Arid
DOI10.1080/10256016.2016.1092966
Defining near-surface groundwater flow regimes in the semi-arid glaciated plains of North America
Hendry, M. Jim1; Barbour, S. Lee2; Schmeling, Erin E.1
通讯作者Hendry, M. Jim
来源期刊ISOTOPES IN ENVIRONMENTAL AND HEALTH STUDIES
ISSN1025-6016
EISSN1477-2639
出版年2016
卷号52期号:3页码:203-213
英文摘要

The dominant transport mechanisms controlling the migration of contaminants in geologic media are advection and molecular diffusion. To date, defining which transport mechanism dominates in saturated, non-lithified sediments has been difficult. Here, we illustrate the value of using detailed profiles of the conservative stable isotope values of water (H-2 and O-18) to identify the dominant processes of contaminant transport (i.e. diffusion- or advection-dominated transport) in near-surface, non-lithified, saturated sediments of the Interior Plains of North America (IPNA). The approach presented uses detailed O-18 analyses of glacial till, glaciolacustrine clay, and fluvial sand core samples taken to depths of 11-50 m below ground at 22 sites across the IPNA to show whether transport in the fractured and oxidized sediments is dominated by advection or diffusion. Diffusion is by far the dominant transport mechanism in fine-textured lacustrine and glacial till sediments, but lateral advection dominates transport in sand-rich sediments and some oxidized, fine-textured lacustrine and glacial till sediments. The approach presented has a number of applications, including identifying dominant transport mechanisms in geomedia and potential protective barriers for underlying aquifers or surface waters, constraining groundwater transport models, and selecting optimum locations for monitoring wells. These findings should be applicable to most glaciated regions of the world that are composed of similar hydrogeologic units (i.e. low K clay till layers overlain by higher K coarse-textured aquifers or weathered clay till layers) and may also be applicable to non-glaciated regions exhibiting similar hydrogeologic characteristics.


英文关键词advection diffusion groundwater high-resolution profiling hydrogen-2 oxygen-18 stable isotope tracer technique
类型Article
语种英语
国家Canada
收录类别SCI-E
WOS记录号WOS:000379252900003
WOS关键词PORE-WATER ; CLAY TILL ; DELTA-D ; RESOLUTION ; HYDROGEOLOGY ; SASKATCHEWAN ; TRANSPORT ; SASKATOON ; PROFILES ; SOLUTE
WOS类目Chemistry, Inorganic & Nuclear ; Environmental Sciences
WOS研究方向Chemistry ; Environmental Sciences & Ecology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/193863
作者单位1.Univ Saskatchewan, Dept Geol Sci, Saskatoon, SK, Canada;
2.Univ Saskatchewan, Dept Civil & Geol Engn, Saskatoon, SK, Canada
推荐引用方式
GB/T 7714
Hendry, M. Jim,Barbour, S. Lee,Schmeling, Erin E.. Defining near-surface groundwater flow regimes in the semi-arid glaciated plains of North America[J],2016,52(3):203-213.
APA Hendry, M. Jim,Barbour, S. Lee,&Schmeling, Erin E..(2016).Defining near-surface groundwater flow regimes in the semi-arid glaciated plains of North America.ISOTOPES IN ENVIRONMENTAL AND HEALTH STUDIES,52(3),203-213.
MLA Hendry, M. Jim,et al."Defining near-surface groundwater flow regimes in the semi-arid glaciated plains of North America".ISOTOPES IN ENVIRONMENTAL AND HEALTH STUDIES 52.3(2016):203-213.
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