青冈

qīng gāng
  • Cyclobalanopsis glauca;oriental white oak
青冈青冈
青冈[qīng gāng]
  1. 不同径级青冈中P浓度变化无明显规律。凋落物凋落之前,P有被回收的现象,其中枯叶有70%以上的P被回收。

    There is no evident changing regularity of the concentrations of P in varying diameter classes .

  2. 青冈(Quercusglauca)净光合作用与环境因子的关系

    Relationship between the net photosynthesis of Quercus glauca and the environmental factors

  3. 与枫香相反,青冈的SRL、SRA和SRT随着土壤深度的增加而增加。

    In contrast , SRL , SRA and SRT were increased with increasing soil depth .

  4. 水青冈一种其他木本植物,如鹅耳枥属和假山毛榉属毛木耳子实体中活性多糖APPⅡA的分离纯化与结构初探

    Any of several other woody plants , as in the genera Carpinus and Nothofagus . Isolation , purification and structural characterization of bioactive polysaccharide APP ⅱ A from Auricularia polytricha

  5. 青冈栎中含有大量生物活性物质,包括单宁、多糖、生物碱、多酚、VB2、VB1、VC、脂类等。

    It contains a series of bio-compounds , including tannins , polysaccharide , alkaloids , polyphenols , VB1 , VB2 , Vc etc. Among them , the tannins are responsible pharmacological active substance .

  6. 青冈(Quercusglauca)林乔木层主要树种叶片的净光合速率日进程在春夏季晴天均有明显午休。

    The diurnal courses of the net photosynthesis ( Pn ) of the main tree species in the evergreen broad leaved forest dominated by Quercus glauca under clear day in spring and summer showed significant midday decrease .

  7. 水青冈属(Fagus)植物是北温带落叶阔叶林的主要树种,该属共有11种。中国5种均为特有种。

    There are 11 species in Fagus , 5 of them are endemic to China . They are the major trees of deciduous broadleaved forest in Northern temperate region .

  8. 贵州亮叶水青冈林的结构和动态

    The structure and dynamics of Fagus lucida forests of Guizhou Province

  9. 青冈常绿阔叶林内的小气候特征

    Features of the micro climate in the evergreen broad leaved forest

  10. 中国水青冈种内种间遗传多样性的初步研究

    Studies on intra and inter species gene diversity of Chinese beeches

  11. 季风气候与东亚地区水青冈分布

    Monsoon climate and distribution of beech species in East Asia

  12. 生物量在建立优化群落结构中的应用&以昆明地区滇青冈萌生灌木群落为例

    The Primary Use of Biomass in Setting up the Optimal Community Structure

  13. 采用遗传排除法和似然分析法进行青冈幼苗的亲本分析。

    Likelihood analysis identified one or two parent pairs for the seedlings .

  14. 青冈栎等6种林木种子耐脱水性研究

    Studies on Seed Desiccation Tolerance of Six Tree Species

  15. 青冈县水资源开发利用存在的问题与对策

    Problems and Countermeasures of Development and Utilization of Water Resources in Qinggang County

  16. 模拟酸雨胁迫对青冈幼苗光合特性和叶绿素荧光参数的影响

    Effects of simulated acid rain on Quercus glauca seedlings photosynthesis and chlorophyll fluorescence

  17. 青冈常绿林硼含量特征

    Characteristic of Boron Content in Quercus Glauca Evergreen Forest

  18. 青冈常绿阔叶林凋落物分解过程中营养元素动态

    Nutrient dynamics in litter decomposition in an evergreen broad-leaved forest in East China

  19. 福建青冈天然林材积生长27年生后明显增加,48年生时材积平均生长量与连年生长量仍未相交。

    The volume growth of the natural forest increased remarkably after 27 years old .

  20. 随着青冈群落演替进行,乔木层物种多样性逐渐增大。

    With the succession , the species diversity of the tree layer increased gradually .

  21. 广西水青冈林的分类研究

    The study of beech forest classification in Guangxi

  22. 灌木层的物种多样性指数高于乔木层和草本层,由木映山红白栎乌饭盐肤木山柿、青冈栎、冬青、枫香红楠野桃香港黄檀木等组成,草本层以芒萁五节芒等组成。

    Species diversity index in shrub was higher than that in arbor and herb .

  23. 南水青冈属及壳斗科其他属花粉壁超微结构比较研究

    A comparative study on pollen exine ultrastructure of Nothofagus and the other genera of Fagaceae

  24. 突脉青冈天然林主要种群直径分布结构特征的研究

    Studies of the Diameter Distribution Structure Characteristics

  25. 以保护为前提,加强亮叶水青冈的科学利用和开发。

    Base on the protection , strengthen utilization and development of the vegetation of Fagus lucida .

  26. 青冈栎地板材干燥工艺研究

    Drying Technology for Oak Lumber

  27. 贵州喀斯特台原亮叶水青冈林种&多度结构研究

    A preliminary study on the species-abundance structure of Fagus lucida forest in Karst platform area in Guizhou province

  28. 华中地区水青冈林植被研究

    VEGETATION STUDY OF BEECH FORESTS IN CENTRAL CHINA The Green Banana Forum on Urban Development of Qingpu District , Shanghai

  29. 山顶青冈栎叶片部分表皮结构(角质膜、表皮毛、表皮细胞、气孔)趋向旱化。

    Some of structures such as cuticle , trichomes , epidermis cell , stomata will express the trend of xerophilization .

  30. 结果表明,滇青冈和元江栲枯叶分解速率高于云南松针叶。

    It was found that the decomposition rates of both broad-leaved leaf litters are greater than that of pine needles .