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An 8000-year history of landscape,climate, and copper exploitation in the Middle East: the Wadi Faynan and the Wadi Dana National Reserve in southern Jordan
Authors:Chris O. Hunt  David D. Gilbertson  Hwedi A. El-Rishi
Affiliation:1. School of Geography, Archaeology and Palaeoecology, Queen''s University of Belfast, Belfast, Northern Ireland BT7 1NN, United Kingdom;2. School of Geography, University of Plymouth, Drake Circus, Plymouth, PL4 8AA, UK;3. Department of Geography, Garyounis University, Benghazi, Libya
Abstract:Investigations of geomorphology, geoarchaeology, pollen, palynofacies, and charcoal indicate the comparative scales and significance of palaeoenvironmental changes throughout the Holocene at the junction between the hyper-arid hot Wadi 'Arabah desert and the front of the Mediterranean-belt Mountains of Edom in southern Jordan through a series of climatic changes and episodes of intense mining and smelting of copper ores. Early Holocene alluviation followed the impact of Neolithic grazers but climate drove fluvial geomorphic change in the Late Holocene, with a major arid episode corresponding chronologically with the ‘Little Ice Age’ causing widespread alluviation. The harvesting of wood for charcoal may have been sufficiently intense and widespread to affect the capacity of intensively harvested tree species to respond to a period of greater precipitation deduced for the Roman–Byzantine period – a property that affects both taphonomic and biogeographical bases for the interpretation of palynological evidence from arid-lands with substantial industrial histories. Studies of palynofacies have provided a record of human and climatic causes of soil erosion, and the changing intensity of the use of fire over time. The patterns of vegetational, climatic change and geomorphic changes are set out for this area for the last 8000 years.
Keywords:Climatic change   Copper   Dana   Desert   Faynan   Geomorphology   Human impact   Little Ice Age   Jordan   Neolithic   Palaeoecology   Palynofacies   Prehistory   Resilience   Smelting   Vegetation history
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