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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Impacts of Holocene and modern sea-level changes on estuarine mangroves from northeastern Brazil
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Impacts of Holocene and modern sea-level changes on estuarine mangroves from northeastern Brazil

机译:全新世和现代海平面变化对巴西东北河口河口红树林的影响

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Projections of the impacts of modern Relative Sea Level (RSL) rise on estuarine mangroves should be supported by coastal topographic data and records of mangrove dynamics under past RSL change. This work identified inland and seaward mangrove migrations along the Jucurucu River (Bahia, Northeastern Brazil), during the Holocene based on sedimentary features, palynological and geochemical (delta C-13, delta N-15, C/N) data integrated with digital elevation models. During the Middle Holocene, in response to RSL rise, the estuary saw mangrove forest establish up to ~37 km inland. RSL stood between -1.4 (+0.36/-2.2 m) and +1 (2.19/0.2 m) around 7400 cal yr BP, and rose to a highest position of +3.25 (4.22/2.45 m) reached around 5350 cal yr BP. That marine incursion caused the inland replacement of freshwater vegetation by mangroves on tidal flats. Since then, the estuary experienced RSL fall, reducing inland tidal water salinity towards the Late Holocene, making that the mangroves were replaced by freshwater floodplain vegetation. Today, in the seaward part of the estuary near its mouth, mangroves occupy an area of ~10 km(2) along tidal channels. Considering a RSL rise of 98 cm up to the end of the 21(st) century, at a rate significantly higher than that of Middle Holocene RSL rise (1.5 mm/yr) and fall (0.6 mm/yr), the current mangrove substrates are expected to drown and/or eroded near the coast, while new mangroves may establish inland, at topographically higher tidal flats in nowadays freshwater-tidal zones. Mangrove area could expand over 13 km(2) of coastal and flood plain. Following the same interaction between RSL/climate changes and Holocene mangrove dynamics, such upstream mangrove migration may be attenuated or intensified by changes in fluvial discharge. (c) 2019 John Wiley & Sons, Ltd.
机译:在过去的RSL变化下,应该支持现代相对海平面(RSL)对河口红树林对雌曲调的影响的影响。这项工作确定了沿着JucuRucu河(Bahia,Brazextew Brazextern)的内陆和海洋红树林迁移,基于沉积特征,腭介质和地球化学(Delta C-13,Delta N-15,C / N)数据集成了数字高度楷模。在中东地区,在回应RSL上涨期间,河口海湾红树林建立了大约37公里。 RSL介于-1.4(+ 0.36 / -2.2 m)之间,+1(2.19 / 0.2米)约为7400 CAL YR BP,并升至+3.25(4.22 / 2.45米)的最高位置达到5350卢比,达到5350卢比。该海洋侵染导致内陆在潮汐平面上用红树林更换淡水植被。从那时起,河口经历了RSL跌倒,减少了对全新世的内陆潮水盐度,使得红树林被淡水泛洪叶植被所取代。今天,在河口附近的河口的海口部分,红树林沿着潮汐渠道占据〜10公里(2)的面积。考虑到21世纪末98厘米的RSL上升至21世纪末,以明显高于中全新世元(1.5毫米/年)和下跌(0.6毫米/年),目前的红树林基板预计将在海岸附近淹死和/或侵蚀,而新的红树林可能在现在在淡水潮汐区的地形上较高的潮汐公寓。红树林区可以扩大超过13公里(2)个沿海和洪水平原。在RSL /气候变化和全新世红树林动态之间相同的相互作用之后,可以通过氟尿排放的变化来衰减或加强这种上游红树林迁移。 (c)2019 John Wiley&Sons,Ltd。

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