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Oasis evolution processes and mechanisms in the lower reaches of Heihe River, Inner Mongolia, China since I ka ago

机译:自从我以前在中国内蒙古黑河下游的绿洲演化过程和机制

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摘要

Two major oases in the lower reaches of Heihe River, Inner Mongolia of China, the desertified ancient Juyanze oasis (AJO) and the modern Ejina oasis (MEO), experienced dramatic environmental changes and human migrations as documented in historic records. The processes and mechanisms of their evolution are the key for us to understand the environmental changes and human activities in this region, yet are still unclear. This study provides an evolution chronology of these two oases by analyzing the optical dating records from MEO and ~(14)C dating records from AJO and discusses their evolution mechanisms based on drainage network analysis and field investigations. The optical dating samples collected from aeolian sands below humus layers in Populus euphratica woodlands on MEO indicate that this oasis developed between 1.05 and 0.45 ka ago, while the ~(14)C dating samples collected from a number of dead P. euphratica trees from AJO consistently suggest that the complete desertification of AJO occurred before ~400 cal. a BP. These new dating results imply that the two oases evolved simultaneously but in opposite directions. That is, AJO desertified while MEO developed gradually in the last I ka. Climate change occurring over the last I ka in northern China cannot explain the opposite evolution directions of these two adjacent oases. The drainage network analysis based on digital elevation models (DEMs) and field observations and the dates (~0.5 ka) of the top lacustrine layer from GaxuNur Lake north of MEO suggest that the evolution of the two oases was mainly governed by Heihe River migration.
机译:黑河下游的两个主要绿洲,即中国内蒙古的沙漠化古巨人绿洲(​​AJO)和现代额济纳绿洲(MEO),经历了戏剧性的环境变化和人类迁徙,这在历史记录中已得到证明。它们演化的过程和机制是我们了解该区域环境变化和人类活动的关键,但仍不清楚。通过分析MEO的光学测年记录和AJO的〜(14)C测年记录,本研究提供了这两种绿洲的演化年代,并基于排水网络分析和野外调查探讨了它们的演化机制。从MEO胡杨林地腐殖质层以下的风沙中收集的光学测年样品表明,该绿洲在1.05至0.45 ka以前发育,而〜(14)C测年样品是从AJO的许多死胡杨树中采集的一贯认为,AJO的完全荒漠化发生在〜400 cal之前。 BP。这些新的测年结果表明,这两个绿洲同时演化,但方向相反。也就是说,AJO沙漠化,而MEO在最近的I ka中逐渐发展。在中国北方最后一个Ika发生的气候变化无法解释这两个相邻绿洲的相反演化方向。基于数字高程模型(DEMs)和野外观测以及MEO以北加须努尔湖顶湖层日期(〜0.5 ka)的排水网络分析表明,这两种绿洲的演化主要受黑河迁移的支配。

著录项

  • 来源
    《The holocene》 |2015年第3期|445-453|共9页
  • 作者单位

    Key Laboratory of Desert and Desertification, Cold and Arid Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou 730000, China;

    Department of Geography, University of California, Los Angeles, USA;

    Key Laboratory of Western China's Environmental System (Ministry of Education), Lanzhou University, China;

    Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, China;

    Key Laboratory of Western China's Environmental System (Ministry of Education), Lanzhou University, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ancient Juyanze oasis; drainage network; ~(14)C dating; modern Ejina oasis; oases evolution mechanisms; optical dating;

    机译:古老的Juyanze绿洲;排水网;〜(14)C约会;现代化的额济纳绿洲;绿洲演化机制;光学约会;

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