受蜿蜒河道迁移影响的洪泛区有机碳动态:加拿大安大略省朱砂河

Melissa Barrera, A. Ielpi
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摘要

洪泛平原是重要的有机碳(OC)储存地,河道的演变会改变有机物的迁移、埋藏和再加工,从而对流域 CO 2 预算产生连带影响。蜿蜒的河流具有大致可预测的河道平面演变模式,这为评估与特征迁移速度和洪泛区年龄相关的洪泛区 OC 预算提供了机会。然而,由于个别蜿蜒河流的地貌复杂,迄今为止对河道和 OC 动态之间关系的评估仍然有限。我们以位于北美东部北方森林的朱砂河(安大略省)为例,说明了与河道迁移相关的有机碳预算的演变情况。我们将河道中心线的摄影测量分析和动态时间扭曲与表土容重和 OC 分析相结合。我们发现,通过典型北方森林植被演替的发展,单位表面积 OC 储量和土壤发育的变化受到蜿蜒迁移的调节。我们的研究结果支持河曲迁移控制土壤发育、森林年龄和洪泛区 OC 预算的假设。我们期待我们的研究能为不同生物气候条件下的河流应用提供更广泛的信息--这种方法反过来可能有助于在气候或土地利用不断变化的背景下进行碳评估。
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Floodplain organic-carbon dynamics modulated by meandering-channel migration: Vermilion River, Ontario, Canada
Floodplains are important organic carbon (OC) storage sites, and the evolution of watercourses modulates the transport, burial, and reworking of organics with cascading effects on watershed CO 2 budgets. Meandering rivers have broadly predictable patterns of channel-planform evolution, providing an opportunity to assess floodplain OC budgets in relation to characteristic migration paces and floodplain ages. However, due to geomorphic complexities in individual meandering rivers, assessments of relationships between channel and OC dynamics have thus far remained limited. We illustrate evolving OC budgets in relation to channel migration in the Vermilion River (Ontario) located in the boreal forest of eastern North America. We combine photogrammetric analyses and dynamic time warping of channel centrelines with analysis of top-soil bulk density and OC. We found that variations of OC stock per unit surface area and soil development are modulated by meander migration through the development of typical boreal-forest vegetation successions. Our results support the hypothesis that meander migration controls soil development, forest age, and floodplain OC budgets. We anticipate our study to inform wider applications to rivers in different bioclimates - an approach that may in turn help carbon assessment in the context of changing climate or land use.
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