富营养化分层湖泊表层水体4年时间甲烷动态

IF 3.8 1区 地球科学 Q1 LIMNOLOGY
César Ordóñez, Alexandrine Massot, Tonya DelSontro, Timon Langenegger, Daphne Donis, Daniel F. McGinnis
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引用次数: 0

摘要

氧甲烷生产(OMP)的发生已被报道在许多水生生态系统。然而,由于缺乏限制OMP时空变异性的测量,其季节性动态和对全球甲烷排放的贡献仍然不确定。在本研究中,我们利用近4年收集的数据,采用三种模型估算了富营养化湖泊表层混合层()的净生产量/消耗量。这些模式使我们能够评估侧向贡献和地表通量的变异性。所有模式结果都显示正速率,这表明OMP在分层期间持续发生,并且通常是地表扩散排放的主要来源。在有月度数据的年份中,我们观察到在分层开始时的高发病率和在分层季节结束时的下降趋势是一致的。随着趋势和最近的发现一致,叶绿素a浓度和光照气候之间的相关性表明,光自养生物在生产中起作用。最后,利用同位素质量平衡模型,我们确定该湖泊的稳定碳同位素特征可能介于和之间,这与已发表的研究结果一致。显然,OMP可以是富营养化系统水生收支的一个重要组成部分,但可以随时间变化;因此,在评估OMP对水生排放的全球贡献时,特别是在经历富营养化或受到富营养化威胁的系统中,应考虑时间变异性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temporal methane dynamics in the surface waters of a stratified eutrophic lake over four years
The occurrence of oxic methane production (OMP) has been reported for numerous aquatic ecosystems. Its seasonal dynamics and contribution to global methane () emissions remains uncertain, however, due to the lack of measurements constraining the spatial and temporal variability of OMP. In this study, we used data collected over 4 yrs with three types of models to estimate the net production/consumption of () in the surface mixed layer of a eutrophic lake. These models allowed us to assess the lateral contribution and the surface fluxes' variability on estimations. All model results show positive rates suggesting that OMP occurs consistently during the stratified period and was often the dominant source of surface diffusive emissions. In years with monthly data, we observed a consistent pattern of high rates at the start of stratification and a decrease towards the end of the stratified season. Along with the trends and in agreement with recent findings, correlations between vs. Secchi depth, chlorophyll a concentrations and light climate suggest that photoautotrophs play a role in production. Finally, using an isotopic mass balance model, we determined that the stable carbon isotopic signature of in this lake was likely between and , which aligns with published work. Clearly, OMP can be a significant component of an aquatic budget of eutrophic systems, but can vary temporally; thus, temporal variability should be considered when assessing the global contribution of OMP to aquatic emissions, particularly in systems experiencing or threatened by eutrophication.
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来源期刊
Limnology and Oceanography
Limnology and Oceanography 地学-海洋学
CiteScore
8.80
自引率
6.70%
发文量
254
审稿时长
3 months
期刊介绍: Limnology and Oceanography (L&O; print ISSN 0024-3590, online ISSN 1939-5590) publishes original articles, including scholarly reviews, about all aspects of limnology and oceanography. The journal''s unifying theme is the understanding of aquatic systems. Submissions are judged on the originality of their data, interpretations, and ideas, and on the degree to which they can be generalized beyond the particular aquatic system examined. Laboratory and modeling studies must demonstrate relevance to field environments; typically this means that they are bolstered by substantial "real-world" data. Few purely theoretical or purely empirical papers are accepted for review.
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