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河流老化碳的输出受水流路径深度和停留时间的驱动。

Riverine Export of Aged Carbon Driven by Flow Path Depth and Residence Time.

机构信息

Environmental Program, Colorado College , Colorado Springs, Colorado 80903, United States.

School of Environmental and Forest Sciences, University of Washington , Seattle, Washington 98195, United States.

出版信息

Environ Sci Technol. 2018 Feb 6;52(3):1028-1035. doi: 10.1021/acs.est.7b04717. Epub 2018 Jan 24.

Abstract

The flux of terrestrial C to rivers has increased relative to preindustrial levels, a fraction of which is aged dissolved organic C (DOC). In rivers, C is stored in sediments, exported to the ocean, or (bio)chemically processed and released as CO. Disturbance changes land cover and hydrology, shifting potential sources and processing of DOC. To investigate the likely sources of aged DOC, we analyzed radiocarbon ages, chemical, and spectral properties of DOC and major ions from 19 rivers draining the coterminous U.S. and Arctic. DOC optics indicated that the majority is exported as aromatic, high molecular weight, modern molecules while aged DOC tended to consist of smaller, microbial degradation products. Aged DOC exports, observed regularly in arid basins and during base flow in arctic rivers, are associated with higher proportion of mineral weathering products, suggesting deeper flows paths. These patterns also indicate potential for production of microbial byproducts as DOC ages in soil and water with longer periods of time between production and transport. Thus, changes in hydrology associated with landscape alteration (e.g., tilling or shifting climates) that can result in deeper flow paths or longer residence times will likely lead to a greater proportion of aged carbon in riverine exports.

摘要

相对于工业化前水平,陆地 C 向河流的通量增加,其中一部分是老化的溶解有机碳 (DOC)。在河流中,C 储存在沉积物中,被输送到海洋,或(生物)化学处理并释放为 CO。干扰会改变土地覆盖和水文条件,从而改变 DOC 的潜在来源和处理方式。为了研究老化 DOC 的可能来源,我们分析了来自美国大陆和北极的 19 条河流的 DOC 和主要离子的放射性碳年龄、化学和光谱特性。DOC 的光学性质表明,大部分 DOC 是以芳香族、高分子量、现代分子的形式输出的,而老化的 DOC 则倾向于由更小的、微生物降解产物组成。在干旱流域和北极河流的基流期间,通常会观察到老化的 DOC 输出,这与更多的矿物风化产物有关,表明有更深的水流路径。这些模式还表明,随着时间的推移,DOC 在土壤和水中的老化过程中,可能会产生微生物副产物,因为生产和运输之间的时间间隔较长。因此,与景观改变(例如耕作或气候变化)相关的水文变化,可能会导致更深的水流路径或更长的停留时间,从而导致河流输出中老化碳的比例增加。

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