Characteristics of Carbon Sink and the Influencing Factors in Ngoring Lake, Qinghai‐Tibet Plateau

青海湖 高原(数学) 水槽(地理) 碳汇 环境科学 自然地理学 地质学 地球科学 地理 气候变化 海洋学 地图学 数学 冰川 数学分析
作者
M. X. Wang,Lijuan Wen,Zhaoguo Li,Xianhong Meng,Dongsheng Su
出处
期刊:Journal Of Geophysical Research: Biogeosciences [Wiley]
卷期号:130 (6)
标识
DOI:10.1029/2024jg008550
摘要

Abstract Continuous annual carbon dioxide (CO 2 ) flux, encompassing ice‐covered periods, has been monitored in Ngoring Lake, the largest freshwater lake on the Qinghai‐Tibet Plateau (QTP). By utilizing continuous eddy system data, the characteristics and mechanisms influencing CO 2 flux at various temporal scales in the lake were investigated. Findings revealed that Ngoring Lake was predominantly acting as a carbon sink year‐round. The average annual CO 2 sink value was maximum in 2016, about −1.46 g C m −2 d −1 . There were two CO 2 absorption peaks in spring and autumn, respectively. The multi‐year average monthly mean CO 2 absorption peaks occurred in April (−1.70 g C m −2 d −1 ) and October (−1.75 g C m −2 d −1 ), respectively. These peaks were associated with the freeze‐thaw process and were caused by the mixing process due to water cooling. The continuous warming during the ice‐covered period led to a high‐water temperature, and the maximum value reached 6°C. In spring, mixing occurred upon ice melt, and the water temperature at 2 m depth decreased rapidly to 4°C because it was about 5°C higher than the air temperature. In autumn, cooling and mixing were induced by decreasing air and water temperatures alongside strong wind. These cooling processes facilitated significant CO 2 absorption. The CO 2 absorption process was controlled by wind speed, lake ice, lake mixing and stratification.
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