Coastal lagoon systems are highly sensitive environments currently experiencing the impact of climate change and human pressure, which are triggering alteration of pristine biodiversity and geomorphic dynamics. Climateand/or tectonic-induced changes in sea-level and shifts in the base level and/or flow rate of rivers connected to inlets heavily affect the balance of lagoon ecosystems, triggering ecological changes and/or alterations in landforms. For instance, the shorelines of the Arabian Peninsula, stretching from the Red Sea to the Persian/ Arabian Gulf, are dotted by coastal lagoons that are undergoing deep transformations. Across the Holocene, Arabian lagoons underwent subsequent phases of modification triggered by sea-level changes, modifications of ocean circulation, and post-Last Glacial Maximum shifts in the discharge of main rivers (e.g., Tigris and Euphrates rivers). These factors reshaped the geomorphology of such contexts, promoting the evolution of freshwater ecosystems along the shorelines of the United Arab Emirates (UAE) and influencing the growth of extensive mangrove forests. In recent years, human agency has disrupted the pristine dynamics and ecosystems of coastal-lagoon systems between Abu Dhabi and Ras al-Khaimah. Local lagoons have undergone significant changes due to urban expansion involving land reclamation initiatives along the coast to expand coastal areas, including the construction of artificial islands and the consequent changes in circulation and reduction of mangrove forests. The lagoon of the Emirate of Umm al-Quwain (UAQ), thanks to the slower rate of urban sprawl and limited land reclamation operations, still preserves an extensive mangrove ecosystem, pristine landforms, and almost unspoilt tidal dynamics. For that reason, it constitutes the ideal context for a geomorphological assessment based on a combined multi-temporal remote sensing (from 1968 to 2022) and field validation approach, aimed at achieving a deep understanding of the formation and dynamics of tidal-lagoon and coastal systems and landforms. Furthermore, a detailed geomorphological reconstruction of specific sectors of the UAQ lagoon traced its evolutionary history, informing interpretations of past human communities’ adaptation strategies and resource exploitation patterns.

Geomorphological evolution of the Umm al-Quwain (UAE) coastal-lagoon system: Natural processes and recent human impact / L. Forti, M. Degli Esposti, M. Cremaschi, F. Borgi, R.S. Azzoni, A. Zerboni. - In: CATENA. - ISSN 0341-8162. - 247:(2024 Dec), pp. 108517.1-108517.20. [10.1016/j.catena.2024.108517]

Geomorphological evolution of the Umm al-Quwain (UAE) coastal-lagoon system: Natural processes and recent human impact

L. Forti
Primo
Writing – Original Draft Preparation
;
M. Cremaschi;R.S. Azzoni
Writing – Original Draft Preparation
;
A. Zerboni
Ultimo
Writing – Original Draft Preparation
2024

Abstract

Coastal lagoon systems are highly sensitive environments currently experiencing the impact of climate change and human pressure, which are triggering alteration of pristine biodiversity and geomorphic dynamics. Climateand/or tectonic-induced changes in sea-level and shifts in the base level and/or flow rate of rivers connected to inlets heavily affect the balance of lagoon ecosystems, triggering ecological changes and/or alterations in landforms. For instance, the shorelines of the Arabian Peninsula, stretching from the Red Sea to the Persian/ Arabian Gulf, are dotted by coastal lagoons that are undergoing deep transformations. Across the Holocene, Arabian lagoons underwent subsequent phases of modification triggered by sea-level changes, modifications of ocean circulation, and post-Last Glacial Maximum shifts in the discharge of main rivers (e.g., Tigris and Euphrates rivers). These factors reshaped the geomorphology of such contexts, promoting the evolution of freshwater ecosystems along the shorelines of the United Arab Emirates (UAE) and influencing the growth of extensive mangrove forests. In recent years, human agency has disrupted the pristine dynamics and ecosystems of coastal-lagoon systems between Abu Dhabi and Ras al-Khaimah. Local lagoons have undergone significant changes due to urban expansion involving land reclamation initiatives along the coast to expand coastal areas, including the construction of artificial islands and the consequent changes in circulation and reduction of mangrove forests. The lagoon of the Emirate of Umm al-Quwain (UAQ), thanks to the slower rate of urban sprawl and limited land reclamation operations, still preserves an extensive mangrove ecosystem, pristine landforms, and almost unspoilt tidal dynamics. For that reason, it constitutes the ideal context for a geomorphological assessment based on a combined multi-temporal remote sensing (from 1968 to 2022) and field validation approach, aimed at achieving a deep understanding of the formation and dynamics of tidal-lagoon and coastal systems and landforms. Furthermore, a detailed geomorphological reconstruction of specific sectors of the UAQ lagoon traced its evolutionary history, informing interpretations of past human communities’ adaptation strategies and resource exploitation patterns.
Coastal geomorphology, Lagoon system, Remote sensing, Umm al Quwain
Settore GEOS-03/A - Geografia fisica e geomorfologia
   The Land of Lulu. Missione geo-archeologica nella laguna di Umm al-Quwain (Emirati Arabi Uniti)
   MINISTERO DEGLI AFFARI ESTERI E DELLA COOPERAZIONE INTERNAZIONALE
   contributo n. 1473

   The Land of Lulu. Missione geo-archeologica nella laguna di Umm al-Quwain (Emirati Arabi Uniti)
   MINISTERO DEGLI AFFARI ESTERI E DELLA COOPERAZIONE INTERNAZIONALE

   GEOTRes – Geoheritage threating and resilience: mapping the impact of geomorphic and human processes in sensitive morphoclimatic environments
   GEOTres
   MINISTERO DELL'UNIVERSITA' E DELLA RICERCA
   2022NYS98X_001
dic-2024
31-ott-2024
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1116096
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