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首页> 外文期刊>Frontiers in Marine Science >Short-Term Dissolved Organic Carbon Dynamics Reflect Tidal, Water Management, and Precipitation Patterns in a Subtropical Estuary
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Short-Term Dissolved Organic Carbon Dynamics Reflect Tidal, Water Management, and Precipitation Patterns in a Subtropical Estuary

机译:短期溶解的有机碳动力学反映了亚热带河口的潮汐,水管理和降水模式。

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Estuaries significantly impact the global carbon cycle by regulating the exchange of organic matter, primarily in the form of dissolved organic carbon (DOC), between terrestrial and marine carbon pools. Estuarine DOC dynamics are complex as tides and other hydrological and climatic drivers can affect carbon fluxes on short and long time scales. While estuarine and coastal DOC dynamics have been well studied, variations on short time scales are less well constrained. Recent advancements in sonde technology enable autonomous in situ collection of high frequency DOC data using fluorescent dissolved organic matter (fDOM) as a proxy, dramatically improving our capacity to characterize rapid changes in DOC, even in remote ecosystems. This study utilizes high-frequency fDOM measurements to untangle rapid and complex hydrologic drivers of DOC in the Shark River estuary, the main drainage of Everglades National Park, Florida. Non-conservative mixing of fDOM along the salinity gradient suggested mangrove inputs accounted for 6% of the total DOC pool. Average changes in fDOM concentrations through individual tidal cycles ranged from less than 10% to greater than 50% and multi-day trends greater than 100% change in fDOM concentration were observed. Salinity and water level both inversely correlated to fDOM at sub-hourly and daily resolutions, while freshwater controls via precipitation and water management were observed at diel to monthly time-scales. In particular, the role of water management in rapidly shifting estuarine salinity gradients and DOC export regimes at sub-weekly time-scales was evident. Additionally, sub-hourly spikes in ebb-tide fDOM indicated rapid exchange of DOC between mangrove sediments and the river channel. DOC fluxes calculated from high-resolution fDOM measurements were compared to monthly DOC measurements with high-resolution fluxes considerably improving accuracy of fluxes (thereby constraining carbon budgets). This study provides a better understanding of short-term DOC dynamics and associated hydrological drivers and indicates the importance of high-frequency measurements to accurately constraining coastal carbon processes and budgets, particularly in coastal systems increasingly altered by hydrologic restoration and climate change.
机译:河口通过调节陆地和海洋碳库之间的有机物质交换,特别是溶解有机碳(DOC)的形式,对全球碳循环产生了重大影响。河口DOC动态非常复杂,因为潮汐和其他水文和气候驱动因素可能会在短期和长期范围内影响碳通量。尽管对河口和沿海DOC的动力学进行了很好的研究,但短时间尺度上的变化受到的约束较少。探空仪技术的最新进展使得可以使用荧光溶解有机物(fDOM)作为代理来自主地就地收集高频DOC数据,从而极大地提高了我们表征DOC快速变化(即使在偏远生态系统中)的能力。这项研究利用高频fDOM测量来解开鲨鱼河口(佛罗里达大沼泽国家公园的主要排水口)中DOC的快速而复杂的水文驱动因素。 fDOM沿盐度梯度的非保守混合表明,红树林投入量占总DOC库的6%。 fDOM浓度在各个潮汐周期中的平均变化范围从小于10%到大于50%,并且观察到多日趋势中fDOM浓度变化大于100%。在低于每小时和每天的分辨率下,盐度和水位均与fDOM呈反比关系,而通过降水和水管理进行的淡水控制在diel到每月的时间尺度上都可以观察到。特别是,在不到一周的时间范围内,水管理在快速变化的河口盐度梯度和DOC出口制度中的作用显而易见。此外,潮汐中fDOM亚小时的高峰表明红树林沉积物和河道之间DOC的快速交换。将高分辨率fDOM测量计算出的DOC通量与每月DOC测量与高分辨率通量进行比较,从而显着提高了通量的准确性(从而限制了碳预算)。这项研究更好地了解了短期DOC动力学及其相关的水文驱动因素,并指出了高频测量对准确限制沿海碳过程和预算的重要性,特别是在水文恢复和气候变化日益改变的沿海系统中。

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