用户名: 密码: 验证码:
基于底栖动物指数法的湖泊生态系统健康评价研究进展
详细信息    查看官网全文
摘要
湖泊大型底栖无脊椎动物能对自然和人为活动导致的水和沉积物质量变化做出可预测的响应,因此利用底栖动物作为湖泊生态环境监测的生物指标和进行系统健康度量的生物指数已经得到了广泛的认可。本文比较分析了几种常用的和正在发展的湖泊生态系统健康和生态环境质量状况评估的底栖动物指数,包括指示物种、生物多样性指数、HBI指数、B-IBI指数,总结了这几种生物指数的应用和特性,探讨了底栖动物指数在实际应用中可能存在的问题和解决的办法,以期为我国湖泊生态系统健康评估工作提供参考。
引文
[1]赵臻彦,徐福留,詹巍.湖泊生态系统健康定量评价方法[J].生态学报,2005,25,(6):1466-1474.
    [2]ShearH.The development and use of indicators to assess ecosystem health state in the Great Lake[J].Ecosyst Health,1996,2(2):241-258.
    [3]赵永晶,沈建忠,王腾.基于大型底栖动物的乌伦古湖水质生物学评价[J].水生态学杂志,2010,3,(3):7-11.
    [4]王智,张志勇,张君倩.水葫芦修复富营养化湖泊水体区域内外底栖动物群落特征[J].中国环境科学,2012,32(1):142-149.
    [5]吴召仕,蔡永久,陈宇炜.太湖流域主要河流大型底栖动物群落结构及水质生物学评价[J].湖泊科学,2011,23(5):686-694.
    [6]熊晶,谢志才,张君倩.傀儡湖大型底栖动物群落与水质评价[J].长江流域资源与环境,2010,19增(1):132-137.
    [7]罗先香,杨建强.海洋生态系统健康评价的底栖动物指数法研究进展[J].海洋通报,2009,28(3):106-112.
    [8]赵淑江.海洋藻类生态学[M].海洋出版社,2014.1-245.
    [9]蔡立哲,马丽,高阳等.海洋底栖动物多样性指数污染程度评价标准的分析[J].厦门大学学报(自然科学版),2002,41(5):641-646.
    [10]刘曼红.呼兰河口保护区及周边水域水生动物生态监测与健康评价[R].东北林业大学,2012.1-95.
    [11]蔡立哲,厉红梅,林鹏等.深圳河口潮间带泥滩多毛类的数量变化及环境影响[J].厦门大学学报(自然科学版),2001,40(3):741-750.
    [12]李强,杨莲芳,吴壕,王备新.底栖动物完整性指数评价西苕溪溪流健康[J].环境科学,2007,28(9):2141-2147.
    [13]胡成龙,姜加虎,陈宇炜.湖北省湖泊大型底栖动物群落结构及水质生物学评价[J].生态环境学报,2014,23(1):129-138.
    [14]Karr J R.Assessment of biotic integrity using fish communities[J].Fisheries,1981,6(6):21-27.
    [15]Solimini A G,Sandin L The importance of spatial variation of benthic invertebrates for theecological assessment of European lakes[J].Fundamental and Applied Limnology/Archiv fur Hydrobioiogie,2012,180(2):85-89.
    [16]高欣,牛翠娟,裴雪姣.太湖流域大型底栖动物生物完整性研究[J].北京师范大学学报(自然科学版),2012,48(4):392-398.
    [17]马陶武,黄清辉,王海.太湖水质评价中底栖动物综合生物指数的筛选及生物基准的确立[J].生态学报,2008,28(3):1192-1200.
    [18]汪星,郑丙辉,李黎.基于底栖动物完整性指数的洞庭湖典型断面的水质评价[J].农业环境科学学报,2012,31(9):1799-1807.
    [19]Philippert C J M.Long-term impact of bottom fisheries on several bycatch species of demersal fish and benthic invertebrates in the south-eastern North Sea[J].ICES Journal of Marine Science,1998,55:342-52.
    [20]Adams S M.Assessing cause and effect of multiple stressors on marine systems[J].Marine Pollution Bulletin,2005,51:649-657.
    [21]Ludwi g J A,Reynolds J F.Statistical ecology[M].New York:Wiley,1988,52:1-337.
    [22]Spellerberg I F.Monitoring ecological change[M].Cambridge,UK;Cambridge University Press,1991,53;1-334.
    [23]Diez I,Secilla A,Santolaria A,et al.Phytobenthic intertidal community structure along an environmental pollution gradient[J].Marine Pollution Bulletin,1999,38:463-72.
    [24]Hilsenhoff W L Use of arthropods to evaluate water quality of streams[J].Wisconsin Department of Natural Resources Technical Bulletin 132,Madison,1977,22(1):25-37.
    [25]Tangen B A,Butler M G,Ell M J.Weak correspondence between macroinvertebrate assemblages and land use in prairie pothole region wetlands,USA[J].Wetlands,2003,23(1):104-115.
    [26]Heatherly T,Whiles M R,Knuth D.et al.Diversity and community structure of littoral zone macroinvertebrates in southern Illinois reclaimed surface mine lakes[J].The American midlandnaturalist,2005,154(1):67-77.
    [27]Trigal C,Garcia-Criado F,Fernandez-Alaez C.Among-habitat and temporal variability of selected macroinvertebrate based metrics in a Mediterranean shallow lake(NW Spain)[J].Hydrobiologia,2006,563(1):371—384.
    [28]Blocksom KA,Kurtenbach J P,Klemm D J,et al.Development and evaluation of the Lake Macroinvertebrate Integrity Index(LMII)for New Jersey lakes and reservoirs[J].Environmental Monitoring and Assessment,2002,77(3):311-333.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700