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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Insights into estuarine benthic dissolved organic carbon (DOC) dynamics using δ~(13)C-DOC values, phospholipid fatty acids and dissolved organic nutrient fluxes
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Insights into estuarine benthic dissolved organic carbon (DOC) dynamics using δ~(13)C-DOC values, phospholipid fatty acids and dissolved organic nutrient fluxes

机译:利用δ〜(13)C-DOC值,磷脂脂肪酸和溶解的有机养分通量洞察河口底栖溶解有机碳(DOC)动力学

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Benthic dissolved organic carbon (DOC) flux rates and changes in DOC isotope ratios, along with nutrient fluxes, phospholipid fatty acids concentration and carbon isotope ratios were measured in productive estuarine sediments over a diel cycle to determine the mechanisms driving benthic-pelagic coupling of DOC. There was uptake of DOC during the dark and efflux during the light at all sites. DOC uptake rates were related to benthic respiration (dark O_2 uptake) and effluxes were coupled to the trophic status (ratio of production to respiration) of the sediments. Highest uptake and efflux rates were observed at two high nutrient concentration sites. The DOC:DON ratio of water column dissolved organic matter (DOM) decreased during the dark and increased during the light indicating preferential uptake and release of carbon rich dissolved organic matter. The calculated carbon isotope ratio of the DOC taken up by the benthos was significantly more depleted than the bulk water column DOC pool, suggesting preferential uptake of selected components of the water column DOC pool. Generally the isotope ratio of the DOC released during the light was more enriched than that taken up during the dark, which suggests that the benthos has the potential to significantly alter the estuarine DOC pool. Uptake and efflux were coupled to respiration and algal grazing/mineralization, therefore increased nutrient loading may shift the composition of the estuarine DOC pool through changes in the magnitude of benthic DOC fluxes. A combination of biological (diel shifts in DOC production and consumption) and abiotic processes (flocculation) appear to be driving the observed benthic DOC dynamics at the study sites. This study was the first to measure carbon isotopic changes in the water column DOC pool due to benthic processes, and shows that the benthos can alter the estuarine DOC pool through diel differences in DOC uptake and efflux.
机译:在diel周期内测量生产河口沉积物中底栖溶解有机碳(DOC)的通量速率和DOC同位素比的变化以及营养通量,磷脂脂肪酸浓度和碳同位素比,以确定驱动DOC底栖-上浮耦合的机制。在所有地点,在黑暗中吸收DOC,在黑暗中吸收光。 DOC的吸收速率与底栖呼吸有关(暗的O_2吸收),而外排与沉积物的营养状态(生产与呼吸的比率)相关。在两个高养分浓度位点观察到最高的吸收和外排率。水柱溶解有机物(DOM)的DOC:DON比值在黑暗中降低,而在光亮期间则增加,表明富含碳的溶解有机物优先吸收和释放。经计算,底栖生物吸收的DOC的碳同位素比比散装水柱DOC池显着减少,这表明优先吸收了水柱DOC池的选定成分。通常,在光下释放的DOC的同位素比比在黑暗中吸收的更富,这表明底栖生物有可能显着改变河口DOC库。吸收和外排与呼吸作用和藻类放牧/矿化作用有关,因此增加的养分负荷可能通过改变底栖DOC通量的大小而改变河口DOC库的组成。生物学(DOC生产和消费的迪尔转变)和非生物过程(絮凝)的结合似乎正在推动研究地点观测到的底栖DOC动态。这项研究是第一个测量由于底栖过程而引起的水柱DOC池中碳同位素变化的研究,结果表明,底栖生物可以通过DOC吸收和流出的diel差异来改变河口DOC池。

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