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汉丰湖入湖支流浮游植物群落结构及环境因子影响分析
引用本文:朱梦灵,潘晓洁,郑志伟,邹曦,胡莲,张志永,万成炎.汉丰湖入湖支流浮游植物群落结构及环境因子影响分析[J].水生态学杂志,2014,35(6):46-52.
作者姓名:朱梦灵  潘晓洁  郑志伟  邹曦  胡莲  张志永  万成炎
作者单位:水利部中国科学院水工程生态研究所,水利部水工程生态效应与生态修复重点实验室,武汉 430079,水利部中国科学院水工程生态研究所,水利部水工程生态效应与生态修复重点实验室,武汉 430079,水利部中国科学院水工程生态研究所,水利部水工程生态效应与生态修复重点实验室,武汉 430079,水利部中国科学院水工程生态研究所,水利部水工程生态效应与生态修复重点实验室,武汉 430079,水利部中国科学院水工程生态研究所,水利部水工程生态效应与生态修复重点实验室,武汉 430079,水利部中国科学院水工程生态研究所,水利部水工程生态效应与生态修复重点实验室,武汉 430079,水利部中国科学院水工程生态研究所,水利部水工程生态效应与生态修复重点实验室,武汉 430079
基金项目:国家“十二•五”水专项(2013ZX07104-004);国家“十二•五”科技支撑计划课题(2012BAC06B04);三峡后续工作科研项目(2013HXKY2-3);国家自然科学基金项目(51209147)
摘    要:为了准确反映汉丰湖的水环境状况,通过浮游植物监测和环境因子监测相结合,探讨汉丰湖入湖支流东河、桃溪河、南河、头道河浮游植物群落结构特征及其与水体理化因子的关系,对小江中上游开县汉丰湖4条主要支流的水体理化指标和浮游植物进行了采样分析,在东河、南河、桃溪河、头道河各设置3个监测点,于2013年3、6、9、12月各采样1次。结果表明,4条入湖支流共采集鉴定浮游植物8门、84属、218种(含变种),以硅藻(107种)和绿藻(64种)种类居多,其次是蓝藻(31种),这3类的种数占浮游植物总数的92.7%,其它5门的种类数较少。各支流浮游植物种类数由低到高依次为东河(83种)、桃溪河(100种)、南河(106种)、头道河(120种),其密度均值在105数量级,南河下游浮游植物密度在夏季出现最大峰值,达到1.06×107 个/L,在大部分时段均以蓝藻占优势。水体理化指标监测数据显示,汉丰湖4条主要支流的总氮、总磷、pH、溶氧、水温、CODMn和电导率均值分别为1.00~1.61 mg/L、0.03~0.11 mg/L、7.82~8.53、6.65~7.03 mg/L、17.9~20.4℃、2.07~4.57 mg/L、269.25~522.50 μS/cm;其中,南河的总氮、CODMn较高,头道河的总磷较高,各支流的水温、溶氧、pH较为接近。浮游植物与环境因子的相关性分析表明,东河的裸藻、桃溪河的绿藻以及头道河的蓝藻密度均与水温显著相关(P<0.05),南河的硅藻和绿藻密度与水温极显著正相关(P<0.01),东河的甲藻密度与总磷浓度极显著相关(P<0.01),桃溪河的硅藻和甲藻密度与总磷浓度显著相关(P<0.05),绿藻密度与总氮浓度显著负相关(P<0.05),硅藻密度与总氮浓度极显著负相关(P<0.01);浮游植物分布及密度主要受水温、总氮和总磷的影响。

关 键 词:汉丰湖  浮游植物  群落结构  环境因子
收稿时间:2014/9/10 0:00:00
修稿时间:2014/10/20 0:00:00

Phytoplankton Community Structure and Its Correlation with Environmental Factors in the Tributaries of Hanfeng Lake
ZHU Meng-ling,PAN Xiao-jie,ZHENG Zhi-wei,ZOU Xi,HU Lian,ZHANG Zhi-yong and WAN Cheng-yan.Phytoplankton Community Structure and Its Correlation with Environmental Factors in the Tributaries of Hanfeng Lake[J].Journal of Hydroecology,2014,35(6):46-52.
Authors:ZHU Meng-ling  PAN Xiao-jie  ZHENG Zhi-wei  ZOU Xi  HU Lian  ZHANG Zhi-yong and WAN Cheng-yan
Institution:Key Laboratory of Ecological Impacts of Hydraulic-Projects and Restoration of Aquatic Ecosystem of Ministry of Water Resources, Institute of Hydroecology, Ministry of Water Resources and Chinese Academy of Sciences. Wuhan 430079, P.R.China,Key Laboratory of Ecological Impacts of Hydraulic-Projects and Restoration of Aquatic Ecosystem of Ministry of Water Resources, Institute of Hydroecology, Ministry of Water Resources and Chinese Academy of Sciences. Wuhan 430079, P.R.China,Key Laboratory of Ecological Impacts of Hydraulic-Projects and Restoration of Aquatic Ecosystem of Ministry of Water Resources, Institute of Hydroecology, Ministry of Water Resources and Chinese Academy of Sciences. Wuhan 430079, P.R.China,Key Laboratory of Ecological Impacts of Hydraulic-Projects and Restoration of Aquatic Ecosystem of Ministry of Water Resources, Institute of Hydroecology, Ministry of Water Resources and Chinese Academy of Sciences. Wuhan 430079, P.R.China,Key Laboratory of Ecological Impacts of Hydraulic-Projects and Restoration of Aquatic Ecosystem of Ministry of Water Resources, Institute of Hydroecology, Ministry of Water Resources and Chinese Academy of Sciences. Wuhan 430079, P.R.China,Key Laboratory of Ecological Impacts of Hydraulic-Projects and Restoration of Aquatic Ecosystem of Ministry of Water Resources, Institute of Hydroecology, Ministry of Water Resources and Chinese Academy of Sciences. Wuhan 430079, P.R.China and Key Laboratory of Ecological Impacts of Hydraulic-Projects and Restoration of Aquatic Ecosystem of Ministry of Water Resources, Institute of Hydroecology, Ministry of Water Resources and Chinese Academy of Sciences. Wuhan 430079, P.R.China
Abstract:
Keywords:Hanfeng Lake  phytoplankton  community structure  environmental factors
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