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Environmental history recorded over the last 70 years in Bien Ho maar sediment, Central Highlands of Vietnam

机译:Environmental history recorded over the last 70 years in Bien Ho maar sediment, Central Highlands of Vietnam

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Global warming enhances atmospheric moisture loading and will likely affect the East-Asian monsoon system across Vietnam. The absence of a long written climate history from Vietnam creates a reliance on geological archives of past monsoon history and regional paleoenvironmental changes to provide a framework for evaluating current climatic trends. Bien Ho lake (14 degrees 03' N, 108 degrees 00'E) is a volcanic crater (i.e. maar) in Vietnam's Central Highlands that has been accumulating sediment since the Pleistocene. Field campaigns between 2016 and 2018 recovered an abundance of gravity and piston sediment cores extending to a depth of similar to 15 m, covering approximately the last 30 ka BP. The paleoenvironmental interpretation of Pleistocene and Holocene sediment requires knowledge of modern lacustrine and sedimentary conditions, as well as the origin and transport pathways of the catchment material. Here, we focus on a high-resolution sedimentological and geochemical reconstruction of the recent environmental history - from 1950 AD to the present - based on sediment cores from Bien Ho maar, in direct comparison with local and regional weather and historic records.The uppermost sedimentary record reflects a substantial anthropogenic influence such as deforestation, military use, crater breaching, dam and sill construction, and reforestation that strongly modified the maar's morphology and hydrology. A strong increase in sedimentation rate during the 1960-70s in Bien Ho cores coincided with U.S. military activities and water withdrawal. A breach in the maar's rim and the connection to a new external reservoir in 1983-1984 AD increased Bien Ho water level. Reforestation around most of Bien Ho's rim in the 1990s curbed erosion and sedimentation rate. Nutrient availability in Bien Ho declined in the past similar to 10 years after the installation of a concrete sill between Bien Ho and the reservoir to limit water exchange with the more nutrient-rich reservoir. This paper is a calibration study on modern sediment to provide an empirical basis for the interpretation of Bien Ho's deeper Holocene and pre-Holocene sedimentary record.

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