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水生生态系统的英文

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"水生生态系统"怎么读用"水生生态系统"造句

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  • aquatic ecosystem

例句与用法

  • Aquatic ecosystems share a number of basic structural and functional characteristics with terrestrial ecosystems .
    水生生态系统的结构和机能,在许多基本特征方面同陆地生态系统一样。
  • Primary estimation of atmospheric wet deposition of nitrogen to aquatic ecosystem of lake taihu
    大气湿沉降向太湖水生生态系统输送氮的初步估算
  • Anaerobic ammonium oxidation ( anammox ) is a newly discovered process in nitrogen cycle in aquatic systems , and it plays a significant role in the conversion of nitrogen
    厌氧氨氧化过程是水生生态系统氮循环中的氮转化新途径,并在自然界氮素的转化过程起着重要的作用。
  • In addition , it has also been applied to the management and prediction of the ecology system , especially the marine ecology , and the control of the environment pollution
    它已广泛的应用于研究微生物的种群增长和相互作用规律,也应用于生态系统尤其是水生生态系统的管理,预测和环境污染的控制。
  • 3 the distributive dynamics of 95zr absorbed in crucian and the behavioral trait of 95zr in an aquatic ecosystem was studied by using isotope - tracer technology , and the mathematical model was confirmed by application of nonlinear regression method
    3 、研究了卿鱼对952 :的吸收和在其体内的分布动态以及95zr在水生生态系统中的行为特性,并运用非线性拟合方法建立其数学模型。
  • The variability among living organisms from all sources including , inter alia , terrestrial , marine and other aquatic ecosystems and the ecological complexes of which they are part ; this includes diversity within species , between species and of ecosystems
    是指所有来源的形形色色生物体,这些来源除其他外包括陆地、海洋和其他水生生态系统及其所构成的生态综合体;这包括物种内部、物种之间和生态系统的多样性。
  • Therefore , its essence is damaging creature diversity , which leads to the system loss of self - maintenance , self - accommodation ability and system balance stability , finally results in the destroying of water co - system and farther intensification of environmental issues
    其本质问题是水生生物多样性的破坏,由此造成系统丧失自我维持、自我调节的能力与系统平衡的稳定性,并最终导致水生生态系统的破坏和环境问题的进一步加剧。
  • Therefore , our cogonition on these experimental phenomena and laws makes a science base to further reveal the essence of eutrophication and provides an experimental base to implement bio - engeering technology of rebuilding and constructing waiter ecosystem , and also offters technologies for the microalgae controlled by the hydrodictyon reticulatum
    因此,通过对这些现象与规律的实验认识为进一步揭示富营养化的成因奠定科学基础;为实现对水生生态系统的生物重建、组建等生态工程技术提供实验基础;也为利用藻类控藻提供技术支持。
  • Using cd , cu , zn and cr as experimental toxicants and crucian as experimental creature , we employed the environmental biotechniques ( flame atomic absorption spectrophotometry , the method of improved pyrogallol autoxidation and electron microscopy ) to study the acute toxicity and secure concentrations of heavy metals to crucian ; the accumulation and distribution of mixed heavy metals to fingling crucian ; the activities of superoxide dismutase ( sod ) of gill and liver tissues and the hispathological and ultrastructural change of superfine structure of liver and kidney of crucian after cadmium exposure . through which , we intended to fully and systemically study the toxic influence of heavy metals to fish , and preliminarily discuss the influence of heavy metals pollution to the diversified level of fish such as individual , organ , tissue , cell and molecule . thus we tried to provide scientific evidence to establish preventative management measures , avoid and relieve the harm of heavy metals pollution to aquicolous ecosystem in time
    随后以这几种重金属作为实验毒物,以鲫鱼为实验动物,应用环境生物技术、火焰原子吸收分光光度法、邻苯三酚自氧化法、透射电镜等技术研究了重金属cu 、 zn 、 cd和cr对鲫鱼的急性毒性及其安全浓度评价、混合重金属在鲫鱼幼体组织内的积累和分布、 cd对鲫鱼鳃和肝脏中sod活性的影响、 cd对鲫鱼肝细胞和肾细胞超微结构的影响等,全面和系统地研究了水环境中重金属暴露对鱼类的毒性影响,初步探讨了重金属污染对鱼类的个体? ?器官? ?组织? ?细胞? ?分子等各水平层次的影响,为制定渔业生产上预防性的管理措施提供科学依据,及时避免或减轻重金属污染对水生生态系统造成的损害。
  • On the other hand , this paper details the study on effects of environmental pollution on the algae growth besides essential nutrition , especially those of dye wastewater in sunan area on the process of eutrophication , from which we expect to know what the environmental pollution factors overlapping other factors interfere with the competitive relationships of different species and have a certain effects on the succession of water ecosystem species
    另外,论文中的实验也涉及到除对藻类生长所必需营养物外的环境污染因子的影响。尤其是苏南地区的染料废水等对富营养化过程的影响,以期了解叠加在其他因素上的环境污染因子对生物种群间的竞争关系的干预,及对水生生态系统种群演替的影响和程度。
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