浮游藻类

  • 网络phytoplankton;planktonic algae;algae
浮游藻类浮游藻类
  1. 浮游藻类的种群结构与其生活水域的水质状况密切相关,是评价水体质量的一项重要生物指标。

    Phytoplankton community is closely related to the water quality and thus to be an important biological indicator for water quality assessment .

  2. 经过对采集的标本进行鉴定,共发现浮游藻类167个种及变种,隶属于5门,25科,57属。

    Through identifying specimens , phytoplankton is discovered 167 species ( including varieties ) in total and they belong to 5 divisions , 25 families and 57 genera .

  3. 而浮游藻类比附着藻类更能适应较高的COD浓度。

    The phytoplankton more than attached algae adapted the higher concentration of COD .

  4. 分析了海洋浮游藻类细胞外碳酸酐酶(细胞外CA)活性与无机碳浓度以及藻细胞质膜氧化还原活性之间的关系。

    Extracellular carbonic anhydrase activity in relation to inorganic carbon concentration and plasma membrane redox activity are investigated in marine phytoplankton species .

  5. 但TN、TP和浮游藻类细胞密度增长较快,水体向富营养发展的趋势明显。

    But the TN ? TP and cells density of phytoplankton are on the increase , water body tend to be of eutrophication .

  6. 结果表明:被电厂卷载的浮游藻类,受损率为11.98~27.08%,其数量恢复过程符合Logistic方程。

    The results show that the damaged rate of the algae is 11 . 98-27 . 08 percent . The recovering process of the algae chime in with Logistic mold .

  7. AGP实验证明,磷含量的多寡,明显影响到水体中浮游藻类的生长繁殖。

    AGP test proves that the amount of phosphorus obviously affects growth and reproduction of phytoplankton .

  8. 浮游藻类的群落结构为绿藻(Chlorophyta)-硅藻(Bachilariophyta)型;

    Community structure of the planktonic algae belongs to green algae diatom type ;

  9. 为了给高原湖泊治理提供依据,从滇池湖区地质背景、浮游藻类、溶解氧、大地热流、水质富营养化等方面研究pH值的时空变化及其影响。

    The paper studies the pH space-time varieties and their influences through the distribution of carbonate rock , planktonic algae , dissolved oxygen , underground warm current , water pollution etc , which may provide a basis for Dianchi restoration .

  10. 鄱阳湖浮游藻类群落生态的初步研究

    Primary Studies on Community Ecology of Floating Algae in Poyang Lake

  11. 采用热解技术将湖泊浮游藻类用于燃料生产

    Recovery of planktonic algae from lakes to produce fuels by pyrolysis

  12. 硫酸盐对淡水浮游藻类群落结构的影响研究

    Effects of Sulfate on the Community Structure of Phytoplankton in Freshwater

  13. 浮游藻类和附着藻类生长特性的对比研究

    The Comparative Study of Growth Characteristics about Phytoplankton and Attached Algae

  14. 水体浮游藻类是鱼类的主要天然饵料之一。

    Phytoplankton is one of the main natural eatables of fishes .

  15. 水体增温对浮游藻类的影响研究

    Impact Study on phytoplankton with temperature increase of water body

  16. 北京市五景观湖泊浮游藻类评价及聚类分析

    Phytoplankton Evaluation and Cluster Analysis of 5 Landscape-lakes in Beijing

  17. 澜沧江梯级水电站库区浮游藻类组成及变化

    Phytoplankton Community Composition and Change in Reservoir Cascade Hydropower of Lancang River

  18. 富营养水体中沉水植物与浮游藻类相互竞争的研究

    Studies on the interaction of submerged plant and phytoplankton in eutrophic waters

  19. 安徽升金湖冬季浮游藻类多样性初步研究

    Study on winter phytoplankton diversity of Shengjin lake , Anhui

  20. 研究了池塘中浮游藻类群落结构的动态变化。

    The dynamics of phytoplankton community structure in culture ponds were studied .

  21. 瓶装饮用水中浮游藻类计数方法研究

    Study on floating algae count method for bottled drinking water

  22. 茂名市梅江水环境污染对浮游藻类的影响

    The Effects of Water Pollution of Meijiang in Maoming City on Plankton Algae

  23. 珠江口营养盐比例及其与浮游藻类的关系

    Nutrients Proportion and its Relationship with Pelagic Algae in the Pearl River Estuary

  24. 结果显示,磷酸盐对游客数量的增加表现最为敏感,其浓度的平均增幅最大,浮游藻类生物量次之。

    The results showed that both phosphorus concentration and algal biomass increased significantly .

  25. 松辽盆地南部白垩纪非海相微体浮游藻类组合

    Cretaceous non marine microbial planktonic algae assemblage in Southern

  26. 杭州西湖浮游藻类的种类组成和数量变动

    Species compositions and number variation of phytoplankton in the West Lake of Hangzhou

  27. 英国北海盆地北部侏罗系微体浮游藻类组合带

    Jurassic microplankton assemblage zones of British northern North Sea

  28. 锌对2种淡水浮游藻类增殖的影响

    Effects of Zinc on Two Phytoplanktons in Fresh Water

  29. 去除淡水浮游藻类方法的研究进展

    Progress in the Research of Approaches for Removing Planktonic Algae in Fresh Water

  30. 河口悬浮物与海洋近岸表层沉积物中磷的海洋浮游藻类生物测定

    Marine Algae Bioassay with Phosphorus in Estuarine Suspended Matters and Coastal Surface Sediments