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   营养生产力 的翻译结果: 查询用时:0.015秒
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营养生产力
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  nutritive productivity
     The bio-productivity and nutritive productivity of mesophytism are higher than that of xeromorphy obviously.
     中生型与旱生型比较,其生物生产力和营养生产力皆为前者明显高于后者。
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  “营养生产力”译为未确定词的双语例句
     The highest forage yield was obtained from O. viciaefolia: 4 247.33 kg aboveground dry matter per hectare, containing 480.37 kg crude protein, 45.45 kg calcium and 5.82 kg phosphorus.
     红豆草区地上净最大营养生产力最高,粗蛋白、钙和磷分别达到480.37、45.45和5.82kg/hm2。
短句来源
     As regards nutrtivitie productivities, metabolic energy, digested energy, crude protein, crude fiber, nitrogen-free extract, total crude nutrient and crude ash of tropical mesophytism type are higher than that of other type of artificial rangeland. Each nutritive productivities of cold-temperate xeromorphy type are all lower man mat of other type of artificial rangeland.
     就营养生产力而言,代谢能、消化能、粗蛋白、粗纤维、无氮浸出物、总粗养分和粗灰分以热性中生型人工牧地最高,寒温性旱生型人工牧地的各项营养生产力均为最低。
短句来源
  相似匹配句对
     Creative productivity
     创意生产力
短句来源
     Environmental Nutrition
     环境营养
短句来源
     the nutritional function;
     营养作用 ;
短句来源
     The productivity of reproductive ramets was 4~7 times than that of the vegetative ramets.
     生殖分株的生产力营养分株的4~7倍。
短句来源
     soil productivity;
     土壤生产力;
短句来源
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  nutrient productivity
NUE was measured as the product of the mean residence time of a unit of nutrient in the population (MRT: yr) and nutrient productivity (A: annual productivity per unit of nutrient in the population, g g-1 nutrient yr-1.
      
Low resource levels may favor competitive dominance by small-bodied taxa while large Daphnia may be favored under high resource conditions or following a nutrient/productivity pulse.
      
Biomass and foliar N and P concentrationsincreased while nutrient productivity (biomass/shootN content) decreased with increasing nutrient supply.
      
The main hypothesis tested was that species with a particular trait combination of high relative growth rate (RGR), low nutrient productivity (A) and high mean residence time (MRT) of nutrients would be most effective in accumulating nutrients.
      
A tree growth model, based on the nutrient productivity concept, is supplemented with soil processes to form an integrated plant-soil model containing the most important soil processes for acidification.
      


Four leguminous forage species were introduced to the deteriorated natural alpine Kobresia grassland in the south of Gansu to determine their effect on promoting grassland productivity. The species tested were Onobrychis viciaefolia, Trifolium pratense, T. repens and Medicago sativa. It was shown that O. viciaefolia, T. pratense and M. sativa can grow normally under the local conditions, and their growth was consistent with the Logistic Growth Model, in which the inflexion points on the growth curves...

Four leguminous forage species were introduced to the deteriorated natural alpine Kobresia grassland in the south of Gansu to determine their effect on promoting grassland productivity. The species tested were Onobrychis viciaefolia, Trifolium pratense, T. repens and Medicago sativa. It was shown that O. viciaefolia, T. pratense and M. sativa can grow normally under the local conditions, and their growth was consistent with the Logistic Growth Model, in which the inflexion points on the growth curves of the 3 species took place during JuneJuly when the maximum of combined waterheat values was attained. The highest forage yield was obtained from O. viciaefolia: 4 247.33 kg aboveground dry matter per hectare, containing 480.37 kg crude protein, 45.45 kg calcium and 5.82 kg phosphorus.

报道了退化嵩草型高山草地补播4种优良豆科植物对草地牧草生长、地上生物量及地上净最大营养物质生产力的影响。结果表明,补播红豆草、紫花苜蓿和红三叶能正常生长发育,其生长符合逻辑斯谛曲线,生长拐点出现在水热最大组合的6~7月。红豆草区地上生物量(干物质)达到4247.33kg/hm2,与其他试验区地上生物量有极显著差异(P<0.01)。红豆草区地上净最大营养生产力最高,粗蛋白、钙和磷分别达到480.37、45.45和5.82kg/hm2。

The bio-productivities of each type of artificial rangeland are tropical mesophytism, tropical xeromorphy, temeperate-warm mesophytism, cold-temperate mesophytism, cold-temperate xeromorphy type, decreasingly. As regards nutrtivitie productivities, metabolic energy, digested energy, crude protein, crude fiber, nitrogen-free extract, total crude nutrient and crude ash of tropical mesophytism type are higher than that of other type of artificial rangeland. Each nutritive productivities of cold-temperate xeromorphy...

The bio-productivities of each type of artificial rangeland are tropical mesophytism, tropical xeromorphy, temeperate-warm mesophytism, cold-temperate mesophytism, cold-temperate xeromorphy type, decreasingly. As regards nutrtivitie productivities, metabolic energy, digested energy, crude protein, crude fiber, nitrogen-free extract, total crude nutrient and crude ash of tropical mesophytism type are higher than that of other type of artificial rangeland. Each nutritive productivities of cold-temperate xeromorphy type are all lower man mat of other type of artificial rangeland. The bio-productivity and nutritive productivity of mesophytism are higher than that of xeromorphy obviously. The improved range of crude protein productivity for each type of artificial rangeland is higher than that of other organic nutritive matter as compared with relevant nrtural rangeland.

各类人工牧地的生物生产力依次为热性中生型>热性旱生型>暖温性中生型>寒温性中生型>寒温性旱生型。就营养生产力而言,代谢能、消化能、粗蛋白、粗纤维、无氮浸出物、总粗养分和粗灰分以热性中生型人工牧地最高,寒温性旱生型人工牧地的各项营养生产力均为最低。中生型与旱生型比较,其生物生产力和营养生产力皆为前者明显高于后者。与天然牧地比较,在各类有机营养物质中,各类人工牧地的粗蛋白生产力提高幅度最大。

 
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