碳氮循環 的英文怎麼說

中文拼音 [tàndànxúnhuán]
碳氮循環 英文
carbonnitrogen cycle
  • : 名詞[化學] (非金屬元素) carbon (c)
  • : 名詞[化學] nitrogen (7號元素, 符號n)
  • : 循動詞(遵守; 依照; 沿襲) follow; abide by
  • : Ⅰ名詞1 (環子) ring; hoop 2 (環節) link 3 (姓氏) a surname Ⅱ動詞(圍繞) surround; encircle;...
  • 循環 : circulate; circle; round; repeat; loop; period; recurrence; cycling; circulating; mixing; circula...
  1. The understanding of biogeochemical cycle of hydrogen, oxygen, carbon, nitrogen, and sulfur elements in nature ecosystem have increased substantially in the past two decades owing to the improvement of gas isotope ratio mass spectrometer and the wide application of isotopic studies with these elements

    摘要近20年由於氣相同位素比值質譜儀的改良和氫、氧、和硫等穩定同位素的廣泛研究,穩定同位素的研究技術已實質增加我們對于這些元素在自然生態系中生地化的了解。
  2. Interested students can find the detail reactions of the p - p chain and the cno cycle in our textbooks

    有興趣的讀者可參閱課本中關于質子質子鏈和的詳細討論。
  3. On the other hand, if the mass of the star is greater than about 1. 1 solar masses, the dominate reaction will be the carbon - nitrogen - oxygen cycle

    假若星體質量更大,核聚變便會主要以cno
  4. The cno cycle is faster and more energy is produced per second. in order to effectively transport the heat energy out from the star, its core has to be convective

    的反應比較快,可以產生更多能量而只有對流核心能將這些多的能量有效地傳遞出去。
  5. Since a carbon nucleus is six times more positively charged than a hydrogen nucleus, the cno cycle can only operate at the higher temperature and density provided by the more massive stars

    但因原子核帶的電荷是氫原子核的六倍需要只有質量大星體所能提供的較高溫度和壓力才能維持。
  6. Not only the subalpine coniferous forests are the importance material woods. but also they are principal part of natural protection projection in southwesten china and important ecological screen to the upper reaches of yangtze river. there is importent significance to study the distributing characteristic of soil microbal quantity, the amount of the microorganism of physiologicaland the distributing character of enzymatic activity to the study of the soil ecological process

    因此,開展對川西地域中獨特的生態境中土壤微生物群落、以及與碳氮循環有關的土壤功能微生物數量和酶活性等的分佈特徵研究,進一步揭示川西亞高山植物群落的生態學過程已成為一項重要的研究課題。
  7. The studies on the biogeochemistry of carbon and nitrogen, carbon and nitrogen cycle in forest ecosystems, or photosynthates supply for nitrogen assimilation and metabolism of plant indicated that carbon and nitrogen could influence each other

    不論探討之生物地質化學,或森林生態系養分,甚至整株植物產生光合產物供給同化與代謝所需,都顯示彼此能相互影響。
  8. The strategic suggestions on remote sensing - based biogeochemical dynamic estimating of carbon - nitrogen cycles in terrestrial ecosystems of china

    開展我國陸地生態系統碳氮循環的生物地球化學遙感動態評估的思路與建議
  9. Abstract : according to the daga of crops yield and soil fertility changes of long term application of fertilizer and nutrients recycling obtained from ecological stations scatrtered in four typical areas under chinese academy of sciences and state minisetry of science and technology, the circulation ratios of organic carbon, phosphorus and nitrogen in the process of feeding - composting in were put forward in the agricultural system of black soi area, the ratios were about 0. 3, 0. 61 and 0. 49, respectively

    文摘:根據中國科學院和國家科技部分佈於四大類型地區的生態站進行的長期施肥及養分再利用的作物產量、土壤肥力質量變化研究數據,提出了黑土區農業系統投料中有機和磷、在飼養? ?堆腐過程中的率。
  10. Review on coupling of interactive functions between carbon and nitrogen cycles in forest ecosystems

    森林生態系統碳氮循環功能耦合研究綜述
  11. The current studies focus in developing multi - scale data - model fusion approaches and new generation of ecosystem models for simulating cross - scale interactions, understanding and quantifying impacts of climate and land use changes on terrestrial ecosystem productivity and water, carbon and nitrogen cycles, and assessing changes in ecosystems services, carrying capacity and sustainability

    目前的研究工作集中於:發展多尺度的數據模型融合方法,建立能夠進行跨尺度機理模擬的新一代生態系統模型;認識氣候和土地利用變化對區域和全國陸地生態系統生產力和水碳氮循環變化的影響;評估生態系統服務功能、承載能力和可持續發展能力。
  12. We suggest that new technologies such as the c and n isotope technique for nutrient cycling and the image analysis approaches for soil micro - structure should be applied on earthworm ecological research in order to better understand the functions of earthworms

    其他新技術如研究養分同位素分析和揭示土壤微結構的圖像分析等技術的應用是蚯蚓生態功能研究的迫切需要。
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