郭康丽, 龙超, 党二莎, 张立. 珠海市近岸海域水质状况与富营养化评价[J]. 海洋环境科学, 2022, 41(2): 222-229. DOI: 10.12111/j.mes.20200330
引用本文: 郭康丽, 龙超, 党二莎, 张立. 珠海市近岸海域水质状况与富营养化评价[J]. 海洋环境科学, 2022, 41(2): 222-229. DOI: 10.12111/j.mes.20200330
GUO Kang-li, LONG Chao, DANG Er-sha, ZHANG Li. Assessment of water quality and eutrophication in the coastal area of Zhuhai city[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2022, 41(2): 222-229. DOI: 10.12111/j.mes.20200330
Citation: GUO Kang-li, LONG Chao, DANG Er-sha, ZHANG Li. Assessment of water quality and eutrophication in the coastal area of Zhuhai city[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2022, 41(2): 222-229. DOI: 10.12111/j.mes.20200330

珠海市近岸海域水质状况与富营养化评价

Assessment of water quality and eutrophication in the coastal area of Zhuhai city

  • 摘要: 为了解珠海市近岸海域水质污染程度和富营养化状况,本研究于2017年11月(秋季)和2018年3月(春季)对该海域水质进行调查监测,并采用单因子质量指数法、有机污染指数法和富营养化指数法评价海水的富营养化水平。单因子质量指数评价结果显示,珠海市近岸海域整体水质状况极差,春、秋季劣四类海水的站位占比分别为90.28%、79.17%。春、秋季DIN超标率分别为94.00%、89.00%,DIP超标率分别为28.00%、78.00%,DIN和DIP是影响整体水质状况的主要原因。整个区域的DIN/DIP均高于Redfield值,处于磷限制状态。有机污染指数评价结果显示,秋季严重有机污染的站位占比为51.39%,春季为56.94%,春季污染覆盖面更广。富营养化指数评价结果显示,春、秋季重度富营养化的站位占比分别为30.56%、31.94%,严重富营养化占比分别为6.94%、25.00%,富营养化程度较高。富营养化指数与CODMn存在显著的正相关关系,与盐度呈显著负相关关系,这说明CODMn在一定程度上可以反映珠海市近岸海域的富营养化状况,盐度越高富营养化水平越低,间接证明富营养化主要是由陆源污染物引起的,并与径流量以及外海海流的物理混合过程有关。

     

    Abstract: In order to understand the pollution degree and eutrophication status of coastal waters of Zhuhai city, the water quality of this sea area was investigated and monitored in November 2017 (autumn) and March 2018 (spring). The single factor quality index method, organic pollution index method and eutrophication index method are used to evaluate the eutrophication level of the sea area. The results of single factor quality index evaluation showed that the overall water quality of the coastal waters of Zhuhai city was extremely poor. The proportions of the four inferior seawaters in spring and autumn were 90.28% and 79.17%, respectively. The DIN and DIP exceedance rates were 94.00% and 28.00% in spring, and 89.00% and 78.00% in autumn, which were the main reasons affecting the overall water quality. The DIN/DIP ratio of the whole area was higher than the Redfield ratio, which was in the phosphorus limit state. The results of organic pollution index evaluation showed that the proportion of serious organic pollution stations was 51.39% in autumn, 56.94% in spring, and the pollution coverage was wider in spring. The eutrophication index evaluation showed that the proportion of severe eutrophication stations in spring and autumn was 30.56% and 31.94%, respectively, and the proportion of severe eutrophication stations was 6.94% and 25.00%, respectively, indicating that the eutrophication was high. There is a significant positive correlation between the eutrophication index and CODMn, and a significant negative correlation with salinity, indicating that CODMn can reflect the eutrophication status of Zhuhai coastal waters to a certain extent. The higher the salinity is, the lower the level of eutrophication level is, which indirectly proves that eutrophication is mainly caused by land-sourced pollutants and is related to the physical mixing process of runoff and ocean currents in the open sea.

     

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