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夏季莱州湾及附近水域理化环境及营养现状评价
引用本文:夏斌,张晓理,崔毅,陈碧鹃,陈聚法,过锋,张艳,黄翠玲.夏季莱州湾及附近水域理化环境及营养现状评价[J].海洋水产研究,2009,30(3):103-111.
作者姓名:夏斌  张晓理  崔毅  陈碧鹃  陈聚法  过锋  张艳  黄翠玲
作者单位:1. 农业部海洋渔业资源可持续利用重点实验室,山东省渔业资源与生态环境重点实验室,中国水产科学研究院黄海水产研究所,266071
2. 国家海洋局北海环境监测中心,266033
3. 上海诺安农产品检测服务有限公司青岛分公司,266012
基金项目:农业部黄渤海渔业资源环境重点野外科学观测试验站资助 
摘    要:根据2007年8月对莱州湾及附近水域的调查资料,讨论了温度、盐度、pH、溶解氧(DO)、溶解无机氮(DIN)和活性磷酸盐(PO4^3--P)等理化因子的分布特征,并对该水域的营养水平和有机污染状况进行了评价。结果表明,莱州湾西部和西南部水域表层和底层的DIN含量较高,均呈向东北方向递减的趋势;表层PO4^3--P含量分布较为均匀,在湾口中部水域有一小范围的高值区,并呈向四周逐渐递减分布。底层水平基本与表层一致,但其高值区范围较大,等值线较为密集。营养盐与盐度的相关分析表明,DIN与盐度呈显著负相关,表明DIN主要来自河流径流的输送;而PO4^3--P与盐度相关性不十分显著,这表明莱州湾PO4^3--P的补充并非主要来自河流径流输入,而是以有机物的分解矿化再生为主,同时,浮游植物的大量繁殖也是一个重要的影响因素。由水域环境质量评价结果看,N/P值均大于Redfield比值16,P显得相对缺乏。根据营养化评价模式和有机污染指数计算结果,2007年夏季莱州湾水域营养水平基本属于磷中等限制潜在性富营养,有机污染程度属3级,表明该调查水域受到轻度有机污染。

关 键 词:莱州湾  溶解无机氮  磷酸盐  营养现状  潜在性富营养化  有机污染
收稿时间:2008/5/8 0:00:00
修稿时间:2008/6/18 0:00:00

Evaluation of the physicochemical environment and nutrition status in Laizhou Bay and adjacent waters in summer
XIA Bin,ZHANG Xiao-li,CUI Yi,CHEN Bi-juan,CHEN Ju-fa,GUO Feng,ZHANG Yan,HUANG Cui-ling.Evaluation of the physicochemical environment and nutrition status in Laizhou Bay and adjacent waters in summer[J].Marine Fisheries Research,2009,30(3):103-111.
Authors:XIA Bin  ZHANG Xiao-li  CUI Yi  CHEN Bi-juan  CHEN Ju-fa  GUO Feng  ZHANG Yan  HUANG Cui-ling
Institution:XIA Bin, ZHANG Xiao-li,CUI Yi, CHEN Bi-juan, CHEN Ju-fa, GUO Feng,ZHANG Yan, HUANG Cui-ling (1.Key Laboratory for Sustainable Utilization of Marine Fisheries Resources, Ministry of Agriculture, Key Laboratory for Fishery Resources and Eco-environment, Shandong Province. Yellow Sea Fisheries Research Institute, Chinese Academy of Fishery Sciences, Qingdao 266071;2. North China Sea Environment Center,State Oceanic Administration,Qingdao 266033;3. Sino Analytica Laboratory of Pesticide Residue Analysis of Agricultural Products, Qingdao 266012)
Abstract:In order to study the distribution characteristic of temperature, salinity, pH, dissolved oxygen, DIN and PO4^3- -P and evaluate the nutrient level and organic pollution situation in Laizhou Bay and its adjacent waters, samples were collected and analyzed in August 2007. the results showed that the concentration of inorganic nitrogen was relatively high in both surface and bottom of west and southwest waters of Laizhou Bay, which showed an decreasing trend from the west and southwest to the northeast. The PO4^3--P in surface waters was well distributed, a small high value area was found in the middle waters of Laizhou Bay, the concentration decreased from the center toward the periphery gradually. Concentrations of PO4^3--P in bottom waters were different from those in surface waters correspondingly, but the scope of high value area was greater and isoline was more intensive. According to the correlation analysis between nutrient and salinity, there was significant negative correlation between DIN and salinity, indicating that the riverine input was the main sowrce of DIN. Since there was not significant correlation between PO4^3--P and salinity, riverine input was not the main source of PO4^3--P; the concentration of PO4^3--P was maintained mainly by the decomposition and mineralization of organic materials. In addition, mass reproduction of phytoplankton was another important influencing factor for PO4^3--P. According to water environment evaluation result, the value of N/P ratio was higher than the Redfield ratio of 16, and phosphate was the limiting factor for the growth of phytoplankton. Based on the evaluation mode of eutrophication and organic pollution index, The nutrient level of Laizhon By was medium phosphorus limiting potential eutrophication, and the organic pollution degree remained at the third level in summer 2007, which indicated that the water area had been polluted by organic materials slightly.
Keywords:Laizhou Bay Dissolved inorganic nitrogen Phosphate Nutrition status Potential eutrophication Organic pollution
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