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首页> 外文期刊>Polish Journal of Environmental Studies >Effect of Landscape Control on the Spatiotemporal Variability of Riverine Chromophoric Dissolved Organic Matter
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Effect of Landscape Control on the Spatiotemporal Variability of Riverine Chromophoric Dissolved Organic Matter

机译:景观控制对河生发色性有机质时空变异的影响

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An increase in the release of sewage discharge and stream ecosystem degradation is contributing to increased chromophoric dissolved organic matter (CDOM) in the Yinma River Watershed, which is a polluted watershed of the Songhua River. This study involves the spatiotemporal characterization of CDOM, CDOM-DOC relationships, and the influence of environmental factors (e.g., natural geographical and anthropogenic activities). Riverine waters showed higher a(CDOM) (335) and DOC concentrations in the spring and autumn than in the summer, and positive correlations were found between the a(CDOM) (335) and DOC concentrations in the summer (r = 0.90, 2-tailed, p0.01) and autumn (r = 0.58, 2-tailed, p0.01). Storms in May 2016 affected DOC flux from terrestrial ecosystems into the stream, and the CDOM-DOC relationship in the spring. Environmental factors such as water quality, precipitation, soil, gradient, land-use, and GDP could have affected the optical properties of CDOM (DOC). Gradient was correlated with the optical properties (2-tailed, p0.05) of CDOM. Types of land-use, pollutant discharge from point sources, and GDP (r = 0.58, 2-tailed, p0.05) affected the composition and creation of CDOM (DOC). The correlations among CDOM absorption parameters, gradient, and GDP were driven by samples that were related to regional terrestrial and anthropogenic pollutants. High loading of complex CDOM (DOC) inputs from anthropogenic activities combine with natural influences and constitute a challenge for CDOM (DOC)-derived pollution treatment, and treatment of pollution in the watershed.
机译:污水排放的增加和河流生态系统的退化,加剧了因马河流域(这是松花江被污染的流域)的发色溶解性有机物(CDOM)的增加。这项研究涉及CDOM的时空特征,CDOM-DOC关系以及环境因素的影响(例如自然地理和人为活动)。河流水域的春季和秋季的a(CDOM)(335)和DOC浓度均高于夏季,并且夏季的a(CDOM)(335)与DOC浓度之间呈正相关(r = 0.90,2 -尾,p <0.01)和秋天(r = 0.58,2-尾,p <0.01)。 2016年5月的风暴影响了从陆地生态系统到河流的DOC流量,以及春季的CDOM-DOC关系。水质,降水,土壤,坡度,土地利用和GDP等环境因素可能会影响CDOM(DOC)的光学特性。梯度与CDOM的光学性质(2尾,p <0.05)相关。土地利用类型,点源污染物排放和GDP(r = 0.58,2尾,p <0.05)影响了CDOM(DOC)的组成和产生。 CDOM吸收参数,梯度和GDP之间的相关性是由与区域陆地和人为污染物相关的样本驱动的。来自人为活动的复杂CDOM(DOC)输入的高负载与自然影响相结合,对CDOM(DOC)衍生的污染处理以及流域污染的处理构成了挑战。

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