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在泛非范围内绘制地下水易污染脆弱性图。

Mapping the groundwater vulnerability for pollution at the pan African scale.

机构信息

Earth and Life Institute, Université catholique de Louvain, Croix du Sud 2, Box 2, B-1348 Louvain-la-Neuve, Belgium.

Earth and Life Institute, Université catholique de Louvain, Croix du Sud 2, Box 2, B-1348 Louvain-la-Neuve, Belgium.

出版信息

Sci Total Environ. 2016 Feb 15;544:939-53. doi: 10.1016/j.scitotenv.2015.11.135. Epub 2015 Dec 18.

Abstract

We estimated vulnerability and pollution risk of groundwater at the pan-African scale. We therefore compiled the most recent continental scale information on soil, land use, geology, hydrogeology and climate in a Geographical Information System (GIS) at a resolution of 15 km × 15 km and at the scale of 1:60,000,000. The groundwater vulnerability map was constructed by means of the DRASTIC method. The map reveals that groundwater is highly vulnerable in Central and West Africa, where the watertable is very low. In addition, very low vulnerability is found in the large sedimentary basins of the African deserts where groundwater is situated in very deep aquifers. The groundwater pollution risk map is obtained by overlaying the DRASTIC vulnerability map with land use. The northern, central and western part of the African continent is dominated by high pollution risk classes and this is very strongly related to shallow groundwater systems and the development of agricultural activities. Subsequently, we performed a sensitivity analysis to evaluate the relative importance of each parameter on groundwater vulnerability and pollution risk. The sensitivity analysis indicated that the removal of the impact of vadose zone, the depth of the groundwater, the hydraulic conductivity and the net recharge causes a large variation in the mapped vulnerability and pollution risk. The mapping model was validated using nitrate concentration data of groundwater as a proxy of pollution risk. Pan-African concentration data were inferred from a meta-analysis of literature data. Results shows a good match between nitrate concentration and the groundwater pollution risk classes. The pan African assessment of groundwater vulnerability and pollution risk is expected to be of particular value for water policy and for designing groundwater resources management programs. We expect, however, that this assessment can be strongly improved when better pan African monitoring data related to groundwater pollution will be integrated in the assessment methodology.

摘要

我们评估了非洲大陆地下水的脆弱性和污染风险。因此,我们在地理信息系统(GIS)中编译了最新的关于土壤、土地利用、地质、水文地质和气候的大陆尺度信息,分辨率为 15 公里×15 公里,比例尺为 1:60000000。地下水脆弱性图是通过 DRASTIC 方法构建的。该图表明,非洲中部和西部的地下水非常脆弱,地下水位非常低。此外,在非洲沙漠的大型沉积盆地中,地下水位于非常深的含水层中,也发现了非常低的脆弱性。地下水污染风险图是通过将 DRASTIC 脆弱性图与土地利用进行叠加得到的。非洲大陆的北部、中部和西部主要为高污染风险区,这与浅层地下水系统和农业活动的发展密切相关。随后,我们进行了敏感性分析,以评估每个参数对地下水脆弱性和污染风险的相对重要性。敏感性分析表明,去除包气带、地下水深度、水力传导率和净补给的影响会导致映射脆弱性和污染风险发生很大变化。该制图模型通过使用地下水硝酸盐浓度数据作为污染风险的替代指标进行了验证。非洲地下水脆弱性和污染风险的泛非评估预计将对水政策和地下水资源管理方案的设计具有特别重要的价值。然而,我们预计,当更好的与地下水污染相关的泛非监测数据被纳入评估方法时,这种评估可以得到很大的改善。

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