0000000000286202

AUTHOR

Antonella Marsico

0000-0002-3903-0261

showing 2 related works from this author

Relative sea-level rise and potential submersion risk for 2100 on 16 coastal plains of the mediterranean sea

2020

The coasts of the Mediterranean Sea are dynamic habitats in which human activities have been conducted for centuries and which feature micro-tidal environments with about 0.40 m of range. For this reason, human settlements are still concentrated along a narrow coastline strip, where any change in the sea level and coastal dynamics may impact anthropic activities. In the frame of the RITMARE and the Copernicus Projects, we analyzed light detection and ranging (LiDAR) and Copernicus Earth Observation data to provide estimates of potential marine submersion for 2100 for 16 small-sized coastal plains located in the Italian peninsula and four Mediterranean countries (France, Spain, Tunisia, Cypr…

Coastal plainMediterranean climateMediterranean Sea coastal plains relative sea-level rise 2100 marine submersionlcsh:Hydraulic engineering010504 meteorology & atmospheric sciencesCoastal plainRelative sea-level riseGeography Planning and DevelopmentSubmersion (coastal management)Aquatic Science010502 geochemistry & geophysics01 natural sciencesBiochemistryMediterranean sealcsh:Water supply for domestic and industrial purposesPeninsulalcsh:TC1-978Human settlementSea level0105 earth and related environmental sciencesWater Science and Technologygeographylcsh:TD201-5002100geography.geographical_feature_categoryCoastal plainsMarine submersion2100; Coastal plains; Marine submersion; Mediterranean sea; Relative sea-level riseTectonicsMediterranean seaPhysical geographyMediterranean Sea; coastal plains; relative sea-level rise; 2100; marine submersion
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Hillslope degradation in representative Italian areas. Just soil erosion risk or opportunity for development?

2018

In recent years, much research have dealt with the impact of human and climate change on the morpho-evolution of Mediterranean catchments characterized by high ecological and cultural value. In this paper, we speculated how humans can influence hillslope degradation by reviewing the relationships between denudation processes and land use changes in some representative areas located in different Italian regions (i.e., Liguria, Tuscany, Basilicata, and Sicily). The selected study cases are characterized by different climatic and geological features, land use, and land management and can be considered indicative of the hillslope degradation issues that affected the Apennines during the last ce…

human impact010504 meteorology & atmospheric sciences2300Settore GEO/04 - Geografia Fisica E GeomorfologiaSoil Sciencebadlandbadlandshillslope degradationDevelopment010502 geochemistry & geophysics01 natural sciencesgeomorphological riskterraced landscapeGeographyEnvironmental protectionDegradation (geology)Environmental ChemistryDevelopment3304 EducationSettore GEO/05 - Geologia Applicatabadlands; geomorphological risk; hillslope degradation; human impact; terraced landscapebadlands hillslope degradation human impact geomorphological risk terraced landscape0105 earth and related environmental sciencesGeneral Environmental Science
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