中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
evaporativeenrichmentofstableisotopes18oanddinlakewaterandtherelationtolakelevelchangeoflakeqinghainortheasttibetanplateauofchina

文献类型:期刊论文

作者Wu Huawu2; Li Xiaoyan2; Li Jing1; Jiang Zhiyun2; Li Guangyong2; Liu Lei2
刊名journalofaridland
出版日期2015
卷号7期号:5页码:623
ISSN号1674-6767
英文摘要Stable isotopic compositions (δ~(18)O and δD) have been utilized as a useful indicator for evaluating the current and historical climatic and environmental changes. Therefore, it is vital to understand the relationship between the stable isotopic contents in lake water and the variations of lake level, particularly in Lake Qinghai, China. In this study, we analyzed the variations of isotope compositions (δ~(18)O, δD and d-excess) in lake water and precipitation by using the samples that were collected from Lake Qinghai region during the period from 2009 to 2012. The results showed that the average isotopic contents of δ~(18)O and δD in lake water were higher than those in precipitation, which were contrary to the variations of d-excess. The linear regression correlations between δ~(18)O and δD in lake water and precipitation showed that the local evaporative line (LEL) in lake water (δD=5.88δ~(18)O-2.41) deviated significantly from the local meteoric water line (LMWL) in precipitation (δD=8.26δ~(18)O+16.91), indicating that evaporative enrichment had a significant impact on isotopic contents in lake water. Moreover, we also quantified the E/I ratio (evaporation-to-input ratio) in Lake Qinghai based on the lake water isotopic enrichment model derived from the Rayleigh equation. The changes of E/I ratios (ranging from 0.29 to 0.36 between 2009 and 2012) clearly revealed the shifts of lake levels in Lake Qinghai in recent years. The average E/I ratio of 0.40 reflected that water budget in Lake Qinghai was positive, and consistent with the rising lake levels and the increasing lake areas in many lakes of the Tibetan Plateau. These findings provide some evidences for studying the hydrological balance or water budget by using δ~(18)O values of lake sedimentary materials and contribute to the reconstruction of paleolake water level and paleoclimate from an isotopic enrichment model in Lake Qinghai.
语种英语
源URL[http://ir.igsnrr.ac.cn/handle/311030/111734]  
专题中国科学院地理科学与资源研究所
作者单位1.中国科学院地理科学与资源研究所
2.北京师范大学
推荐引用方式
GB/T 7714
Wu Huawu,Li Xiaoyan,Li Jing,et al. evaporativeenrichmentofstableisotopes18oanddinlakewaterandtherelationtolakelevelchangeoflakeqinghainortheasttibetanplateauofchina[J]. journalofaridland,2015,7(5):623.
APA Wu Huawu,Li Xiaoyan,Li Jing,Jiang Zhiyun,Li Guangyong,&Liu Lei.(2015).evaporativeenrichmentofstableisotopes18oanddinlakewaterandtherelationtolakelevelchangeoflakeqinghainortheasttibetanplateauofchina.journalofaridland,7(5),623.
MLA Wu Huawu,et al."evaporativeenrichmentofstableisotopes18oanddinlakewaterandtherelationtolakelevelchangeoflakeqinghainortheasttibetanplateauofchina".journalofaridland 7.5(2015):623.

入库方式: OAI收割

来源:地理科学与资源研究所

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