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基于光谱探针端元混合分析追踪夏季风暴事件中颗粒有机物来源的演化。

Tracking the evolution of particulate organic matter sources during summer storm events via end-member mixing analysis based on spectroscopic proxies.

机构信息

Department of Environment and Energy, Sejong University, Seoul, 05006, South Korea.

K-Water Institute, 1689 Beon-gil 125, Yuseong-daero, Yuseong-gu, Daejeon, 34045, South Korea.

出版信息

Chemosphere. 2020 Aug;252:126445. doi: 10.1016/j.chemosphere.2020.126445. Epub 2020 Mar 11.

Abstract

Despite the growing attention to the effects of hydrological precipitation on organic carbon export along the continuum land-river-ocean, limited effort has been made to understand the export and the reactivity of particulate organic carbon (POC) compared to those of dissolved organic carbon (DOC). Yet, further understanding of the controlling mechanisms on the export of particulate organic matter (POM) from terrestrial systems is fundamental. In this study, we assessed the temporal changes of the source contributions to riverine POM in two adjacent rivers of the same watershed during two summer storm events, which included the early and the late events, using end-member mixing analysis (EMMA) based on spectroscopic proxies. The EMMA showed relatively high contributions of terrestrial materials to the riverine POM for both rivers during the early summer storm event. However, this trend did not persist until the late summer storm event, which presented the decreased contributions of the terrestrial sources and less dynamic changes in the source distributions compared to those observed in the early summer rain event. These results demonstrate the combined impacts of the land use/surrounding area, the hydrology, and the intra-seasonal variations on the dominant riverine POM sources. This study provides an interesting insight into the importance of the intense hydrological events on the export of the terrestrial OM and further on the potential modification of the existing carbon mass balance along the continuum land-river-ocean.

摘要

尽管人们越来越关注水文降水对沿陆地-河流-海洋连续体的有机碳输出的影响,但与溶解有机碳(DOC)相比,人们对颗粒有机碳(POC)的输出和反应性的研究仍很有限。然而,进一步了解控制陆地系统中颗粒有机质(POM)输出的机制是至关重要的。在这项研究中,我们使用基于光谱探针的端元混合分析(EMMA),评估了同一流域两条相邻河流在两次夏季风暴事件(包括早期和晚期事件)中,颗粒有机质的源贡献的时间变化。EMMA 显示,在夏初风暴事件期间,两条河流的颗粒有机质中都有相对较高的陆地物质贡献。然而,这种趋势并没有持续到夏末风暴事件,与夏初降雨事件相比,陆地源的贡献减少,源分布的变化也较少。这些结果表明,土地利用/周边地区、水文学和季节内变化对主要河流颗粒有机质源的综合影响。本研究深入了解了强水文事件对陆地有机物质输出的重要性,以及对沿陆地-河流-海洋连续体的现有碳质量平衡的潜在改变。

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