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生态学杂志 ›› 2026, Vol. 45 ›› Issue (5): 1586-1594.doi: 10.13292/j.1000-4890.202605.018

• 研究报告 • 上一篇    下一篇

三江源不同植被类型土壤Hg的空间分布

张煜坤1,2,3,4,陈懂懂1,2,3,4,李奇1,2,3,4,贺福全1,2,3,4,张莉1,2,3,4,潘思辰1,2,3,4,赵亮1,2,3,4*   

  1. 1中国科学院西北高原生物研究所, 西宁 810008; 2中国科学院高原生物适应与进化重点实验室, 西宁 810008; 3中国科学院三江源国家公园研究院, 西宁 810008; 4青海三江源草地生态系统国家野外科学观测研究站, 西宁 810008)
  • 出版日期:2026-05-10 发布日期:2026-05-08

Spatial distribution of soil mercury in different vegetation types of Sanjiangyuan.

ZHANG Yukun1,2,3,4, CHEN Dongdong1,2,3,4, LI Qi1,2,3,4, HE Fuquan1,2,3,4, ZHANG Li1,2,3,4, PAN Sichen1,2,3,4, ZHAO Liang1,2,3,4*   

  1. (1Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining 810008, China; 2Key Laboratory of Plateau Adaptation and Evolution, Chinese Academy of Sciences, Xining 810008, China; 3Sanjiangyuan National Park Research Institute, Chinese Academy of Sciences, Xining 810008, China; 4Qinghai Sanjiangyuan Grassland Ecosystem National Field Scientific Observation and Research Station, Xining 810008, China).

  • Online:2026-05-10 Published:2026-05-08

摘要: 三江源的土壤质量对于青藏高原的生态环境具有重要影响。随着全球气候的变化和人类活动的加剧,生活垃圾排放、动物粪便和煤的燃烧及交通运输使得Hg含量增加,Hg污染已逐渐成为三江源范围内关注的问题。以三江源高寒草甸和高寒草原土壤中的Hg为研究对象,通过对Hg含量的测定,结合空间插值及相关性分析,研究了不同植被类型中土壤Hg的空间分布、影响因素。结果表明:三江源地区两种植被类型的土壤Hg含量存在显著差异并随土层深度的增加而降低,三江源西南部(0.056±0.013 mg·kg-1)和东南部(0.045±0.007 mg·kg-1)地区的Hg含量较高,北部(0.007±0.003 mg·kg-1)及西北部(0.016±0.001 mg·kg-1)地区Hg含量较低;高寒草甸的污染和潜在生态风险指数普遍高于高寒草原,大部分地区Hg含量较低且集中在土壤表层;年均降雨、海拔、土壤有机碳、土壤全氮、土壤微生物生物量碳、氮是影响两种植被类型土壤Hg含量的重要因素。综上所述,以玉树为代表的西南地区是三江源存在较高潜在生态风险的区域,高寒草甸对Hg的富集能力更强且潜在生态风险更高。本研究对于高海拔草地土壤Hg的治理和生态环境保护具有重要意义。


关键词: 高寒草甸, 高寒草原, 土壤有机碳, 土壤Hg, 空间分布

Abstract: Soil quality of the Sanjiangyuan has an important impact on ecological environment in Tibetan Plateau. With global climate change and intensified human activities, Hg pollution has gradually become a problem in the Sanjiangyuan, due to domestic waste emissions, animal faeces, coal combustion, and transport. The spatial distribution and influencing factors of soil Hg in alpine meadows and grasslands of the Sanjiangyuan were investigated by measuring Hg content, in combination with spatial interpolation and correlation analyses. The results showed that soil Hg contents of the two vegetation types in the Sanjiangyuan were significantly different and decreased with the increase of soil depth. Higher Hg contents were found in the southwestern (0.056±0.013 mg·kg-1) and southeastern (0.045±0.007 mg·kg-1) parts of the Sanjiangyuan, while lower Hg contents in the northern (0.007±0.003 mg·kg-1) and northwestern (0.016±0.001 mg·kg-1) regions. Pollution and potential ecological risk indices were generally higher in alpine meadows than in alpine grasslands. In most regions, Hg content was relatively low and was mainly concentrated in the surface layer. Mean annual rainfall, altitude, soil organic carbon, soil total nitrogen, soil microbial biomass carbon and nitrogen were the important factors affecting soil Hg contents in both vegetation types. In summary, the southwestern region, represented by Yushu, is an area of high potential ecological risk, and alpine meadows have a stronger enrichment capacity for Hg and higher potential ecological risk. This study is of great significance for the management of Hg and ecological environmental protection in high-altitude grasslands.


Key words: alpine meadow, alpine grassland, soil organic carbon, soil mercury, spatial distribution