Mechanisms and assessment of water eutrophication

被引:21
作者
Xiaoe YANGXiang WUHulin HAOZhenli HEMOE Key Laboratory of Polluted Environment Remediation and Ecological HealthZhejiang UniversityHangzhou ChinaZhejiang Provincial Key Laboratory of Subtropic Soil and Plant NutritionZhejiang UniversityHangzhou ChinaInstitute of Food and Agricultural SciencesIndian River Research and Education CenterUniversity of FloridaFort PierceFL USA [1 ,1 ,2 ,1 ,1 ,3 ,1 ,310029 ,2 ,310029 ,3 ,34945 ]
机构
关键词
Eutrophication mechanisms; Influencing factors; Nutrient enrichment; Assessment criterion; Water quality;
D O I
暂无
中图分类号
X52 [水体污染及其防治];
学科分类号
0815 ;
摘要
Water eutrophication has become a worldwide environmental problem in recent years,and understanding the mechanisms of water eutrophication will help for prevention and remediation of water eutrophication.In this paper,recent advances in current status and major mechanisms of water eutrophication,assessment and evaluation criteria,and the influencing factors were reviewed.Water eutrophication in lakes,reservoirs,estuaries and rivers is widespread all over the world and the severity is increasing,especially in the developing countries like China.The assessment of water eutrophication has been advanced from simple individual parameters like total phosphorus,total nitrogen,etc.,to comprehensive indexes like total nutrient status index.The major influencing factors on water eutrophication include nutrient enrichment,hydrodynamics,environmental factors such as temperature,salinity,carbon dioxide,element balance,etc.,and microbial and biodiversity.The occurrence of water eutrophication is actually a complex function of all the possible influencing factors.The mechanisms of algal blooming are not fully understood and need to be further investigated.
引用
收藏
页码:197 / 209
页数:13
相关论文
共 35 条
[1]   Current status and future tendency of lake eutrophication in China [J].
JIN Xiangcan .
Science China Life Sciences, 2005, (S2) :948-954
[2]   松花湖富营养化现状及其影响因素分析 [J].
王霞 ;
吕宪国 ;
张学林 ;
张竹青 .
湿地科学, 2004, (04) :273-278
[3]   滇池水体富营养化特征分析及控制对策探讨 [J].
郭怀成 ;
孙延枫 .
地理科学进展, 2002, (05) :500-506
[4]   平原水网水体富营养化的限制因子研究 [J].
沈东升 .
浙江大学学报(农业与生命科学版), 2002, (01) :96-99
[5]  
Nitrogen versus phosphorus limitation of phytoplankton growth in Ten Mile Creek, Florida, USA[J] . Youjian Lin,Zhenli He,Yuangen Yang,Peter J. Stoffella,Edward J. Phlips,Charles A. Powell.Hydrobiologia . 2008 (1)
[6]  
Seagrasses and eutrophication[J] . JoAnn M. Burkholder,David A. Tomasko,Brant W. Touchette.Journal of Experimental Marine Biology and Ecology . 2007 (1)
[7]  
Effects of hydrodynamics on phosphorus concentrations in water of Lake Taihu, a large, shallow, eutrophic lake of China[J] . Guangwei Zhu,Boqiang Qin,Guang Gao,Lu Zhang,Liancong Luo,Yunlin Zhang.Hydrobiologia . 2007 (1)
[8]   Eutrophication conditions and ecological status in typical bays of Lake Taihu in China [J].
Chun Ye ;
Qiujin Xu ;
Hainan Kong ;
Zhemin Shen ;
Changzhou Yan .
Environmental Monitoring and Assessment, 2007, 135 :217-225
[9]   Benthic biological effects of seasonal hypoxia in a eutrophic estuary predate rapid coastal development [J].
Bishop, Melanie J. ;
Powers, Sean P. ;
Porter, Hugh J. ;
Peterson, Charles H. .
ESTUARINE COASTAL AND SHELF SCIENCE, 2006, 70 (03) :415-422
[10]  
Evidence from isotopic geochemistry as an indicator of eutrophication of Meiliang Bay in Lake Taihu, China[J] . Lin Lin,Jinglu Wu,Sumin Wang.Science in China Series D . 2006 (1)