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Tailoring groundwater quality monitoring to vulnerability: a GIS procedure for network design

机译:为脆弱性量身定制地下水质量监控:用于网络设计的GIS程序

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摘要

Monitoring networks aiming to assess the state of groundwater quality and detect or predict changes could increase in efficiency when fitted to vulnerability and pollution risk assessment. The main purpose of this paper is to describe a methodology aiming at integrating aquifers vulnerability and actual levels of groundwater pollution in the monitoring network design. In this study carried out in a pilot area in central Italy, several factors such as hydrogeological setting, groundwater vulnerability, and natural and anthropogenic contamination levels were analyzed and used in designing a network tailored to the monitoring objectives, namely, surveying the evolution of groundwater quality relating to natural conditions as well as to polluting processes active in the area. Due to the absence of an aquifer vulnerability map for the whole area, a proxi evaluation of it was performed through a geographic information system (GIS) methodology, leading to the so called "susceptibility to groundwater quality degradation". The latter was used as a basis for the network density assessment, while water points were ranked by several factors including discharge, actual contamination levels, maintenance conditions, and accessibility for periodical sampling in order to select the most appropriate to the network. Two different GIS procedures were implemented which combine vulnerability conditions and water points suitability, producing two slightly different networks of 50 monitoring points selected out of the 121 candidate wells and springs. The results are compared with a "manual" selection of the points. The applied GIS procedures resulted capable to select the requested number of water points from the initial set, evaluating the most confident ones and an appropriate density. Moreover, it is worth underlining that the second procedure (point distance analysis [PDA]) is technically faster and simpler to be performed than the first one (GRID+PDA).
机译:当适用于脆弱性和污染风险评估时,旨在评估地下水质量状况并检测或预测变化的监测网络可以提高效率。本文的主要目的是描述一种旨在将含水层脆弱性与地下水污染的实际水平整合到监测网络设计中的方法。在意大利中部的一个试点地区进行的这项研究中,分析了一些因素,例如水文地质环境,地下水脆弱性以及自然和人为污染水平,并将其用于设计针对监测目标的网络,即调查地下水的演变与自然条件有关的质量以及该地区活跃的污染过程。由于没有整个地区的含水层脆弱性地图,因此通过地理信息系统(GIS)方法对其进行了代理评估,从而导致了所谓的“对地下水水质恶化的敏感性”。后者被用作网络密度评估的基础,而水位则由几个因素进行排序,包括排放量,实际污染水平,维护条件和定期采样的可及性,以便选择最适合网络的水。实施了两种不同的GIS程序,将脆弱性条件和水位适用性相结合,从而产生了两个略有不同的网络,从121个候选井和泉水中选择了50个监测点。将结果与“手动”选择的点进行比较。所应用的GIS程序能够从初始集合中选择所需的水位,评估最可靠的水位和适当的密度。此外,值得强调的是,第二个过程(点距离分析[PDA])在技术上比第一个过程(GRID + PDA)更快,更简单。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2013年第5期|3759-3781|共23页
  • 作者单位

    CNR-IRSA, National Research Council of Italy—Water Research Institute,Via Salaria Km. 29.300,Monterotondo 00015 Rome, Italy;

    CNR-IRSA, National Research Council of Italy—Water Research Institute,Via Salaria Km. 29.300,Monterotondo 00015 Rome, Italy;

    CNR-IRSA, National Research Council of Italy—Water Research Institute,Via Salaria Km. 29.300,Monterotondo 00015 Rome, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    monitoring network; groundwater quality; aquifer vulnerability; gis; central italy;

    机译:监控网络;地下水水质;含水层脆弱性;gis;意大利中部;

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