[1] 赵敏, 周广胜.基于森林资源清查资料的生物量估算模式及其发展趋势[J].应用生态学报, 2004, 15(8):1468-1472.

ZHAO Min, ZHOU Guangsheng. Forest inventory data (FID)-based biomass models and their prospects[J]. Chin J Appl Ecol, 2004, 15(8):1468-1472.
[2] 孙长忠, 沈国舫, 李吉跃, 等.我国主要树种人工林生产力现状及潜力的调查研究(Ⅱ)桉树、落叶松及樟子松人工林生产力研究[J].林业科学研究, 2001, 14(6):657-667.

SUN Changzhong, SHEN Guofang, LI Jiyue, et al. Study on the present condition and the potentialities of the productivity of main tree species plantation of China(Ⅱ) study on the plantation productivities of Eucalyptus, Larix and Pinus sylvestris var. mongolica[J]. For Res, 2001, 14(6):657-667.
[3] 肖乾广, 陈维英, 盛永伟, 等.用NOAA气象卫星的AVHRR遥感资料估算中国的净第一性生产力[J].植物学报, 1996, 38(1):35-39.

XIAO Qianguang, CHEN Weiying, SHENG Yongwei, et al. Estimating the net primary productivity in China using meteorological satellite data[J]. Acta Bot Sin, 1996, 38(1):35-39.
[4] 肖兴威.中国森林生物量与生产力的研究[D].哈尔滨: 东北林业大学, 2005.

XIAO Xingwei. Study on Forest Biomass and Productivity in China[D]. Harbin: Northeast Forestry University, 2005.
[5] 黄兴召, 许崇华, 徐俊, 等.利用结构方程解析杉木林生产力与环境因子及林分因子的关系[J].生态学报, 2017, 37(7):2274-2281.

HUANG Xingzhao, XU Chonghua, XU Jun, et al. Structural equation model analysis of the relationship between environmental and stand factors and net primary productivity in Cunninghamia lanceolata forests[J]. Acta Ecol Sin, 2017, 37(7):2274-2281.
[6] 荣薏, 何斌, 黄恒川, 等.桂西北第2代杉木人工林的生物生产力[J].广西农业生物科学, 2008, 27(4):451-455.

RONG Yi, HE Bin, HUANG Hengchuan, et al. Biomass productivity of the second generation Cunninghamia lanceolata plantation in northwest of Guangxi[J]. J Guangxi Agric Biol Sci, 2008, 27(4):451-455.
[7] 张雄清, 张建国, 段爱国.基于贝叶斯法估计杉木人工林树高生长模型[J].林业科学, 2014, 50(3):69-75.

ZHANG Xiongqing, ZHANG Jianguo, DUAN Aiguo. Tree-height growth model for Chinese fir plantation based on Bayesian method[J]. Sci Silv Sin, 2014, 50(3):69-75.
[8] 张雄清, 张建国, 段爱国.杉木人工林林分断面积生长模型的贝叶斯法估计[J].林业科学研究, 2015, 28(4):538-542.

ZHANG Xiongqing, ZHANG Jianguo, DUAN Aiguo. Application of Bayesian method in stand basal area prediction of Chinese fir plantation[J]. For Res, 2015, 28(4):538-542.
[9] 佟金权.不同地位指数不同密度杉木人工林生产力的比较[J].福建农林大学学报(自然科学版), 2008, 37(4):369-373.

TONG Jinquan. Study on the biomass productivity and growth of Chinese fir plantations of different site and density[J]. J Fujian Agric For Univ Nat Sci Ed, 2008, 37(4):369-373.
[10] 曹元帅, 孙玉军.基于广义代数差分法的杉木人工林地位指数模型[J].南京林业大学学报(自然科学版), 2017, 41(5):79-84.

CAO Yuanshuai, SUN Yujun. Generalized algebraic difference site index model for Chinese fir plantation[J]. J Nanjing For Univ Nat Sci Ed, 2017, 41(5):79-84.
[11] 唐正良, 陶吉兴.浙江省杉木立地条件划分的初步方案[J].浙江林业科技, 1991, 11(6):1-6.

TANG Zhengliang, TAO Jixing. A tentative program on the classification of site conditions of Chinese fir forests in Zhejiang Province[J]. J Zhejiang For Sci Technol, 1991, 11(6):1-6.
[12] 王枫, 沈月琴, 朱臻, 等.杉木碳汇的经济学分析:基于浙江省的调查[J].浙江农林大学学报, 2012, 29(5):762-767.

WANG Feng, SHEN Yueqin, ZHU Zhen, et al. Economic analysis of Chinese fir forest carbon sequestration:based on Zhejiang's survey[J]. J Zhejiang A&F Univ, 2012, 29(5):762-767.
[13] 王枫, 沈月琴, 孙玉贵.基于成本利润率的碳汇交易价格研究:以浙江省杉木林经营为例[J].林业经济问题, 2012, 32(2):104-108.

WANG Feng, SHEN Yueqin, SUN Yugui. The study on carbon transaction price based on cost-profit ratio:the case of Chinese fir management in Zhejiang Province[J]. Issu For Econ, 2012, 32(2):104-108.
[14] 张骏, 葛滢, 江波, 等.浙江省杉木生态公益林碳储量效益分析[J].林业科学, 2010, 46(6):22-26.

ZHANG Jun, GE Ying, JIANG Bo, et al. Carbon storage efficiency of Cunninghamia lanceolata ecological service forest in Zhejiang[J]. Sci Sil Sin, 2010, 46(6):22-26.
[15] 唐正良, 王同新.浙江省杉木用材林林价评定的研究[J].浙江林业科技, 1989, 9(1):1-7.

TANG Zhengliang, WANG Tongxin. Studies on the valuation of forest value of common Chinese fir timber stands in Zhejiang Province[J]. J Zhejiang For Sci Technol, 1989, 9(1):1-7.
[16] 朱汤军, 沈楚楚, 季碧勇, 等.基于LULUCF温室气体清单编制的浙江省杉木林生物量换算因子[J].生态学报, 2013, 33(13):3925-3932.

ZHU Tangjun, SHEN Chuchu, JI Biyong, et al. Research on biomass expansion factor of Chinese fir forest in Zhejiang Province based on LULUCF greenhouse gas inventory[J]. Acta Ecol Sin, 2013, 33(13):3925-3932.
[17] 郭志华, 彭少麟, 王伯荪.利用TM数据提取粤西地区的森林生物量[J].生态学报, 2002, 22(11):1832-1839.

GUO Zhihua, PENG Shaolin, WANG Bosun. Estimating forest biomass in western Guangdong using landsat TM data[J]. Acta Ecol Sin, 2002, 22(11):1832-1839.
[18]

HÄME T, SALLI A, ANDERSSON K, et al. A new methodology for the estimation of biomass of coniferdominated boreal forest using NOAA AVHRR data[J]. Int J Remote Sens, 1997, 18(15):3211-3243.
[19]

DONG Jiarui, KAUFMANN R K, MYNENI R B, et al. Remote sensing estimates of boreal and temperate forest woody biomass:carbon pools, sources, and sinks[J]. Remote Sens Environ, 2003, 84:393-410.
[20]

RUNNING S W, GOWER S T. FOREST-BGC, a general model of forest ecosystem processes for regional applications(Ⅱ) dynamic carbon allocation and nitrogen budgets[J]. Tree Physiol, 1991, 9:147-160.
[21]

PETERSON D L, WARING R H. Overview of the oregon transect ecosystem research project[J]. Ecol Appl, 1994, 4(2):211-225.
[22]

BROWN S, LUGO A E. Biomass of tropical forests:a new estimate based on forest volumes[J]. Science, 1984, 223(4642):1290-1239.
[23]

BROWN S, GILLESPIE A J R, LUGO A E. Biomass estimation methods for tropical forests with application to forest inventory data[J]. For Sci, 1989, 35(4):881-902.
[24]

KAUPPI P E, MIELIKÄINEN K, KUUSELA K. Biomass and carbon budget of European forests, 1971 to 1990[J]. Science, 1992, 256(5053):70-74.
[25]

BIRDSEY R A, PLANTINGA A G, HEATH L S. Past and prospective carbon storage in United States forests[J]. For Ecol Manage, 1993, 58(1/2):33-40.
[26]

BROWN S, LUGO A E. Above ground biomass estimates for tropical moist forests of Brazilian Amazon[J]. Interciencia, 1992, 17(1):8-18.
[27]

FANG Jingyun, CHEN Anping, PENG Changhui, et al. Changes in forest biomass carbon storage in China between 1949 and 1998[J]. Science, 2001, 292(5525):2320-2322.
[28] 方精云, 陈安平, 赵淑清, 等.中国森林生物量的估算:对FANG等Science一文(Science, 2001, 291:2320~2322)的若干说明[J].植物生态学报, 2002, 26(2):243-249.

FANG Jingyun, CHEN Anping, ZHAO Shuqing, et al. Estimating biomass carbon of China's forests:supplementary notes on report published in Science (291:2320-2322) by FANG et al. (2001)[J]. Acta Phytoecol Sin, 2002, 26(2):243-249.
[29] 张茂震, 王广兴, 刘安兴.基于森林资源连续清查资料估算的浙江省森林生物量及生产力[J].林业科学, 2009, 45(9):13-17.

ZHANG Maozhen, WANG Guangxing, LIU Anxing. Estimation of forest biomass and net primary production for Zhejiang Province based on continuous forest resources inventory[J]. Sci Sil Sin, 2009, 45(9):13-17.