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土壤特性与浅层地下水质量的田间尺度关系。

Field-scale relationships among soil properties and shallow groundwater quality.

机构信息

Department of Soil Science, North Dakota State University, 1402 Albrecht Blvd. 116 Walster Hall, Fargo, ND 58102, USA.

出版信息

Ground Water. 2013 May-Jun;51(3):373-84. doi: 10.1111/j.1745-6584.2012.00981.x. Epub 2012 Aug 22.

DOI:10.1111/j.1745-6584.2012.00981.x
PMID:22913586
Abstract

It is important to understand the link between land surface/soil properties and shallow groundwater quality. To that end, soil properties and near-water-table groundwater chemistry of a shallow, unconfined aquifer were measured on a 100-m grid on a 64-ha irrigated field in southeastern North Dakota. Soil properties and hydrochemistry were compared via multivariate analysis that included product-moment correlations and factor analysis/principal component analysis. Topographic low areas where the water table was in close proximity to the soil surface generally had higher apparent electrical conductivity (ECa ) and higher percent silt and clay than higher positions on the landscape. The majority of the groundwater was characterized by Ca- and Mg-HCO3 type water and was associated with topographic high areas with lower ECa and net groundwater recharge. Small topographic depressions were areas of higher ECa (net groundwater discharge) where salts that precipitated via evapotranspiration and evaporative discharge dissolved and leached to the groundwater during short-term depression-focused recharge events. At this site, groundwater quality and soil ECa were related to surface topography. High-resolution topography and EC(a) measurements are necessary to characterize the land surface/soil properties and surficial groundwater quality at the field-scale and to delineate areas where the shallow groundwater is most susceptible to contamination.

摘要

了解地表/土壤特性与浅层地下水质量之间的关系非常重要。为此,在北达科他州东南部的一个 64 公顷的灌溉农田上,以 100 米的网格测量了浅层无压含水层的土壤特性和近地下水位地下水化学性质。通过包括矩乘积相关分析和因子分析/主成分分析在内的多元分析比较了土壤特性和水化学性质。地下水位接近地表的地形低洼地区的视电阻率(ECa)通常比地形高处的土壤更高,且粉土和黏土的百分比较高。大部分地下水的特征为 Ca 和 Mg-HCO3 型水,与 ECa 较低且地下水净补给量较大的地形高地有关。小地形洼地是 ECa 较高(地下水净排泄)的区域,在短期以洼地为焦点的补给事件期间,通过蒸散和蒸发排泄沉淀的盐分溶解并淋滤到地下水中。在该地点,地下水质量和土壤 ECa 与地表地形有关。需要高分辨率的地形和 EC(a)测量来描述田间尺度的地表/土壤特性和表层地下水质量,并划定浅层地下水最容易受到污染的区域。

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