Hydrologic and forest management controls on dissolved organic matter characteristics in headwater streams of old-growth forests in the Oregon Cascades

被引:14
作者
Lee, Baek Soo [1 ]
Lajtha, Kate [2 ]
机构
[1] Oregon State Univ, Water Resources Engn, 116 Gilmore Hall, Corvallis, OR 97331 USA
[2] Oregon State Univ, Crop & Soil Sci, 3059 Ag Life Sci Bldg, Corvallis, OR 97331 USA
基金
美国国家科学基金会;
关键词
DOM; Fluorescent; PARAFAC; EEM; Hydrology; DOC; FLUORESCENCE SPECTROSCOPY; CHEMICAL-COMPOSITION; FLUVIAL NETWORKS; CARBON DYNAMICS; UNITED-STATES; WATER; CATCHMENT; BIOAVAILABILITY; LANDSCAPE; INDICATOR;
D O I
10.1016/j.foreco.2016.08.029
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
Dissolved organic matter (DOM) is a critical component of the carbon cycle linking terrestrial and aquatic ecosystems. Although many factors have been identified as influencing DOM fluxes and biochemical quality in rivers with varying land cover types, controls on DOM composition in forested headwater catchments of the western U.S. are poorly understood. This study examined the effect of hydrologic patterns and forest management history on stream DOM chemistry at watersheds located in the H.J. Andrews Experimental Forest of the Oregon Cascades. Specific UV absorbance at 254 nm (SUVA(254)), generally indicative of aromaticity, increased in streams during storms with increasing surficial soil horizon and litter DOM inputs. Fluorescence excitation and emission matrices (EEMs) with Parallel Factor Analysis (PARAFAC) identified a protein-like DOM fluorescent component as well as several other components associated with terrestrial plant material. Correlation analysis between the protein-like DOM component and hydrologic patterns, SUVA(254), and DOC concentrations suggest that DOM during dry seasons represents more microbially-processed sources, such as protein-rich, deeper soil or DOM with greater in-stream microbial processing, compared to more plant-like surface soil sources observed during high flow. The base flow index (the proportion of base flow to total flow) showed a high correlation with the relative proportion of protein-like DOM indicating that deep soil water is a source of the protein-like signal. The relative proportions of the protein-like DOM and humic DOM were also influenced by the abundance of coarse woody debris (CWD), but not live tree biomass, with the proportions of protein like DOM highest in harvested watersheds with low surficial CWD. This study shows UV and fluorescent spectroscopy is a viable finger printing method to elucidate DOM sources in pristine headwater streams at the western Cascades of Oregon. Published by Elsevier B.V.
引用
收藏
页码:11 / 22
页数:12
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