM and DOC. CDOM quality parameters in the 30 rivers were found to be strongly correlated to DOM compositional metrics derived via XAD fractionation, highlighting the potential for examining DOM biochemical quality from CDOM measurements. This study establishes the ability to derive DOC concentration from CDOM absorption for the majority of U.S. rivers, describes characteristics of riverine systems where such an approach is not valid, and emphasizes the possibility of examining DOM composition and thus biogeochemical function via CDOM parameters. Therefore, the usefulness of CDOM measurements, both laboratory‐based analyses and in situ instrumentation, for improving spatial and temporal resolution of DOC fluxes and DOM dynamics in future studies is considerable in a range of biogeochemical studies.
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