Storage and transit time of chemicals in thick unsaturated zones under rangeland and irrigated cropland, High Plains, United States

被引:125
作者
McMahon, PB
Dennehy, KF
Bruce, BW
Böhlke, JK
Michel, RL
Gurdak, JJ
Hurlbut, DB
机构
[1] US Geol Survey, Denver, CO 80225 USA
[2] US Geol Survey, Reston, VA 20192 USA
[3] US Geol Survey, Menlo Pk, CA 94025 USA
[4] Colorado Dept Agr, Denver, CO 80211 USA
关键词
D O I
10.1029/2005WR004417
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
[1] In 2000 - 2002, three rangeland and six irrigated sites were instrumented to assess the storage and transit time of chemicals in thick ( 15 to 50 m) unsaturated zones (UZ) in the High Plains. These processes are likely to influence relations between land use and groundwater quality, yet they have not been documented systematically in the High Plains. Land use and climate were important controls on the size of subsoil chloride, nitrate, and pesticide compound reservoirs. The reservoirs under irrigated cropland generally were larger than those under rangeland because more chemicals were applied to cropland than to rangeland. In some cases, chloride and nitrate reservoirs under rangeland were larger than those under cropland, presumably because of long-term evaporative concentration near the base of the root zone. Natural salts mobilized by irrigation return flow accounted for as much as 60 and 80% of the nitrate and chloride reservoirs, respectively, under some cropland, as indicated by detailed chemical profiles and isotopic tracers (N-15, O-18 in nitrate and H-2, H-3, O-18 in water). Advective chemical transit times in the UZ under cropland ranged from about 50 to 375 years, longer than any of the instrumented fields had been irrigated, yet agrichemicals were detected at the water table at four of the six sites. The data provide evidence for the existence of slow and fast paths for water movement in the UZ, with larger subsoil chemical reservoirs occurring in areas dominated by slow paths. Implications of these findings with respect to water quality in the aquifer are significant because they indicate that the amount of chemical mass reaching the aquifer could increase with time as chemicals that still reside under irrigated fields reach the water table.
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页数:18
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共 67 条
[31]   Bridging the gap between communities and service providers -: Developing accountability through community mobilisation approaches [J].
Howard-Grabman, L .
IDS BULLETIN-INSTITUTE OF DEVELOPMENT STUDIES, 2000, 31 (01) :88-+
[32]  
Hubner H., 1986, Handbook of Environmental Isotope Geochemistry, V2B, P361
[33]   Movement of water through the thick unsaturated zone underlying Oro Grande and Sheep Creek Washes in the western Mojave Desert, USA [J].
Izbicki, JA ;
Radyk, J ;
Michel, RL .
HYDROGEOLOGY JOURNAL, 2002, 10 (03) :409-427
[34]   Ground water age and nitrate distribution within a glacial aquifer beneath a thick unsaturated zone [J].
Johnston, CT ;
Cook, PG ;
Frape, SK ;
Plummer, LN ;
Busenberg, E ;
Blackport, RJ .
GROUND WATER, 1998, 36 (01) :171-180
[35]   Assessing aquifer contamination risk using immunoassay: Trace analysis of atrazine in unsaturated zone sediments [J].
Juracek, KE ;
Thurman, EM .
JOURNAL OF ENVIRONMENTAL QUALITY, 1997, 26 (04) :1080-1089
[36]   THE NATURAL DISTRIBUTION OF TRITIUM [J].
KAUFMAN, S ;
LIBBY, WF .
PHYSICAL REVIEW, 1954, 93 (06) :1337-1344
[37]  
Kendall C, 2000, Environmental tracers in subsurface hydrology, P261, DOI [10.1007/978-1-4615-4557-6_9, DOI 10.1007/978-1-4615-4557-6_9]
[38]  
KISH JL, 2000, 00385 US GEOL SURV
[39]   MOVEMENTS OF WATER, SOLUTES, AND STABLE ISOTOPES IN THE UNSATURATED ZONES OF 2 SAND PLAINS IN THE UPPER MIDWEST [J].
KOMOR, SC ;
EMERSON, DG .
WATER RESOURCES RESEARCH, 1994, 30 (02) :253-267
[40]   NITROGEN-ISOTOPE RATIO STUDIES OF SOILS AND GROUNDWATER NITRATE FROM ALLUVIAL FAN AQUIFERS IN TEXAS [J].
KREITLER, CW .
JOURNAL OF HYDROLOGY, 1979, 42 (1-2) :147-170