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Spatial and temporal CO2 exchanges measured by Eddy Covariance over a temperate intertidal flat and their relationships to net ecosystem production

机译:温带潮间带Eddy协方差测量的时空CO2交换及其与净生态系统产量的关系

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摘要

Measurements of carbon dioxide fluxes were performed over a temperate intertidal mudflat in southwestern France using the micrometeorological Eddy Covariance (EC) technique. EC measurements were carried out in two contrasting sites of the Arcachon flat during four periods and in three different seasons (autumn 2007, summer 2008, autumn 2008 and spring 2009). In addition, satellite images of the tidal flat at low tide were used to link the net ecosystem CO2 exchange (NEE) with the occupation of the mudflat by primary producers, particularly by Zostera noltii meadows. CO2 fluxes during the four deployments showed important spatial and temporal variations, with the flat rapidly shifting from sink to source with the tide. Absolute CO2 fluxes showed generally small negative (influx) and positive (efflux) values, with larger values up to −13 μmol m−2 s−1 for influxes and 19 μmol m−2 s−1 for effluxes. Low tide during the day was mostly associated with a net uptake of atmospheric CO2. In contrast, during immersion and during low tide at night, CO2 fluxes where positive, negative or close to zero, depending on the season and the site. During the autumn of 2007, at the innermost station with a patchy Zostera noltii bed (cover of 22 ± 14% in the wind direction of measurements), CO2 influx was −1.7 ± 1.7 μmol m−2 s−1 at low tide during the day, and the efflux was 2.7 ± 3.7 μmol m−2 s−1 at low tide during the night. A gross primary production (GPP) of 4.4 ± 4.1 μmol m−2 s−1 during emersion could be attributed to microphytobenthic communities. During the summer and autumn of 2008, at the central station with a dense eelgrass bed (92 ± 10%), CO2 uptakes at low tide during the day were −1.5 ± 1.2 and −0.9 ± 1.7 μmol m−2 s−1, respectively. Night time effluxes of CO2 were 1.0 ± 0.9 and 0.2 ± 1.1 μmol m−2 s−1 in summer and autumn, respectively, resulting in a GPP during emersion of 2.5 ± 1.5 and 1.1 ± 2.0 μmol m−2 s−1, respectively, attributed primarily to the seagrass community. At the same station in April 2009, before Zostera noltii started to grow, the CO2 uptake at low tide during the day was the highest (−2.7 ± 2.0 μmol m−2 s−1). Influxes of CO2 were also observed during immersion at the central station in spring and early autumn and were apparently related to phytoplankton blooms occurring at the mouth of the flat, followed by the advection of CO2-depleted water with the flooding tide. Although winter data as well as water carbon measurements would be necessary to determine a precise CO2 budget for the flat, our results suggest that tidal flat ecosystems are a modest contributor to the CO2 budget of the coastal ocean.
机译:使用微气象涡流协方差(EC)技术在法国西南部的温带潮间带滩涂上测量二氧化碳通量。 EC测量是在四个时期和三个不同的季节(2007年秋季,2008年夏季,2008年秋季和2009年春季)的两个地方进行的,分别在Arcachon平坦区进行。此外,利用退潮时的潮汐卫星图像将生态系统的净二氧化碳交换(NEE)与初级生产者,尤其是诺斯特罗氏菌(Zostera noltii)草甸对滩涂的占用联系起来。在这四个部署过程中,CO2通量显示出重要的时空变化,该平面随潮汐迅速从汇流向汇流。绝对CO2通量通常显示出较小的负(流入)值和正(流出)值,较大的值对于流入量为−13μmolm-2 s-1,对于流出量为19μmolm-2 s-1。白天的退潮主要与大气中二氧化碳的净吸收有关。相反,在浸没期间和夜间退潮期间,根据季节和地点的不同,CO2的流量为正,负或接近零。在2007年秋季,在最里面的站台上有斑驳的Nosterii斑oster(在测量的风向上覆盖率为22±14%),在退潮期间低潮时CO2流入量为-1.7±1.7μmolm-2 s-1。白天,夜间退潮时为2.7±3.7μmolm-2 s-1。萌芽期间的初级生产总值(GPP)为4.4±4.1μmolm-2 s-1,可归因于微植物底栖动物群落。在2008年夏季和秋季,在中央站有密集的鳗草床(92±10%),白天低潮时的CO2吸收为-1.5±1.2和-0.9±1.7μmolm-2 s-1,分别。在夏季和秋季,夜间的CO2夜间流出量分别为1.0±0.9和0.2±1.1μmolm-2 s-1,导致在萌芽期间的GPP分别为2.5±1.5和1.1±2.0μmolm-2 s-1 ,主要归因于海草群落。在2009年4月的同一站上,诺斯特菌(Zostera noltii)开始生长之前,白天低潮时的CO2吸收量最高(-2.7±2.0μmolm-2 s-1)。在春季和初秋的中央站浸没期间也观察到了CO2的涌入,这显然与平坦的河口发生浮游植物水华有关,随后随着洪水的潮汐使枯竭的CO2平流。尽管需要冬季数据以及水碳测量值来确定该单位的精确CO2预算,但我们的结果表明,潮滩生态系统是沿海海洋CO2预算的适度贡献者。

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