Warianty tytułu
Języki publikacji
Abstrakty
The 4th Atlas Georesources International Congress (AGIC), convened in Hammamet, Tunisia in March 2023, provided a significant forum for scholars, scientists, and practitioners to converge and deliberate on the intricate challenges surrounding resource management. Themed “Geoscience Innovations For Resource Management: Socio-Economic Challenges In An Environmentally Constrained World,” the congress spotlighted five pivotal domains: hydrology and water resource management, applied geophysics in geological exploration and structural analysis, environmental pollution, climate and atmospheric studies, and renewable energy and climate modeling. These thematic areas serve as focal points for grappling with the multifaceted challenges posed by contemporary resource management paradigms.
Czasopismo
Rocznik
Tom
Strony
1251--1256
Opis fizyczny
Bibliogr. 30 poz.
Twórcy
autor
- Centre of Water Research and Technologies, Georesources Laboratory LGR, BP 273, 8020 Soliman, Tunisia, abir.jrad@certe.rnrt.tn
autor
- Centre of Water Research and Technologies, Georesources Laboratory LGR, BP 273, 8020 Soliman, Tunisia, mohamed.dhaoui@certe.rnrt.tn
autor
- Dig Humanities Geo Informatics Lab, Sylvia Ioannou Chair On Digital Humanities, Archaeological Research Unit, Department of History and Archaeology, University of Cyprus, Nicosia, Cyprus, sarris.apostolos@ucy.ac.cy
autor
- Centre of Water Research and Technologies, Georesources Laboratory LGR, BP 273, 8020 Soliman, Tunisia, hakim.gabtni@certe.mesrs.tn
autor
- Laboratory of Geophysical-Satellite Remote Sensing & Archaeo-Environment (GeoSat ReseArch), Institute for Mediterranean Studies (I.M.S), Foundation for Research & Technology, Hellas (F.O.R.T.H.), Rethymnon, Crete, Greece, nikos@ims.forth.gr
Bibliografia
- 1. Azaiez H, Gabtni H, Bédir M, Campbell S (2018) Aeromagnetic study of buried basement structures and lineaments of Sahel region (Eastern Tunisia, North Africa). Arab J Geosci 11:140. https:// doi.org/10.1007/s12517-018-3476-8
- 2. Binley A, Hubbard SS, Huisman JA, Revil A, Robinson DA, Singha K, Slater LD (2015) The emergence of hydrogeophysics for improved understanding of subsurface processes over multiple scales, Water Resour. Res. 51:3837-3866. https://doi.org/10.1002/2015WR0170 16
- 3. Blakely RJ (1995) Potential theory in gravity and magnetic applications. Cambridge University Press, Cambridge
- 4. Blakely RJ (1996) Potential theory and exploration. Society of Exploration Geophysicists, Houston
- 5. Desenfant F, Petrovsky E, Rochette P (2004) Magnetic signature of industrial pollution of stream sediments and correlation with heavy metals: case study from South France. Water Air Soil Pollut 152(1-4):297-312. https://doi.org/10.1023/B:WATE.00000 15356.88243.f0
- 6. Edenhofer O, Pichs-Madruga R, Sokona Y, Minx J C, Farahani E, Kadner S, van Vuuren D (2014) Climate change 2014: mitigation of climate change. In: Contribution of working group III to the fifth assessment report of the intergovernmental panel on climate change. IPCC
- 7. Fedi M, Florio G, Paoletti V (2015) MHODE: a local-homogeneity theory for improved source-parameter estimation of potential fields. Geophys J Int 202:887. https://doi.org/10.1093/gji/ggv185
- 8. He C, Liu Z, Wu J et al (2021) Future global urban water scarcity and potential solutions. Nat Commun 12:4667. https://doi.org/10. 1038/s41467-021-25026-3
- 9. Jallouli C, Mickus K (2000) Regional gravity analysis of the crustal structure of Tunisia. J Afr Earth Sci 30(1):63-78. https://doi.org/ 10.1016/S0899-5362(00)00008-7
- 10. Jarlan L, Khabba S, Er-Raki S, Le Page M, Hanich L, Fakir Y, Escada-fal R (2015) Remote sensing of water resources in semi-arid mediterranean areas: the joint international laboratory TREMA. Int J Remote Sens 36(19-20):4879-4917. https://doi.org/10.1080/ 01431161.2015.1093198
- 11. Joffe A, Jackson C, Pichel L (2021) 3D seismic reflection data reveal syn-depositional halokinesis in the Zechstein Supergroup (Lopin-gian), controls Triassic minibasin genesis and location. Basin Res 35(2):784-801. https://doi.org/10.31223/X56C9G
- 12. Jorgensen G, Kisabeth J (2000) Joint 3-D inversion of gravity, magnetic and tensor gravity fields for imaging salt formations in the deepwater Gulf of Mexico. In: SEG technical program expanded abstracts
- 13. Kaufman YJ, Tanré D, Boucher O (2002) A satellite view of aerosols in the climate system. Nature 419(6903):215-223
- 14. Kearey P, Brooks M, Hill I (2002) An introduction to geophysical exploration. Blackwell Science, Hoboken
- 15. Lachaal F, Azaiez H, Bruni R, Gabtni H, Bedir M (2023) Aquifer structuring and hydrogeological investigation in North African regions using geophysical methods: case study of the aquifer system in the Kairouan Plain (Central Tunisia). In: Khomsi S, Roure F (eds) Geology of North Africa and the mediterranean: sedimentary basins and georesources regional geology reviews. Springer, Berlin
- 16. Levy R, Remer L, Mattoo S, Vermote E, Kaufman Y (2007) Second-generation operational algorithm: retrieval of aerosol properties over land from inversion of moderate resolution imaging spec-troradiometer spectral. J Geophys Res. https://doi.org/10.1029/ 2006JD007811
- 17. Mays LW (2013) Groundwater resources sustainability: past, present, and future. Water Resour Manag 27:4409-4424. https://doi.org/ 10.1007/s11269-013-0436-7
- 18. Mensah JK, Ofosu EA, Yidana SM, Akpoti K, Kabo-bah AT (2022) Integrated modeling of hydrological processes and groundwater recharge based on land use, land cover, and climate changes: a systematic review. Environ Adv 8:100224. https://doi.org/10.1016/j. envadv.2022.100224
- 19. Mosbahi H, Jrad A, Dhaoui M, Azaiez H, Montacer M (2023) Constrained 3D gravity modelling of a multilayered aquifer system in an arid region: case of Sebkhat El Bhira basin (Central Tunisia). J Appl Geophys 210:104950. https://doi.org/10.1016/j.jappgeo. 2023.104950
- 20. Nabighian MN (1984) Toward a three-dimensional automatic interpretation of potential field data via generalised Hilbert transforms: fundamental relations. Geophysics 49:780-789. https://doi.org/ 10.1190/1.14417067
- 21. NOAA (2017) NOAA annual greenhouse gas index (AGGI). National oceanic and atmospheric administration, Washington
- 22. Papa MN, Ruello G, Mitidieri F, Amitrano D (2020) Advanced technologies for satellite monitoring of water resources. In: Naddeo V, Balakrishnan M, Choo KH (eds) Frontiers in water-energy-nexus nature-based solutions, advanced technologies and best practices for environmental sustainability. Advances in science, technology & innovation. Springer, Berlin
- 23. Reynolds JM (2011) An introduction to applied and environmental geophysics. Wiley-Blackwell, Hoboken
- 24. Rogelj J, den Elzen M, Höhne N et al (2016) Paris agreement climate proposals need a boost to keep warming well below 2 °C. Nature 534:631-639. https://doi.org/10.1038/nature18307
- 25. Sarris A, Kokinou E, Aidona E, Kallithrakas-Kontos N, Koulouridakis P, Kakoulaki G, Droulia K, Damianovits O (2009) Environmental study for pollution in the area of Megalopolis power plant (Peloponnesos, Greece). Environ Geol 58:1769-1783. https://doi.org/ 10.1007/s00254-008-1676-3
- 26. Scanlon BR, Fakhreddine S, Rateb A et al (2023) Global water resources and the role of groundwater in a resilient water future. Nat Rev Earth Environ 4:87-101. https://doi.org/10. 1038/ s43017-022-00378-6
- 27. Sheriff RE (2002) Encyclopedic dictionary of applied geophysics. Society of Exploration Geophysicists, Houston
- 28. Taylor KE, Stouffer RJ, Meehl GA (2012) An overview of CMIP5 and the experiment design. Bull Am Meteor Soc 93(4):485-498
- 29. Telford WM, Geldart WM, Sheriff RE (1990) Applied geophysics. Cambridge University Press, Cambridge
- 30. Whiteley RJ (1994) Environmental geophysics: challenges and perspectives. Explor Geophys 25(4):189-196. https://doi.org/10. 1071/EG994
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
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