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生态学杂志 ›› 2020, Vol. 39 ›› Issue (8): 2501-2508.

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六盘山朝那湫湖泊沉积物磁化率的环境指示意义

郁科科1,2,王乐1,盛恩国3,刘斌3,刘星星2,4,蓝江湖2,4*   

  1. 1宝鸡文理学院地理与环境学院陕西省灾害监测与机理模拟实验室, 陕西宝鸡 721013; 2中国科学院地球环境研究所黄土与第四纪地质国家重点实验室, 西安 710061;3遵义师范学院, 贵州遵义 563002;4中国科学院第四纪科学与全球变化卓越创新中心, 西安 710061)
  • 出版日期:2020-08-10 发布日期:2021-02-10

Environmental implication of magnetic susceptibility of lacustrine sediments in Lake Chaonaqiu, Liupan Mountain.

YU Ke-ke1,2, WANG Le1, SHENG En-guo3, LIU Bin3, LIU Xing-xing2,4, LAN Jiang-hu2,4*   

  1. (1Key Laboratory of Disaster Monitoring and Mechanism Simulating of Shaanxi Province, Baoji University of Arts and Sciences, Baoji 721013, Shaanxi, China; 2State Key Laboratory of Loess and Quaternary Geology, Institute of Earth Environment, Chinese Academy of Sciences, Xi’an 710061, China; 3Zunyi Normal College, Zunyi 563002, Guizhou, China; 4Center for Excellence in Quaternary Science and Global Change, Chinese Academy of Sciences, Xi’an 710061, China).
  • Online:2020-08-10 Published:2021-02-10

摘要: 在古环境研究中,湖泊沉积物磁化率的环境指示意义通常被解释为:磁化率升高指示流域内侵蚀和径流搬运能力增强,间接反映降水较多,气候湿润;磁化率降低指示流域内侵蚀和径流搬运能力减弱,间接反映降水较少,气候干旱。本文结合多代用指标(粒度、TOC、C/N等)指示的环境变化信息,对六盘山朝那湫湖泊沉积物磁化率的环境指示意义进行综合判别。结果显示:朝那湫湖泊沉积物磁化率能够指示流域降水变化历史,且与邻近地区树轮等高分辨率气候记录有良好的对比关系,表明本文重建的结果可靠。同时,本文也揭示了湖泊沉积物磁化率不同以往研究的特殊环境指示意义:磁化率升高指示流域内侵蚀和径流搬运能力减弱,反映降水较多,气候湿润;磁化率降低指示流域内侵蚀和径流搬运能力增强,反映降水较少,气候干旱。这主要是由流域基岩成分、植被覆盖和雨型决定的。由于湖泊沉积环境和过程的复杂性,沉积物磁化率的环境指示意义具有多解性。因此,在不同的湖泊沉积研究中,应充分考虑影响磁化率的各种因素,并结合其他多种代用指标进行综合辨识,方可得出可靠结论。

关键词: 种植年限, 线虫群落, 微生物群落, 多样性指数, 六盘山, 朝那湫, 磁化率, 环境意义

Abstract: In the research of paleoclimate of lacustrine sediments, higher magnetic susceptibility (MS) value indicates stronger erosion and load capacity of surface runoff, and infects more precipitation and humid climate indirectly. On the contrary, lower MS value indicates weaker erosion and load capacity of surface runoff, and infects less precipitation and arid climate indirectly. We identified the environmental indication of MS using multiproxy indices retrieved from sediments in Lake Chaonaqiu in Loess Plateau. The results correlated well with the records from tree-rings in neighboring regions, and showed that higher MS values indicate weaker erosion and load capacity of surface runoff and that lower MS values indicate stronger erosion and load capacity of surface runoff. The environmental indication significance of lake sediment MS is multi-solvent, due to the complex sedimentary environment. This is mainly determined by the bedrock, vegetation cover, and rainfall pattern of the basin. Therefore, various factors affecting MS should be fully considered in different lakes and combined with other indicators for comprehensive identification.

Key words: diversity index, nematode community, cultivation duration, microbial community, Liupan Mountain, Lake Chaonaqiu, magnetic susceptibility, environmental implication.