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1)  cyanobacterial bloom control
蓝藻水华控制
2)  Cyanobacteria bloom-forming
蓝藻水华
1.
Hypothesis on cyanobacteria bloom-forming mechanism in large shallow eutrophic lakes;
大型浅水富营养化湖泊中蓝藻水华形成机理的思考
2.
Cyanobacteria bloom-forming in Taihu Lake has already become an environment problems which was concerned by the society and the government.
太湖蓝藻水华已经成为一个社会和政府共同关注的环境问题。
3.
Cyanobacteria bloom-forming in lake had already been an environment problem which was concerned by the society and government as well.
湖泊蓝藻水华已经成为社会公众和政府共同关注的重要环境问题之一。
3)  Cyanobacteria bloom
蓝藻水华
1.
Cyanobacteria bloom detection and monitoring from satellite observations in the coastal region of Finland;
芬兰海岸带水域蓝藻水华遥感监测(英文)
2.
Extraction methods of cyanobacteria bloom in Lake Taihu based on RS data;
基于遥感数据的太湖蓝藻水华信息识别方法
3.
Impact assessment of cyanobacteria bloom on water intakes in Taihu Lake using remote sensing data
应用遥感数据评价蓝藻水华对太湖取水口的影响
4)  blue-green algae bloom
蓝藻水华
1.
Effect of nitrogen,phosphor,light and water temperature on the for mation and disappearance of blue-green algae bloom;
不同氮磷营养及光温条件对蓝藻水华生消的影响
5)  algae bloom
蓝藻水华
1.
The water pollution of Taihu Lake is characterized by the severity of eutrophication and high frequency of algae bloom.
湖泊富营养化程度加剧,蓝藻水华频繁暴发是太湖主要的水污染状况。
2.
This study gained a good experiment in monitoring the number of algae,spatial distribution,which will do good to future\' study on assessing the se-verity of the algae bloom and discussing conter-meature to the outbreak of algae.
结果表明,利用MODIS遥感数据探测太湖蓝藻水华的分布状况是可行的,MODIS可用于监测内陆湖泊藻类水华的污染情况。
6)  cyanobacterial bloom
蓝藻水华
1.
The prevention and treatment of cyanobacterial bloom by the principle of biomanipulation controlling aquatic community is considered as a safe and effective alternative method in water body that the management of nutrient would be difficult to prove effective.
在营养盐管理难以奏效的富营养化水体,运用生物操纵原理,通过水生生物群落控制管理来防治蓝藻水华被认为是一种安全、有效的替代方法。
2.
A large-area cyanobacterial bloom was observed for the first time in some bays of Three Gorges Reservoir(TGR) in June 2008,which indicated the deterioration of the aquatic ecosystem.
2008年6月三峡水库部分支流库湾第一次暴发大面积蓝藻水华,表明水库支流库湾生态环境已经恶化。
3.
In June-August 2008,the cyanobacterial bloom and chlorophycean bloom broke out one after the other in the Xiangxi Bay of Three Gorges Reservoir.
结果表明:研究区2次水华过程均可划分为无水华组、过渡组和水华组;2次水华的暴发对可溶性硅(DSi)、硝态氮与亚硝态氮(NO3--N+NO2--N)和磷酸盐(PO43--P)3种营养盐的吸收程度不同;蓝藻水华暴发期间的DSi、总氮/总磷(TN/TP)、DSi/TN和DSi/TP值均低于绿藻水华;判别蓝藻水华暴发的参数为叶绿素a(Chla)、TN和PO43--P,而Chla和DSi则是绿藻水华暴发的判别因子,将2次水华过程划分为水华组和无水华组的判别效果更好;判断蓝藻和绿藻水华暴发的叶绿素a临界浓度分别为40和20μg·L-1。
补充资料:地下水水资源评价(见水资源评价)


地下水水资源评价(见水资源评价)


  d ixiashui shuiziyuan Ping】ia地下水水资源评价见水资源评价。
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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