索诺兰沙漠平原晚更新世和全新世古环境研究——基于化石花粉含量和地球化学分析

IF 2.9 Q2 GEOGRAPHY, PHYSICAL
B.A. Valle-Caro , C.I. Ortega-Rosas , T. Gámez , J.R. Vidal-Solano , D.M. Meza-Figueroa
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引用次数: 0

摘要

索诺兰沙漠第四纪花粉地球化学研究文献很少。在索诺拉沙漠平原的索诺拉f lix Gómez研究了两条沉积剖面:古土壤“La Cárcava”(深度335 cm)和“La Morita”(深度220 cm)覆盖了最新更新世和整个全新世。古环境代用分析(化石花粉、地球化学数据和放射性碳年龄)结果表明,在晚更新世的高降水和低温条件下,实际沙漠中出现了开放的森林植被(松属、栎属和禾本科)。从晚更新世到早全新世,温度升高和蒸发速率升高与热带荒漠植被的建立保持一致。在全新世早期恢复到湿润和凉爽的条件,林地植被类型为灌木林(松、栎和蕨类植物)。在全新世中晚期,记录了最热的条件,以草本植物为主(菊科和藜科)。最后,在最近的全新世(最近2500年),记录了与现在相似的条件(藜科、菊科、仙人掌科和豆科)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Late Pleistocene and Holocene paleoenvironments at Plains of Sonoran Desert, based on fossil pollen content and geochemical analysis

Late Pleistocene and Holocene paleoenvironments at Plains of Sonoran Desert, based on fossil pollen content and geochemical analysis
Quaternary pollen-geochemical based-studies in Sonoran Desert are poorly documented. Two sedimentary profiles were studied at Félix Gómez, Sonora in the Plains of Sonoran Desert: Paleosols “La Cárcava” (335 cm depth) and “La Morita” (220 cm depth) covers the latest Pleistocene and all Holocene. The results of paleoenvironmental proxy analysis (fossil pollen, geochemical data, and radiocarbon ages), show a variation in Late Pleistocene conditions with high precipitations and low temperatures leading to an open forest vegetation (Pinus sp., Quercus sp. and Poaceae) in the actual desert. From Late Pleistocene to Early Holocene increasing temperature and higher evaporation rates were constated with the establishment of tropical-desert vegetation. Recovering to wetter al cooler conditions appear in early Holocene with a woodland vegetation type-Chaparral (Pinus, Quercus and Pteridophytes). In the middle-late Holocene the hottest conditions were recorded, with mostly herbaceous plants (Asteraceae and Chenopodiaceae). Finally, in the Latest Holocene (last 2500 years) similar conditions to present days were documented (Chenopodiaceae, Asteraceae, Cactaceae and Fabaceae).
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来源期刊
Quaternary Science Advances
Quaternary Science Advances Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
4.00
自引率
13.30%
发文量
16
审稿时长
61 days
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