Influence of land use and hydrologic variability on seasonal dissolved organic carbon and nitrate export: insights from a multi-year regional analysis for the northeastern USA

被引:0
|
作者
Erin Seybold
Arthur J. Gold
Shreeram P. Inamdar
Carol Adair
W. B. Bowden
Matthew C. H. Vaughan
Soni M. Pradhanang
Kelly Addy
James B. Shanley
Andrew Vermilyea
Delphis F. Levia
Beverley C. Wemple
Andrew W. Schroth
机构
[1] University of Vermont,
[2] University of Rhode Island,undefined
[3] University of Delaware,undefined
[4] Lake Champlain Basin Program,undefined
[5] U.S. Geological Survey,undefined
[6] Castleton University,undefined
来源
Biogeochemistry | 2019年 / 146卷
关键词
Land use; Hydrologic variability; Dissolved organic carbon export; Nitrate export; Supply and transport control;
D O I
暂无
中图分类号
学科分类号
摘要
Land use/land cover (LULC) change has significant impacts on nutrient loading to aquatic systems and has been linked to deteriorating water quality globally. While many relationships between LULC and nutrient loading have been identified, characterization of the interaction between LULC, climate (specifically variable hydrologic forcing) and solute export across seasonal and interannual time scales is needed to understand the processes that determine nutrient loading and responses to change. Recent advances in high-frequency water quality sensors provide opportunities to assess these interannual relationships with sufficiently high temporal resolution to capture the unpredictable, short-term storm events that likely drive important export mechanisms for dissolved organic carbon (DOC) and nitrate (NO3−–N). We deployed a network of in situ sensors in forested, agricultural, and urban watersheds across the northeastern United States. Using 2 years of high-frequency sensor data, we provide a regional assessment of how LULC and hydrologic variability affected the timing and magnitude of dissolved organic carbon and nitrate export, and the status of watershed fluxes as either supply or transport controlled. Analysis of annual export dynamics revealed systematic differences in the timing and magnitude of DOC and NO3−–N delivery among different LULC classes, with distinct regional similarities in the timing of DOC and NO3−–N fluxes from forested and urban watersheds. Conversely, export dynamics at agricultural sites appeared to be highly site-specific, likely driven by local agricultural practices and regulations. Furthermore, the magnitude of solute fluxes across watersheds responded strongly to interannual variability in rainfall, suggesting a high degree of hydrologic control over nutrient loading across the region. Thus, there is strong potential for climate-driven changes in regional hydrologic cycles to drive variation in the magnitude of downstream nutrient fluxes, particularly in watersheds where solute supply and/or transport has been modified.
引用
收藏
页码:31 / 49
页数:18
相关论文
共 1 条
  • [1] Influence of land use and hydrologic variability on seasonal dissolved organic carbon and nitrate export: insights from a multi-year regional analysis for the northeastern USA
    Seybold, Erin
    Gold, Arthur J.
    Inamdar, Shreeram P.
    Adair, Carol
    Bowden, W. B.
    Vaughan, Matthew C. H.
    Pradhanang, Soni M.
    Addy, Kelly
    Shanley, James B.
    Vermilyea, Andrew
    Levia, Delphis F.
    Wemple, Beverley C.
    Schroth, Andrew W.
    BIOGEOCHEMISTRY, 2019, 146 (01) : 31 - 49