高山流域粉尘养分流动性定量研究

IF 3.7 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Jeffrey R. Nielson, Janice Brahney
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引用次数: 0

摘要

沙尘有可能在高寒流域的营养动态中发挥重要作用,具有重要的生态意义。然而,关于沙尘营养物质如何在环境中循环以及哪些流域特征促进了沙尘对水质的影响,人们知之甚少。本研究探讨了灰尘沉积的营养物质的贡献,重点研究了一个高海拔长期生态研究地点,自2017年以来,该地点一直在持续收集灰尘样本。我们将观测到的粉尘营养成分,包括无机和有机氮和磷的组分,纳入了一个流行的水文模型——土壤和水评估工具,并对2019-2021年进行了模拟。通过比较有和没有沙尘养分输入的模拟,我们估计了沙尘沉积养分对单个流域过程的影响。结果表明,粉尘沉积的养分,特别是可溶性活性磷(SRP),对几种养分循环和运输途径有重要贡献。值得注意的是,沙尘对年流量SRP负荷的贡献高达19.3%(使月流量浓度增加10.9 μg L−1 ${\ mathm {L}}^{-1}$)。模型估算的空间分析显示了地形、土壤类型与沙尘养分循环和运输之间的关系。在坡度较低、含水土壤较少的集水区,其他自然动员过程可能受到限制,对沙尘养分贡献最大。这种比较建模方法强调了在流域模型中包括沙尘营养物的重要性,特别是在少营养系统中,并且有可能在其他地方验证这些发现,并确定流域特征如何减轻或加剧沙尘沉积对山地淡水系统的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Quantifying Dust Nutrient Mobility Through an Alpine Watershed

Dust has the potential to play a significant role in the nutrient dynamics of alpine watersheds with important ecological implications. However, little is known about how dust nutrients circulate through the environment and which watershed characteristics facilitate dust impacts on water quality. This study explored the contribution of dust-deposited nutrients, focusing on a high-elevation Long Term Ecological Research site, where dust samples have been continuously collected since 2017. We incorporated observed dust nutrient compositions, including fractions of inorganic and organic nitrogen and phosphorus, into a popular hydrological model, the Soil and Water Assessment Tool, and ran simulations for 2019–2021. By comparing simulations with and without dust nutrient inputs, we estimated the impact of dust-deposited nutrients on individual watershed processes. Results revealed a significant contribution of dust-deposited nutrients, particularly soluble reactive phosphorus (SRP), to several nutrient cycling and transport pathways. Notably, dust contributed up to 19.3% of the SRP load in annual streamflow (increasing monthly streamflow concentration by up to 10.9 μg L 1 ${\mathrm{L}}^{-1}$ ). Spatial analysis of model estimates demonstrated a relationship between topography, soil type, and the cycling and transport of dust nutrients. The largest dust nutrient contributions were found in catchment areas with lower slope and less hydric soils, where other natural mobilization processes may be limited. This comparative modeling approach stresses the importance of including dust nutrients in watershed models, especially in oligotrophic systems, and has potential to validate these findings elsewhere and identify how watershed characteristics may either mollify or accentuate the impacts of dust deposition on mountain freshwater systems.

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来源期刊
Journal of Geophysical Research: Biogeosciences
Journal of Geophysical Research: Biogeosciences Earth and Planetary Sciences-Paleontology
CiteScore
6.60
自引率
5.40%
发文量
242
期刊介绍: JGR-Biogeosciences focuses on biogeosciences of the Earth system in the past, present, and future and the extension of this research to planetary studies. The emerging field of biogeosciences spans the intellectual interface between biology and the geosciences and attempts to understand the functions of the Earth system across multiple spatial and temporal scales. Studies in biogeosciences may use multiple lines of evidence drawn from diverse fields to gain a holistic understanding of terrestrial, freshwater, and marine ecosystems and extreme environments. Specific topics within the scope of the section include process-based theoretical, experimental, and field studies of biogeochemistry, biogeophysics, atmosphere-, land-, and ocean-ecosystem interactions, biomineralization, life in extreme environments, astrobiology, microbial processes, geomicrobiology, and evolutionary geobiology
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