首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Water Quality Assessment: A Quali-Quantitative Method for Evaluation of Environmental Pressures Potentially Impacting on Groundwater Developed under the M.I.N.O.Re. Project
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Water Quality Assessment: A Quali-Quantitative Method for Evaluation of Environmental Pressures Potentially Impacting on Groundwater Developed under the M.I.N.O.Re. Project

机译:M.I.N.O.Re.开发的水质评估:一种定量评估潜在影响地下水的环境压力的方法。项目

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摘要

At global level, the vulnerability of aquifers is deteriorating at an alarming rate due to environmental pollution and intensive human activities. In this context, Local Health Authority ASL Lecce has launched the M.I.N.O.Re. (Not Compulsory Water Monitoring Activities at Regional level) project, in order to assess the vulnerability of the aquifer in Salento area (Puglia Region) by performing several non-compulsory analyses on groundwater samples. This first paper describes the quali-quantitative approach adopted under the M.I.N.O.Re. project for the assessment of environmental pressures suffered by groundwater and determines the number of wells to be monitored in specific sampling areas on the basis of the local potential contamination and vulnerability of the aquifer. We created a map of the entire Lecce province, interpolating it with a grid that led to the subdivision of the study area in 32 quadrangular blocks measuring 10 km × 10 km. Based on current hydrogeological knowledge and institutional data, we used GIS techniques to represent on these 32 blocks the 12 different layers corresponding to the main anthropic or environmental type of pressures potentially impacting on the aquifer. To each kind of pressure, a score from 0 to 1 was attributed on the basis of the potential impact on groundwater. A total score was assigned to each of the 32 blocks. A higher number of wells was selected to be monitored in those blocks presenting higher risk scores for possible groundwater contamination due to anthropic/environmental pressures. The range of total scores varied from 2.4 to 42.5. On the basis of total scores, the 10 km × 10 km blocks were divided into four classes of environmental pressure (1st class: from 0,1 to 10,00; 2nd class: from 10,01 to 20,00; 3rd class: from 20,1 to 30,00; 4th class: from 30,01 to 42,50). There were 11 areas in the 1st class, 9 areas in the 2nd class, 8 areas in the 3rd class and 4 areas in the 4th class. We assigned 1 monitoring well in 1st class areas, 2 monitoring wells in 2nd class areas, 3 monitoring wells in 3rd class areas and 4 monitoring wells in 4th class areas. The methodology developed under the M.I.N.O.Re. project could represent a useful model to be used in other areas to assess the environmental pressures suffered by aquifers and the quality of the groundwater.
机译:在全球范围内,由于环境污染和人类密集活动,含水层的脆弱性正在以惊人的速度恶化。在这种情况下,地方卫生局ASL莱切发起了M.I.N.O.Re. (非区域性强制性水监测活动)项目,目的是通过对地下水样本进行几次非强制性分析来评估萨伦托地区(普利亚大区)含水层的脆弱性。第一篇论文描述了M.I.N.O.Re.所采用的定性定量方法。评估地下水遭受的环境压力的项目,并根据当地潜在的污染和含水层的脆弱性,确定在特定采样区域中要监测的井数。我们创建了整个莱切省的地图,并用网格进行插值,该网格导致研究区域细分为32个四边形块,尺寸为10 km×10 km。基于当前的水文地质知识和机构数据,我们使用GIS技术在这32个区块上表示了12个不同的层,这些层对应于可能影响含水层的主要人为或环境类型的压力。对于每种压力,根据对地下水的潜在影响,得分为0到1。将总分分配给32个模块中的每个模块。在那些由于人为/环境压力而可能对地下水造成污染的风险评分较高的地区,选择了更多的井进行监测。总分数范围从2.4到42.5。根据总得分,将10 km×10 km街区分为四类环境压力(第一类:从0.1到10,00;第二类:从10,01到20,00;第三类:从20,1到30,00;第四类:从30,01到42,50)。一等舱有11个区域,二等舱有9个区域,三等舱有8个区域,四等舱有4个区域。我们在一级区域分配了1口监控井,在二级区域分配了2口监控井,三级区域分配了3口监控井,四级区域分配了4台监控井。根据M.I.N.O.Re.该项目可能是一个有用的模型,可用于其他领域,以评估含水层所承受的环境压力和地下水质量。

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