首页> 外文期刊>Central European Journal of Engineering >Modeling the Risk of Groundwater Contamination using Modified DRASTIC and GIS in Amman-Zerqa Basin, Jordan
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Modeling the Risk of Groundwater Contamination using Modified DRASTIC and GIS in Amman-Zerqa Basin, Jordan

机译:使用改良的DRASTIC和GIS对约旦安曼-扎卡盆地的地下水污染风险进行建模

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Amman-Zerqa Basin (AZB) is the second largest groundwater basin in Jordan with the highest abstraction rate, where more than 28% of total abstractions in Jordan come from this basin. In view of the extensive reliance on this basin, contamination of AZB groundwater became an alarming issue. This paper develops a Modified DRASTIC model by combining the generic DRASTIC model with land use activities and lineament density for the study area with a new model map that evaluates pollution potential of groundwater resources in AZB to various types of pollution. It involves the comparison of modified DRASTIC model that integrates nitrate loading along with other DRASTIC parameters. In addition, parameters to account for differences in land use and lineaments density were added to the DRASTIC model to reflect their influences on groundwater pollution potential. The DRASTIC model showed only 0.08% (3 km~2) of the AZB is situated in the high vulnerability area and about 30% of the basin is located in the moderately vulnerable zone (mainly in central basin). After modifying the DRASTIC to account for lineament density, about 87% of the area was classified as having low pollution potential and no vulnerability class accounts tor about 5.01 % of the AZB area. The moderately susceptible zone covers 7.83% of the basin's total area and the high vulnerability area constitutes 0.13%. The vulnerability map based on land use revealed that about 71% of the study area has low pollution potential and no vulnerability area accounts for about 0.55%, whereas moderate pollution potential zone covers an area of 28.35% and the high vulnerability class constitutes 0.11% of AZB. The final DRASTIC model which combined all DRASTIC models shows that slightly more than 89% of the study area falls under low pollution risk and about 6% is considered areas with no vulnerability. The moderate pollution risk potential covers an area of about 4% of AZB and the high vulnerability class constitutes 0.21% of the basin. The results also showed that an area of about 1761 km~2 of bare soils is of low vulnerability, whereas about 28 km~2 is moderately vulnerable. For agriculture and the urban sector, approximately 1472 km~2 are located within the low vulnerability zone and about 144 km~2 are moderately vulnerable, which together account for about 8% of the total agriculture and urban area. These areas are contaminated with human activities, particularly from the agriculture. Management of land use must be considered when changing human or agricultural activity patterns in the study area, to reduce groundwater vulnerability in the basin. The results also showed that the wells with the highest nitrate levels (81-107 mg/l) were located in high vulnerable areas and are attributed to leakage from old sewage water.
机译:安曼-扎卡盆地(AZB)是约旦的第二大地下水盆地,抽取率最高,约旦总抽取量的28%以上都来自该盆地。鉴于对该盆地的广泛依赖,AZB地下水的污染已成为一个令人担忧的问题。本文通过将通用DRASTIC模型与研究区域的土地利用活动和线密度相结合,开发了一种改良的DRASTIC模型,该模型可以评估AZB中地下水资源对各种类型污染的潜在污染。它涉及修改的DRASTIC模型的比较,该模型将硝酸盐负荷与其他DRASTIC参数集成在一起。此外,在DRASTIC模型中添加了用于解释土地利用和衣着密度差异的参数,以反映它们对地下水污染潜力的影响。 DRASTIC模型显示,仅AZB的0.08%(3 km〜2)位于高脆弱性地区,而盆地的约30%位于中等脆弱性地区(主要在中部盆地)。修改DRASTIC以说明线条密度后,约87%的区域被归类为低污染潜力,而脆弱性类别则不占AZB区域的约5.01%。中度敏感区占流域总面积的7.83%,高脆弱区占0.13%。基于土地利用的脆弱性图显示,约71%的研究区域具有低污染潜力,没有脆弱性区域约占0.55%,而中等污染潜在区域覆盖了28.35%的区域,高脆弱性类别占研究区域的0.11% AZB。结合了所有DRASTIC模型的最终DRASTIC模型显示,略高于89%的研究区域处于低污染风险下,而大约6%的研究区域被认为没有脆弱性。潜在的中度污染风险覆盖了AZB的约4%,高脆弱性类别占流域的0.21%。结果还表明,裸土面积约1761 km〜2的脆弱性较低,而中等土壤脆弱的面积约为28 km〜2。对于农业和城市部门,低脆弱性地区内约有1472 km〜2,中等脆弱性地区约144 km〜2,约占农业和城市总面积的8%。这些地区受到人类活动,特别是农业活动的污染。改变研究区域的人类或农业活动方式时,必须考虑土地利用管理,以减少流域内的地下水脆弱性。结果还表明,硝酸盐含量最高的井(81-107 mg / l)位于高脆弱地区,这归因于旧污水的泄漏。

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