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Differential Responses of Net Ecosystem Exchange of Carbon Dioxide to Light and Temperature between Spring and Neap Tides in Subtropical Mangrove Forests

机译:亚热带红树林森林二氧化碳净生态系统交换对春季和春季潮汐之间光和温度的响应

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摘要

The eddy flux data with field records of tidal water inundation depths of the year 2010 from two mangroves forests in southern China were analyzed to investigate the tidal effect on mangrove carbon cycle. We compared the net ecosystem exchange (NEE) and its responses to light and temperature, respectively, between spring tide and neap tide inundation periods. For the most time of the year 2010, higher daytime NEE values were found during spring tides than during neap tides at both study sites. Regression analysis of daytime NEE to photosynthetically active radiation (PAR) using the Landsberg model showed increased sensitivity of NEE to PAR with higher maximum photosynthetic rate during spring tides than neap tides. In contrast, the light compensation points acquired from the regression function of the Landsberg model were smaller during spring tides than neap tides in most months. The dependence of nighttime NEE on soil temperature was lower under spring tide than under neap tides. All these results above indicated that ecosystem carbon uptake rates of mangrove forests were strengthened, while ecosystem respirations were inhibited during spring tides in comparison with those during neap tides, which needs to be considered in modeling mangrove ecosystem carbon cycle under future sea level rise scenarios.
机译:分析了中国南方两种红树林的2010年潮汐水淹没深度的涡流数据,以研究潮汐对红树林碳循环的影响。我们比较了春季和潮汐淹没期之间的生态系统净交换量(NEE)及其对光和温度的响应。在2010年的大部分时间里,两个研究地点的春季潮汐日均NEE值均高于午潮时的NEE值。使用Landsberg模型对白天NEE对光合有效辐射(PAR)的回归分析显示,春季NEE对PAR的敏感性增加,春季潮汐期间的最大光合速率高于小潮。相比之下,在春季潮汐中,从Landsberg模型的回归函数获得的光补偿点在大多数月份中都比小浪潮小。春季潮汐下夜间NEE对土壤温度的依赖性低于潮汐下潮。以上所有这些结果表明,与潮汐潮相比,红潮期间红树林的生态系统碳吸收率得到增强,而生态系统呼吸受到抑制,这在未来海平面上升情景下对红树林生态系统碳循环进行建模时需要考虑。

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