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New insights into the rote of lake sediments in understanding watershed non-point source phosphorus pollution

机译:了解湖泊沉积物的新见解,了解流域非点源磷污染

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摘要

A deep understanding of the relationship between watershed non-point source (NPS) pollution and lake total phosphorus (TP) accumulation is the basis of watershed-lake environmental management and ecological reconstruction, in which the acquisition of long-term NPS P and lake TP data over corresponding temporal and spatial scales seems to be the key issue. In this study, three typical sub-basins within Hongze Lake were selected as study sites. The sediment TP concentrations were designated as the lake indicator to relate with the NPS P loads, and the role of sediment in representing watershed NPS pollution was quantitatively analyzed. The results showed that, first, a notable fluctuation tendency in NPS P loads, which was largely influenced by policy, was found for all three sub-basins. Second, the deposition rate for three sediment cores was approximately 0.40 cm per year, with 13 cm cores reflecting the period since 1990. Third, the sediment is a faithful recorder of watershed NPS P pollution and lake nutrient enrichment. The correlation coefficient (r) between watershed NPS P loads and lake sediment TP concentrations showed notable differences when each watershed was considered separately. In particular, an ideal relationship was found in Basins 1 and 2, especially in the bottom 7 and 8 cm of the sediment cores, in whichrexceeded 0.8. This showed that sediment can be an effective indicator of NPS P pollution during certain periods, such as 1990 - 2002, and diverse roles can be attributed to land-use/cover change and lake resuspension conditions. In addition, the weakest relationship existed in the No. 3 watershed, largely due to higher rainfall amounts compared with other two watersheds. For all the watersheds, lake sediment is a suitable indicator of watershed NPS P pollution over certain temporal and spatial scales.
机译:深入了解流域非点源(NPS)污染和湖泊总磷(TP)积累的关系是流域 - 湖环境管理和生态重建的基础,其中收购了长期NPS P和TP相应的时间和空间尺度上的数据似乎是关键问题。在这项研究中,洪泽湖中的三个典型次池被选为学习遗址。将沉积物TP浓度指定为湖泊指示器与NPS P负载相关,并且定量分析了沉积物代表流域NPS污染的作用。结果表明,对于所有三个子盆地,首先发现了基本受政策影响的NPS P负荷的显着波动趋势。其次,三个沉积物核心的沉积速率每年约为0.40厘米,重13厘米反映了自1990年以来的时期。第三,沉积物是流域NPS P污染和湖泊养分富集的忠实记录器。水中NPS P负载和湖泊沉积物TP浓度之间的相关系数(R)显示出各种流域分别考虑时显着差异。特别地,在盆地1和2中发现了理想的关系,特别是在沉积物芯的底部7和8cm的底部7和8cm中,在其中的0.8中。这表明沉积物可以是在某些时期内的NPS P污染的有效指标,例如1990 - 2002年,各种角色可归因于土地使用/覆盖变化和湖泊重新悬浮条件。此外,与其他两分水岭相比,3分水岭中最弱的关系较大,主要是由于较高的降雨量。对于所有流域,湖泊沉积物是各个时间和空间尺度的流域NPS P污染的合适指标。

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  • 来源
    《Environmental forensics》 |2020年第4期|334-350|共17页
  • 作者单位

    Chinese Acad Sci Inst Geog & Limnol Key Lab Watershed Geog Sci Nanjing Peoples R China|Chinese Acad Sci Inst Soil Sci State Key Lab Soil & Sustainable Agr Nanjing Peoples R China;

    Chinese Acad Sci Inst Geog & Limnol Key Lab Watershed Geog Sci Nanjing Peoples R China;

    Chinese Acad Sci Inst Geog & Limnol Key Lab Watershed Geog Sci Nanjing Peoples R China;

    Jiangsu Inst Land Surveying & Planning Jiangsu Prov Dept Nat Resources Nanjing Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Non-point source pollution; phosphorus; spatial and temporal tendency; Hongze Lake Basin;

    机译:非点源污染;磷;空间和时间趋势;洪泽湖盆地;

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