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长期以来,亚热带森林中溶解有机碳动态对环境变化的响应。

Long-term Trends of Dissolved Organic Carbon Dynamics in a Subtropical Forest Responding to Environmental Changes.

机构信息

State Key Laboratory of Pollution Control & Resource Reuse and School of Environment, Nanjing University, Nanjing 210023, Jiangsu, China.

Faculty of Environmental Sciences and Natural Resource Management, Norwegian University of Life Sciences, Box 5003, NO-1432 Ås, Norway.

出版信息

Environ Sci Technol. 2024 Jul 16;58(28):12420-12429. doi: 10.1021/acs.est.3c08262. Epub 2024 Jul 4.

Abstract

Dissolved organic carbon (DOC) dynamics are critical to carbon cycling in forest ecosystems and sensitive to global change. Our study, spanning from 2001 to 2020 in a headwater catchment in subtropical China, analyzed DOC and water chemistry of throughfall, litter leachate, soil waters at various depths, and streamwater. We focused on DOC transport through hydrological pathways and assessed the long-term trends in DOC dynamics amidst environmental and climatic changes. Our results showed that the annual DOC deposition via throughfall and stream outflow was 14.2 ± 2.2 and 1.87 ± 0.83 g C m year, respectively. Notably, there was a long-term declining trend in DOC deposition via throughfall (-0.195 mg C L year), attributed to reduced organic carbon emissions from clean air actions. Conversely, DOC concentrations in soil waters and stream waters showed increasing trends, primarily due to mitigated acid deposition. Moreover, elevated temperature and precipitation could partly explain the long-term rise in DOC leaching. These trends in DOC dynamics have significant implications for the stability of carbon sink in terrestrial, aquatic, and even oceanic ecosystems at regional scales.

摘要

溶解有机碳 (DOC) 动态变化对森林生态系统的碳循环至关重要,并且对全球变化敏感。我们的研究跨越 2001 年至 2020 年,在中国亚热带的一个源头流域,分析了穿透雨、凋落物淋溶、不同深度土壤水和溪流水中的 DOC 和水化学特性。我们重点研究了 DOC 通过水文途径的传输,并评估了在环境和气候变化背景下 DOC 动态的长期趋势。研究结果表明,穿透雨和溪流输出的年 DOC 沉积量分别为 14.2±2.2 和 1.87±0.83 g C m-2 year-1。值得注意的是,穿透雨的 DOC 沉积量呈现长期下降趋势(-0.195 mg C L-1 year-1),这归因于清洁空气行动减少了有机碳的排放。相比之下,土壤水和溪流水中的 DOC 浓度呈上升趋势,主要是由于酸沉降的缓解。此外,气温和降水的升高可能部分解释了 DOC 淋溶的长期上升。这些 DOC 动态变化对区域尺度上陆地、水生甚至海洋生态系统碳汇的稳定性具有重要意义。

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