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

Author:

Preziosi E.,Petrangeli A. B.,Giuliano G.

Publisher

Springer Science and Business Media LLC

Subject

Management, Monitoring, Policy and Law,Pollution,General Environmental Science,General Medicine

Reference40 articles.

1. Albinet, M., & Margat, J. (1970). Cartographie de la vulnérabilité à la pollution des nappes d’eau souterraine. Bull. du BRGM (deuxième série), Section III, n.4: 13–22.

2. Aller, L., Bennet, T., Lehr, JH., Petty, RJ., & Hackett G. (1987). DRASTIC: A standardized system for evaluating groundwater pollution potential using hydrogeologic settings. Prepared for U.S.EPA, Office of Research and Development, Ada, OK. EPA-600/2-87-035.

3. Angelone, M., Cremisini, C., Piscopo, V., Proposito, M., & Spaziani, F. (2009). Influence of hydrostratigraphy and structural setting on the arsenic occurrence in groundwater of the Cimino–Vico volcanic area (central Italy). Hydrogeology Journal, 17, 901–914.

4. Arnoldus-Huyzendveld, A. (2003). I suoli di Roma. (The soils of Rome). 1:50,000 scale. Comune di Roma, Dipartimento X, U.O. Sviluppo sostenibile, Stampa D.E.I.

5. Baalousha, H. (2010). Assessment of a groundwater quality monitoring network using vulnerability mapping and geostatistics: a case study from Heretaunga Plains, New Zealand. Agriculture Water Management, 97, 240–246.

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