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千烟洲人工林主要树种地上生物量的估算
引用本文:李轩然,刘琪璟,陈永瑞,胡理乐,杨风亭.千烟洲人工林主要树种地上生物量的估算[J].应用生态学报,2006,17(8):1382-1388.
作者姓名:李轩然  刘琪璟  陈永瑞  胡理乐  杨风亭
作者单位:1. 中国科学院地理科学与资源研究所,北京,100101;中国科学院研究生院,北京,100039;赤峰学院环境与资源管理系,赤峰,024001
2. 中国科学院地理科学与资源研究所,北京,100101
3. 中国科学院沈阳应用生态研究所,沈阳,110016
基金项目:国家重点基础研究发展计划(973计划);中国科学院科研项目
摘    要:利用不同参数和函数,模拟了千烟洲人工林主要树种马尾松、湿地松和杉木的枝条、叶生物量和总生物量及单株各器官生物量,选择最佳函数计算生物量在各树种不同器官中的分配,估算不同林型的地上生物量.结果表明,不同树种的枝条基径(d)和枝条生物量(BW)、叶生物量(LW)之间,当d3为自变量时,相关系数最高,湿地松利用线性函数、马尾松和杉木利用幂函数模拟效果最佳;单木总生物量以利用D2H(胸径2×树高)为自变量的幂函数模拟相关系数最高;3个树种叶和枝生物量各有不同的最佳自变量和函数类型,但同一树种的叶、枝生物量最佳拟合方程的自变量和函数类型一致.马尾松林、湿地松林和杉木林的地上生物量分别为83.6、72.1和59 t·hm-2,其中树干生物量所占比重最大,叶生物量最小.根据前人的研究结果推算3种林分地下生物量分别为10.44、9.42和11.48 t·hm-2,其固碳量分别为47.94、45.14和37.52 t·hm-2.

关 键 词:马尾松  湿地松  杉木  生物量  相对生长方程
文章编号:1001-9332(2006)08-1382-07
收稿时间:2005-07-18
修稿时间:2006-05-30

Aboveground biomass of three conifers in Qianyanzhou plantation
LI Xuanran,LIU Qijing,CHEN Yongrui,HU Lile,YANG Fengting.Aboveground biomass of three conifers in Qianyanzhou plantation[J].Chinese Journal of Applied Ecology,2006,17(8):1382-1388.
Authors:LI Xuanran  LIU Qijing  CHEN Yongrui  HU Lile  YANG Fengting
Institution:Institute of Geographical Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China. lxuanr@163.com
Abstract:In this paper, the regressive models of the aboveground biomass of Pinus elliottii, P. massoniana and Cunninghamia lanceolata in Qianyanzhou of subtropical China were established, and the regression analysis on the dry weight of leaf biomass and total biomass against branch diameter (d), branch length (L), d3 and d2L was conducted with linear, power and exponent functions. Power equation with single parameter (d) was proved to be better than the rests for P. massoniana and C. lanceolata, and linear equation with parameter (d3) was better for P. elliottii. The canopy biomass was derived by the regression equations for all branches. These equations were also used to fit the relationships of total tree biomass, branch biomass and foliage biomass with tree diameter at breast height (D), tree height (H), D3 and D2H, respectively. D2H was found to be the best parameter for estimating total biomass. For foliage-and branch biomass, both parameters and equation forms showed some differences among species. Correlations were highly significant (P <0.001) for foliage-, branch-and total biomass, with the highest for total biomass. By these equations, the aboveground biomass and its allocation were estimated, with the aboveground biomass of P. massoniana, P. elliottii, and C. lanceolata forests being 83.6, 72. 1 and 59 t x hm(-2), respectively, and more stem biomass than foliage-and branch biomass. According to the previous studies, the underground biomass of these three forests was estimated to be 10.44, 9.42 and 11.48 t x hm(-2), and the amount of fixed carbon was 47.94, 45.14 and 37.52 t x hm(-2), respectively.
Keywords:Pinus massoniana  Pinus eUiottii  Cunninghamia lanceolata  Biomass  Allometric equation  
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