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Drivers of cyanobacterial blooms in lakes and reservoirs in Jinan City, China

机译:中国济南市湖泊和水库的驾驶员绽放

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摘要

Cyanobacterial blooms are a serious issue and frequently occur in lakes and reservoirs. Understanding how topography and human activities affect cyanobacterial dominance and blooms can greatly enhance the success of restoration projects to reduce blooms. Therefore, in this study the dominant species of cyanobacteria were determined by calculating the break point of the cumulative dominance curve for multiple sites in Jinan, China. In addition, the key drivers affecting the dominant cyanobacteria species were identified by canonical correspondence analysis and correlations between topography, human activities and the key drivers of the dominant cyanobacteria were investigated using random forests analysis. Merismopedia glauca, Merismopedia tenuissima, Microcystis aeruginosa, Oscillatoria tenuis, Phormidium tenus and Raphidiopsis sinensia were determined to be the dominant species. The key drivers of cyanobacterial bloom development were total phosphorus (TP), ammonium nitrogen (NH_3-N), water temperature and total hardness. Topography and human activities were highly correlated with the key driving factors. The higher the altitude, the greater the effect of water temperature on the cyanobacteria community. In the area where sewage irrigation was present and a large amount of chemical fertiliser was used, total hardness had a greater effect on the cyanobacteria community. In areas where the population was more concentrated, TP and NH 3-N had greater effects on the cyanobacteria community.
机译:蓝藻绽放是一个严重的问题,经常发生在湖泊和水库中。了解地形和人类活动如何影响蓝杆菌的主导地位和盛开,可以大大提高修复项目的成功,以减少盛开。因此,在这项研究中,通过计算济南,中国济南多个地点的累积优势曲线的断裂点来确定蓝细菌的显性种。此外,通过随机森林分析研究了各种类律的对应分析和地形,人类活动与主要蓝藻的关键驱动器之间的规范对应分析和相关性的关键驱动器。 Merismopedia Glauca,Merismopedia Tenuissima,Microcystia Tenuis,oscillatia Tenuis,Phormidium Tenus和Raphidiopsis Sinensia被确定为主要的物种。蓝藻绽放开发的关键驱动器是总磷(TP),氮氮(NH_3-N),水温和总硬度。地形和人类活动与关键驾驶因素高度相关。高度越高,水温对蓝藻界的影响越大。在存在污水灌溉和使用大量化学肥料的地区中,总硬度对蓝藻群体产生了更大的影响。在人口更浓缩的地区,TP和NH 3-N对蓝藻界具有更大的影响。

著录项

  • 来源
    《Marine & freshwater research》 |2020年第5期|共10页
  • 作者单位

    College of Water Sciences Beijing Normal University 19 Xinjiekouwai Dajie Haidian District Beijing 100875 PR China;

    College of Water Sciences Beijing Normal University 19 Xinjiekouwai Dajie Haidian District Beijing 100875 PR China;

    College of Water Sciences Beijing Normal University 19 Xinjiekouwai Dajie Haidian District Beijing 100875 PR China;

    Beijing Hydrological Center Building 51 Beiwaxili Haidian District Beijing 100089 PR China;

    Institute of Geographic Sciences and Natural Resources Research Chinese Academy of Sciences 11A Datun Road Chaoyang District Beijing 100101 PR China;

    Jinan Survey Bureau of Hydrology and Water Resources 2 Shanshi North Street Jinan 250013 PR China;

    College of Water Sciences Beijing Normal University 19 Xinjiekouwai Dajie Haidian District Beijing 100875 PR China;

    School of Geography Faculty of Geographical Science Beijing Normal University 19 Xinjiekouwai Dajie Haidian District Beijing 100875 PR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文科学(水界物理学);
  • 关键词

    dominant species;

    机译:主导物种;

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