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1)  1,2-Cunninghamia lanceolata plantation
1,2-代连栽人工杉木林
2)  Cunninghamia lanceolata continuously planted forest land
杉木连栽林地
3)  Successive planting of Cunninghamia lanceolata
杉木多代连栽
4)  Chinese fir plantation
杉木人工林
1.
Nutrient flux and its dynamic change of litterfall in a Chinese fir plantation forest;
杉木人工林凋落物养分通量及其动态
2.
Effects of nitrogen deposition on the soil base cations in Chinese fir plantation;
氮沉降对杉木人工林土壤盐基离子的影响
3.
Litter fall and its seasonal dynamic change of Chinese fir plantation;
杉木人工林凋落物量及其季节动态
5)  Cunninghamia lanceolata plantation
杉木人工林
1.
The analysis on integrated management effect of thinning to reduce the occupation for Cunninghamia lanceolata plantations;
杉木人工林降位间伐的综合经营效果分析
2.
Characteristics of soil microbial biomass carbon and nitrogen and their relationships with soil nutrients in Cunninghamia lanceolata plantations.;
杉木人工林土壤微生物生物量碳氮特征及其与土壤养分的关系
3.
Biomass of Cunninghamia lanceolata plantation was investigated on 3 plots with better,middle & poor slope in Jingxi town in Minhou County.
在闽侯县荆溪镇三块立地条件大体属好、中、差不同坡位的杉木人工林样地进行生物量调查,调查结果表明,20年生杉木人工林在不同立地条件下干物质积累量差异显著,下坡干物质积累量(生物量)为154。
6)  Chinese Fir
人工杉木林
1.
It can be found that broad-leaved evergreen forest contained more microbial biomass (MBC) and the ease of oxidation of carbon (EOC) compared with Chinese Fir and Masson Pine stands.
采样分析常绿阔叶林、马尾松林和人工杉木林不同层次土壤的活性有机碳含量。
2.
By using orthogonal design, this paper systematically analysed the variation law of fiber morphology of Chinese fir wood from plantations with different ages, densities and growing sites.
应用正交试验设计方法,系统分析了不同林龄、不同立地条件和不同林分密度下人工杉木林木材纤维形态的变异规律。
补充资料:栽人
1.捉弄人,陷害人。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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