Geoarchaeology of the Derkul River floodplain, west Kazakhstan: Soil formation, sediment accumulation and human settlement
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Published:2020-12-24
Issue:4
Volume:31
Page:618-629
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ISSN:0959-6836
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Container-title:The Holocene
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language:en
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Short-container-title:The Holocene
Author:
Gavrilov Denis Aleksandrovich1ORCID,
Mamirov Talgat Bazarbaevich2ORCID
Affiliation:
1. Institute of Soil Science and Agrochemistry, Siberian Branch RAS, Russian Federation
2. Branch of the A.Kh. Margulan Institute of Archeology, Republic of Kazakhstan
Abstract
The natural environment and prehistoric human activity in the Holocene floodplains of the Low Volga River and in the southern Urals are important research objects in geomorphology, soil science and archaeology. The alternating sequences of soil-alluvium sequences represent a sedimentary archive with chrono-stratigraphic records of human land use, sediment accumulation and soil formation. The central floodplain of the Derkul River (western Kazakhstan) was studied using the multiproxy approach to investigate the soil-alluvium sequence dating from 8000 years ago until the present and containing a buried Stagnic Fluvic Phaeozem. Alluvial deposition began with stream sedimentation in the early Holocene, followed by a prolonged period of soil formation under low water conditions (7.5–5.7 ka cal year BP). Humans started habitation the floodplain in 6.6–5.7 ka cal year BP. Increased atmospheric precipitation in 5.7–3.4 ka cal year BP accelerated alluvial sedimentation. Soil formation followed the synsedimentation model. Conditions for the stationary land use by humans in the floodplain were less optimal. In 3.4–2.1 ka cal year BP, alluvial sedimentation was less pronounced, and solonetz carbonated soils were formed, reflecting increased climate aridity and continentality. Humans returned to the floodplain area, but in 2.1–1.9 ka cal year BP, the flooding frequency increased, and in 1.9 ka cal year BP, the surface of the floodplain passes to function in a high floodplain. Thus, synsedimentation formation resumed, with colluvium discharge from the adjacent hills being the main source of material input.
Funder
Ministry of Science and Higher Education of the Russian Federation
the Committee for Science of the Ministry of Education and Science of the Kazakhstan Republic
Publisher
SAGE Publications
Subject
Paleontology,Earth-Surface Processes,Ecology,Archaeology,Global and Planetary Change
Cited by
1 articles.
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