Assessment of impacts of climate change on water quality in the southeastern United States

被引:30
作者
Cruise, JF [1 ]
Limaye, AS
Al-Abed, N
机构
[1] Univ Alabama, Dept Civil & Environm Engn, Huntsville, AL 35899 USA
[2] NASA, George C Marshall Space Flight Ctr, Univ Space Res Assoc, Global Hydrol & Climate Ctr, Huntsville, AL 35806 USA
[3] Jordan Univ Sci & Technol, Dept Agr Engn & Technol, Irbid 22110, Jordan
来源
JOURNAL OF THE AMERICAN WATER RESOURCES ASSOCIATION | 1999年 / 35卷 / 06期
关键词
climate change; regional assessment; water quality; modeling;
D O I
10.1111/j.1752-1688.1999.tb04236.x
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
An assessment of current and future water quality conditions in the southeastern United States has been conducted using the EPA BASINS GIS/database system. The analysis has been conducted for dissolved oxygen, total nitrate nitrogen and pH. Future streamflow conditions have been predicted for the region based on the United Kingdom Hadley Center climate model. Thus far, the analyses have been conducted at a fairly coarse spatial scale due to time and resource limitations. Two hydrologic modeling techniques have been employed in future streamflow prediction: a regional stochastic approach and the application of a physically based soil moisture model. The regional model has been applied to the entire area while the physically based model is being used at selected locations to enhance and support the stochastic model. The results of the study reveal that few basins in the southeast exhibit dissolved oxygen problems, but that several watersheds exhibit high nitrogen levels. These basins are located in regions of intense agricultural activity or in proximity to the gulf coast. In many of these areas, streamflow is projected to decline over the next 30-50 years,thus exacerbating these water quality problems.
引用
收藏
页码:1539 / 1550
页数:12
相关论文
共 10 条
[1]   A COMPREHENSIVE SURFACE-GROUNDWATER FLOW MODEL [J].
ARNOLD, JG ;
ALLEN, PM ;
BERNHARDT, G .
JOURNAL OF HYDROLOGY, 1993, 142 (1-4) :47-69
[2]  
CRUISE JF, 1998, RIV CLIM C, P176
[3]  
Dalrymple T., 1960, FLOOD FREQUENCY ANAL
[4]   The second Hadley Centre coupled ocean-atmosphere GCM: Model description, spinup and validation [J].
Johns, TC ;
Carnell, RE ;
Crossley, JF ;
Gregory, JM ;
Mitchell, JFB ;
Senior, CA ;
Tett, SFB ;
Wood, RA .
CLIMATE DYNAMICS, 1997, 13 (02) :103-134
[5]   The VEMAP integrated database for modelling United States ecosystem/vegetation sensitivity to climate change [J].
Kittel, TGF ;
Rosenbloom, NA ;
Painter, TH ;
Schimel, DS ;
Melillo, JM ;
Pan, YD ;
Kicklighter, DW ;
McGuire, AD ;
Neilson, RP ;
Chaney, J ;
Ojima, DS ;
McKeown, R ;
Parton, WJ ;
Pulliam, WM ;
Prentice, IC ;
Haxeltine, A ;
Running, SW ;
Pierce, LL ;
Nemani, RR ;
Hunt, ER ;
Smith, TM ;
Rizzo, B ;
Woodward, FI .
JOURNAL OF BIOGEOGRAPHY, 1995, 22 (4-5) :857-862
[6]  
RITSCHARD RL, 1997, SUMMERY REPORT WORKS
[7]  
ROSENTHAL WD, 1995, T ASAE, V38, P783, DOI 10.13031/2013.27892
[8]   Large area hydrologic modeling and assessment - Part II: Model application [J].
Srinivasan, R ;
Ramanarayanan, TS ;
Arnold, JG ;
Bednarz, ST .
JOURNAL OF THE AMERICAN WATER RESOURCES ASSOCIATION, 1998, 34 (01) :91-101
[9]  
SRINIVASAN R, 1994, WATER RESOUR BULL, V30, P453
[10]  
*US EPA, 1999, BETT ASS SCI INT POI