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首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >Evolution of integrated lake status since the last deglaciation: A high-resolution sedimentary record from Lake Gonghai, Shanxi, China
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Evolution of integrated lake status since the last deglaciation: A high-resolution sedimentary record from Lake Gonghai, Shanxi, China

机译:自上次解读以来综合湖稳地位的演变:中国山西拱湖湖的高分辨率沉积记录

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摘要

Alpine lakes not only provide internationally important habitats for endangered species, they also play a crucial role in the regional water balance. Unfortunately, a rapid loss of alpine lakes in China has occurred in recent decades; however, intensive human activities, together with regional differences in the responses of lakes to climate change, has impeded our understanding of the contribution of climate change to the loss of these lakes. To better understand how alpine lakes will evolve with continuing global warming, we used the analysis of new sedimentary proxies from Lake Gonghai, an undisturbed alpine lake, together with a review of published records, to reconstruct variations in integrated lake status since the last deglaciation. From 14,660-11,890 cal. yr BP the lake was in the most unstable state, indicated by the highest amplitude fluctuations in lake level and the within lake environment. The lake status experienced clear millennial-scale changes. During the early and middle Holocene (11,890-3200 cal. yr BP), the most stable lake status occurred, consistent with the highest precipitation levels. Owing to the highest level of freshwater influx in the middle Holocene (8-5 ka), the lake water was the deepest and most acidic. At this time, the dense vegetation cover resulted in maximum catchment stability and the lowest level of soil erosion, and hence the lowest sediment accumulation rate. From 3200 cal. yr BP, decreasing mean annual precipitation resulted in a moderately stable lake status, a shallow water depth and more alkaline lake water. The sparse vegetation cover caused a dramatic increase in the erosion rate and hence in the sediment accumulation rate. We infer that variations in local humidity were the major control on the integrated lake status during the last similar to 14,600 cal. yr BP. With the anticipated progression of global warming, the status of the alpine lakes in the region may continue to deteriorate and appropriate mitigation strat
机译:高山湖泊不仅为濒危物种提供国际重要的栖息地,它们也在区域水平中发挥着至关重要的作用。遗憾的是,近几十年来,中国的高山湖泊迅速丧失;然而,密集的人类活动,以及湖泊对气候变化的答复的区域差异,已经阻碍了我们对气候变化对这些湖泊的损失的贡献的理解。为了更好地了解高山湖如何随着持续全球变暖的发展,我们利用了一个不受干扰的高山湖湖拱湖湖的新沉积代理商的分析,以及对公布的记录进行审查,以重建自上次解析以来综合湖稳地区的变化。从14,660-11,890 cal。 YR BP湖处于最不稳定的状态,由湖泊等级和湖泊环境中的最高幅度波动表示。湖状况经历了明确的千禧一代变化。在早期和中间全新世(11,890-3200 Cal。YR BP)中,最稳定的湖泊地位发生,符合最高的降水水平。由于中间全新世(8-5 ka)的最高水平淡水涌入,湖水是最深层和最酸性的。此时,密集的植被覆盖导致最大的集水稳定性和最低水平的土壤侵蚀,因此最低的沉积物积累率。从3200 cal。 YR BP,降低平均降水量,导致中度稳定的湖泊地位,浅水深度和更多碱性湖水。稀疏植被覆盖引起侵蚀率的显着增加,因此在沉积物积累率。我们推断出局部湿度的变化是在最后一个类似于14,600 Cal期间对综合湖状况的主要控制。 yr bp。随着全球变暖的预期进展,该地区高山湖泊的地位可能会继续恶化和适当的缓解波纹

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    Lanzhou Univ Key Lab West Chinas Environm Syst Minist Educ 222 South Tianshui Rd Lanzhou 730000 Gansu Peoples R China;

    Lanzhou Univ Key Lab West Chinas Environm Syst Minist Educ 222 South Tianshui Rd Lanzhou 730000 Gansu Peoples R China;

    Lanzhou Univ Key Lab West Chinas Environm Syst Minist Educ 222 South Tianshui Rd Lanzhou 730000 Gansu Peoples R China;

    Lanzhou Univ Key Lab West Chinas Environm Syst Minist Educ 222 South Tianshui Rd Lanzhou 730000 Gansu Peoples R China;

    Lanzhou Univ Key Lab West Chinas Environm Syst Minist Educ 222 South Tianshui Rd Lanzhou 730000 Gansu Peoples R China;

    Lanzhou Univ Key Lab West Chinas Environm Syst Minist Educ 222 South Tianshui Rd Lanzhou 730000 Gansu Peoples R China;

    Lanzhou Univ Key Lab West Chinas Environm Syst Minist Educ 222 South Tianshui Rd Lanzhou 730000 Gansu Peoples R China;

    Hebei Normal Univ Inst Nihewan Archaeol Res Coll Resources &

    Environm Shijiazhuang 050024 Hebei Peoples R China;

    Lanzhou Univ Key Lab West Chinas Environm Syst Minist Educ 222 South Tianshui Rd Lanzhou 730000 Gansu Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 古生物学;历史地质学、地层学;
  • 关键词

    Alpine lake; Climate change; East Asian summer monsoon; Local humidity;

    机译:高山湖;气候变化;东亚夏季季风;局部湿度;

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