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Origin and evolution of tidal depressions in a tidal flat and their role in carbon sequestration in the Baha Blanca Estuary (Argentina)

机译:潮汐平面潮洼地的起源和演变及其在巴哈尔布兰卡口(阿根廷)中的碳封存中的作用

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Tidal flats play an essential role in the global carbon cycle. In-tertidal environments are very dynamic and have several erosive landforms such as tidal depressions (TD), although TD genesis is still poorly understood. The tidal flats of the Baha Blanca Estuary (BBE) are ideal for TD's study since they are hardly altered by human activity. In this site is possible to distinguish a gradation from a non- bioturbed zone to one dominated by erosive landforms. This preliminary study aims to determine the origin and evolution of TD in tidal flats and evaluate their role as carbon sinks based on an integrated sedimentological and geomorphological study. We found that the origin of TD in siliciclastic tidal flat is associated with the activity of the Neo-helice granulata crabs. N. granulata selects finer particles and organic matter to build burrows; also alter the physical properties of the sediment. The loss of sediment structure by the increase in the density of excavations added to the tidal dynamics favour the burrows's collapse giving rise to the tidal depression. Tidal dynamics affect sediment stability by exerting a hydrostatic pressure on the burrow when flooding and emptying of burrows. The effect of N. granulata in the sediment record is clearly identifies by an increase water content with a decrease in the sediment density. Furthermore, it is possible to identify changes in the grain size distribution curves of the typical tidal flat facies as a second mode at 10 μm. These features can be recognised and used as a tool to identify TD in the geological record. TD with occluded crab burrows can be important organic carbon sinks due to the organic matter fixation under suitable conditions that delay its decomposition. Due to the large number of TD (of the order of 35 million), we estimated that the C sequestration by these land-forms might be of the order 1.8 × 10~(-3) Gtn without considering that may be stored directly on the tidal flats themselves.
机译:潮汐公寓在全球碳循环中起重要作用。型内部环境非常动态,并且具有若干侵蚀地貌,如潮凹陷(TD),尽管TD Genesis仍然明白。 Baha Blanca Etgara(BBE)的潮汐公寓是TD学习的理想选择,因为它们几乎没有被人类活动改变。在该网站中,可以将非生物矛盾区的渐变区分开于以腐蚀地位为主的一个。该初步研究旨在确定TD在潮汐平面中TD的起源和演变,并根据综合沉积物和地貌研究评估其作为碳汇的作用。我们发现,硅质潮汐平面中Td的起源与新立体甘蓝蟹的活动有关。 N.Granulata选择更精细的颗粒和有机物质以构建洞穴;还改变沉积物的物理性质。通过增加潮汐动力学的沉积物密度增加的沉积物结构丧失,有利于洞穴的崩塌引起潮抑郁症。潮汐动力学在挖出洞穴时施加静电压力,潮汐动力学会影响沉积物稳定性。 N.Granulata在沉积物记录中的效果通过增加沉积物密度降低的水含量显然鉴定。此外,可以在10μm的第二模式中识别典型的潮汐平面的晶粒尺寸分布曲线的变化。可以识别这些特征并用作地质记录中识别TD的工具。由于在延迟其分解的合适条件下,具有闭塞蟹挖掘机的TD可以是重要的有机碳汇。由于大量TD(约3500万令),我们估计这些土地形式的C封存可能是1.8×10〜(-3)GTN的订单,而不考虑可以直接存储在潮汐公寓本身。

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    《Oceanographic Literature Review》 |2021年第5期|1014-1015|共2页
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