Variability in benthic oxygen fluxes during the winter-spring transition in coastal sediments: an estimation by in situ micro-electrodes and laboratory mini-electrodes

Bruno Lansard , Christophe Rabouille , Delphine Massias
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引用次数: 22

Abstract

Two expeditions were achieved at the winter-spring transition in the Golfe de Fos (Mediterranean Sea) at a site situated at 21 m depth. An in situ autonomous oxygen profiler and laboratory oxygen mini-electrodes were used to measure the oxygen distribution in the sediments and calculate the diffusive oxygen fluxes. Clearer waters during the second expedition promoted a rapid shift from a net heterotrophic environment to a photosynthesis-dominated sediment. The diffusive exchange fluxes of oxygen through the sediment-water interface varied from an average consumption of 5.3 mmol m–2d–1 (February) to a net production of 12 mmol m–2 d–1 (March). At both periods, a large spatial heterogeneity was recorded by the different electrodes, with a larger difference between oxygen profiles when photosynthesis was active. This is probably indicative of a coupling between photosynthesis and respiration in hot spots located close to the photosynthetic organisms. The comparison between in situ micro-electrode profiles and laboratory mini-electrode measurements revealed a good agreement when respiration was dominant, but photosynthetic activity was not detected by the laboratory mini-electrode profiles.

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沿海沉积物冬春过渡期间底栖动物氧通量的变异性:原位微电极和实验室微型电极的估计
在冬春交替期间,在地中海的戈夫德福斯(Golfe de Fos)进行了两次探险,地点位于21米深。采用原位自主氧谱仪和实验室氧气微型电极测量了沉积物中的氧分布,并计算了扩散氧通量。在第二次考察期间,更清澈的海水促进了从净异养环境到以光合作用为主的沉积物的快速转变。通过沉积物-水界面的氧扩散交换通量从平均消耗5.3 mmol m-2 - 1(2月)到净产生12 mmol m-2 - 1(3月)不等。在这两个时期,不同电极记录的氧谱存在较大的空间异质性,光合作用活跃时氧谱差异较大。这可能表明光合作用和呼吸作用在靠近光合生物的热点区域之间存在耦合。当呼吸作用占主导地位时,原位微电极剖面与实验室微电极测量结果的比较显示出良好的一致性,但实验室微电极剖面未检测到光合作用活性。
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