Organic geochemical record of environmental changes in Lake Dianchi, China

被引:0
|
作者
Yongqiang Xiong
Fengchang Wu
Jidun Fang
Lifang Wang
Yun Li
Haiqing Liao
机构
[1] Chinese Academy of Sciences,State Key Laboratory of Organic Geochemistry, Guangzhou Institute of Geochemistry
[2] Chinese Research Academy of Environmental Sciences,State Environmental Protection Key Laboratory for Lake Pollution Control, Research Center of Lake Eco
[3] Chinese Academy of Sciences,Environment
来源
Journal of Paleolimnology | 2010年 / 44卷
关键词
Lacustrine sediments; Free lipids; Bound lipids; Human activity; Eutrophication; Lake Dianchi;
D O I
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中图分类号
学科分类号
摘要
In order to investigate the natural ecosystem of Lake Dianchi and to assess its anthropogenic impacts, a stratigraphic study of bulk and molecular compositions of organic matter was conducted using a 63-cm long sediment core. The results show that two apparent environmental changes occurred during the evolution of Lake Dianchi: (1) the first change occurred in the 43–63 cm sediment depth, and was revealed by the amount and the composition of organic matter in the stage. Natural changes were possibly major factors responsible for triggering the environmental change, but the influence of human activities could not be excluded. Subsequently, the lake entered into a relatively stable and oligotrophic stage, which maintained until 20-cm sediment depth. (2) Eutrophication started in the upper 20 cm depth. Human activities became a major factor influencing environmental changes in this stage. Vertical profiles of various organic geochemical variables in the upper 20-cm sediments show evidence that primary productivity of the lake increased progressively and that the lake started eutrophic. Especially in the uppermost 10 cm, notable excursions to less negative δ13Corg and δ15Ntotal and high TOC concentrations have recorded an abrupt change in the lacustrine environment, suggesting that the lake entered a hypereutrophic stage. In addition, enhancement of αβ-hopanes reflects the contribution of fossil fuels to the lake sediments.
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页码:217 / 231
页数:14
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