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Potential fate of wetland soil carbon in a deltaic coastal wetland subjected to high relative sea level rise

机译:相对高海平面上升的三角洲沿海湿地中湿地土壤碳的潜在命运

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摘要

The fate of soil carbon in eroding coastal wetlands is of great concern, given the potential for a feedback loop from coastal wetland soil that would dramatically increase atmospheric CO_2 concentrations. The biogeochemical transformations and overall fate of this soil carbon upon coastal erosion were investigated through geophysical and spectroscopic analysis of soil and associated dissolved organic matter. Bay water and core sections were collected across transects encompassing both intact and eroded, submerged, sections of a coastal marsh in Barataria Bay, Louisiana. We noted: i) a vertical increase in carbon content, humification of organic matter, and decrease in biotic degradation with depth at all sites; ii) an erosion and ultimate collapse of the top ~ 0-20 cm of the intact marsh's edge into the bay water due to the undercutting caused by tidal/wave forces; iii) the loss of the stored carbon from the submerged site's top 10 cm layer; and iv) leaching, dilution, abiotic, and biotic degradation of the marsh carbon due to the exposure to the bay water. This erosion and degradation of wetland soil carbon stores demonstrates the potential impact of rising sea levels on the future fate of coastal wetland carbon and atmospheric CO_2 levels.
机译:考虑到沿海湿地土壤的反馈回路可能会显着增加大气中CO_2的浓度,因此侵蚀沿海湿地中土壤碳的命运备受关注。通过土壤和相关溶解有机物的地球物理和光谱分析,研究了海岸侵蚀后土壤碳的生物地球化学转化和整体命运。跨横断面收集了海湾的水和核心部分,包括路易斯安那州巴拉塔里亚湾的沿海沼泽的完整和受侵蚀的,淹没的部分。我们注意到:i)在所有地点,随着深度的增加,碳含量,有机质的增高和生物降解的垂直增加; ii)由于潮汐/波浪力造成的底切作用,完整沼泽的边缘的约0-20厘米侵蚀并最终塌陷到海湾水中; iii)淹没地点顶部10厘米的层中储存的碳损失; iv)由于暴露于海湾水中而导致沼泽碳的浸出,稀释,非生物和生物降解。湿地土壤碳储量的这种侵蚀和退化表明,海平面上升对沿海湿地碳和大气中CO_2未来命运的潜在影响。

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