Reconstruction of Methane Emission Over the Past 9,100 Years From Varved Sediments in Lake Xiaolongwan, Northeastern China

甲烷 产甲烷 温室气体 环境科学 碳纤维 碳循环 碳同位素 瓦夫 缺氧水域 环境化学 总有机碳 δ13C 甲烷厌氧氧化 二氧化碳 有机质 甲烷排放 大气甲烷 水生生态系统 地质学 气候变化 水文学(农业) 溶解有机碳 大气科学 全球变暖 自然地理学 马尔 天然气 稳定同位素比值 低角膜缘 陆地生态系统
作者
楚天舒,Manman Xie,Qing‐Zeng Zhu,Wenbin Zhao,Yutao Sun,Guoqiang Chu,Qing Sun
出处
期刊:Journal Of Geophysical Research: Biogeosciences [Wiley]
卷期号:131 (5) 被引量:1
标识
DOI:10.1029/2025jg009564
摘要

Abstract Freshwater lakes have increasingly been recognized as a significant natural source of methane, a potent greenhouse gas contributing to current global warming. However, assessing methane emissions over longer timescales remains challenging. Methane‐derived carbon can be assimilated by aquatic plants through photosynthesis and later recorded in the carbon isotopic composition of their n ‐alkanes. Here, we present modern lake methane emissions and an estimation of methane production over the past 9.1 kyr from n ‐alkanes and their compound‐specific carbon isotope proxies in Maar Lake Xiaolongwan. Methane activity is high due to the decomposition of organic matter and methanogenesis under anoxic conditions in this dimictic lake. Methane production is about 0.87 mol m −2 day −1 in the hypolimnion, with an average δ 13 C value of −64.2‰. To estimate methane activity over the past 9.1 kyr, we calculated the carbon isotopic difference (Δδ 13 C S‐L ) between weighted short‐chain (C 19–21 ) and long‐chain (C 27–33 ) n ‐alkanes. We also applied a two‐endmember model to estimate the proportion of CH 4 ‐derived carbon assimilated by aquatic plants. Both Δδ 13 C S‐L and methane‐derived carbon show a rapid increase from 9.1 to 8.0 kyr BP, followed by fluctuations between 8.0 and 5.0 kyr BP; then, a quick rise from 5.0 to 4.0 kyr BP; and a decrease after 0.6 kyr BP. Methane activity over the past 9.1 kyr closely correlates with regional mean annual temperature and total nitrogen in lake sediments, both of which promote microbial methanogenesis. Natural CH 4 emissions from freshwater lakes might have contributed to the atmospheric CH 4 increase after 5.0 kyr BP.
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