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Sea level and ground water table depth (WTD): A biogeochemical pacemaker for glacial-interglacial cycling

机译:海平面和地下水位深度(WTD):一种用于冰冰间循环的生物地球化学起搏器

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The role that changes in sea level have on potential carbon-climate feedbacks are discussed as a potential contributing mechanism for terminating glacial periods. Focus will be on coastal wetlands because these systems can be substantially altered by changing sea level and ground water table depth (WTD); in addition to being important moderators of the exchange of nutrients and energy between terrestrial and marine ecosystems. A hypothesis is outlined that describes how the release of carbon from formerly anaerobic wetland soils and sediments can influence climate when sea levels begin to decline. As ground WTD deepens and eventually recedes from the surface, coastal wetland basins may become isolated from their belowground source of water. With their primary source of base flow removed, coastal wetlands likely dried up, promoting decomposition of the carbon compounds buried in their sediments. Depending on the timing of basin isolation and the timing of decomposition, glacial sea level lows could have triggered a relatively large positive carbon feedback on climate warming, just at the time when a new interglacial period is about to begin. (C) 2016 Elsevier Ltd. All rights reserved.
机译:讨论了海平面变化对潜在碳气候反馈的作用,作为终止冰川期的潜在作用机制。重点将放在沿海湿地上,因为通过改变海平面和地下水位深度(WTD)可以大大改变这些系统;除了是陆地和海洋生态系统之间养分和能量交换的重要主持人。提出了一个假设,该假设描述了当海平面开始下降时,原先厌氧的湿地土壤和沉积物中的碳释放如何影响气候。随着地面WTD加深并最终从地表退缩,沿海湿地盆地可能会与其地下水源隔离。去除了基流的主要来源后,沿海湿地可能会干dried,从而促进了沉积在沉积物中的碳化合物的分解。取决于盆地隔离的时间和分解的时间,在新的冰期之间即将开始之际,冰川海平面的低点可能会触发相对较大的气候变暖正碳反馈。 (C)2016 Elsevier Ltd.保留所有权利。

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