Chinese Journal of Applied Ecology ›› 2004, Vol. ›› Issue (8): 1468-1472.
Previous Articles Next Articles
ZHAO Min, ZHOU Guangsheng
Received:
2003-04-21
Revised:
2003-12-06
Online:
2004-08-15
CLC Number:
ZHAO Min, ZHOU Guangsheng. Forest Inventory Data (FID)-based biomass models and their prospects[J]. Chinese Journal of Applied Ecology, 2004, (8): 1468-1472.
[1] Alexeyev V, Birdsey R, Stakanov V, et al.1995.Carbon in vegetation of Russian forests: Methods to estimate storage and geographical distribution.Water Air Soil Poll, 82: 271 ~ 282 [2] Allen RB, Clinton PW, Davis MR.1997.Carbon storage and availability along a nothofagus forest development sequence in New Zealand.Can J For Res, 27: 323~ 330 [3] Birdsey RA, Plantinga AG, Heath LS.1993.Past and prospective carbon storage in United States forests.For Ecol Man, 59: 33 ~ 40 [4] Brown SL, Schroeder P, Kern JS.1999.Spatial distribution of biomass in forests of the eastern USA.For Ecol Man, 123:81~90 [5] Brown S.2002.Measuring carbon in forests:Current status and future challenges.Environ Poll, 116: 363~ 372 [6] Brown S, Sathaye J, Canell M, et al.1996.Mitigation of carbon emission to the atmosphere by forest management.Com For Rev,75:80~91 [7] Brown S, Schroeder P, Birdsey R.1997.Aboveground biomass distribution of US eastern hardwood forests and the use of large trees as an indicator of forest development.For Ecol Man, 96:37 ~47 [8] Brown S, Lugo AE, Wisniewski J.1992.Missing carbon dioxide.Science, 257:11 [9] Brown S, Lugo AE.1982.The storage and production of organic matter in tropical forests and their role in the global carbon cycle.Biotropica,14:161~ 187 [10] Brown S, Lugo AE.1992.Aboveground biomass estimates for tropical moist forests of Brazilian Amazon.Interciencia, 17: 8 ~ 18 [11] Brown SJ, Gillespie R, Lugo AE.1989.Biomass estimation methods for tropical forests with application to forest inventory data.For Sci, 36: 881 ~ 902 [12] Brown S, Lugo AE.1984.Biomass of tropical forests: A new estimate based on forest volumes.Science, 223:1290~1293 [13] Busing RT, Clebsch EC, White PS.1992.Biomass and production of southern Appalachian cove forests reexamined.Can J For Res,23: 760 ~ 765 [14] Cannell MGR.1982.World Forest Biomass and Primary Production Data.London: Academic Press. [15] Cao M, Woodward FI.1998.Net primary and ecosystem production and carbon stocks of terrestrial ecosystems and their response to climate change.Global Change Biol, 4:185~ 198 [16] Chen JM, Chen W, Liu J, et al.2000.Annual carbon balance of Canadian forests during 1895-1996.Global Biogeochem Cyc, 14:839 ~ 850 [17] Dale VH, Brown S, Flint EP, et al.1994.Estimating CO2 flux from tropical forests.In: Dale VH ed.Effects of Land-use Change on Atmospheric CO2 Concentrations:South and Southeast Asia as a Case Study.New York: Spring- Verlag.365 ~ 378 [18] Delaney MS, Brown AE, Lugo A, et al.1998.The quantity and turnover of dead wood in permanent forest plots in six life zones of Cenezuela.Biotropica, 30: 2 ~ 11 [19] Dixon RK, Brown S, Houghton TA, et al.1994.Carbon pools and flux of global forest ecosystems.Science, 263:185~ 190 [20] Fang J-Y(方精云), Chen A-P(陈安平), Zhao S-Q(赵淑清), et al.2002.Estimating biomass carbon of China' s forests: Supplementary notes on report published in Science.Acta Plytoecol Sin (植物生态学报), 26: 243 ~ 249 (in Chinese) [21] Fang JY, Liu GH, Xu SL.1998.Forest biomass of China: an estimation based on the biomass-volume relationship.Ecol Appl, 8:1084~ 1091 [22] Fang JY, Chen AP, Peng CH, et al.2001.Changes in forest biomass carbon storage in China between 1949 and 1998.Science, 292:2320~2322 [23] Fang J-Y(方精云).2000.Forest biomass carbon pool of middle and high latitudes in the north hemisphere is probably much smaller than present estimates.Acta Phytoecol Sin(植物生态学报),24(5):635~638(in Chinese) [24] Fang J-Y(方精云),Liu G-H(刘国华),Xu S-L(徐嵩龄).1996.Biomass and net production of forest vegetation in China.Acta Ecol Sin(生态学报),16(5):497~508(in Chinese) [25] Feng Z-W(冯宗炜),Zhang J-W(张家武),Deng S-J(邓仕坚).1980.Studying in the Phytomass of Planted Cunninghamia lanceolata Forest.In:Report of Synthesis Inventory in Taoyuan.Henan:Henan Science and Technology Press.(in Chinese) [26] Field CB, Fung IY.1999.The not so-big US carbon sink.Science,285: 53~ 54 [27] Goetz.1998.Scanning the global with remote sensing.Biosceience,48(1) :39~43 [28] Grame M, Hall J, Susank W, et al.2001.Strategies to estimate national forest carbon stocks from inventory data: The 1990 New Zealand baseline.Global Change Biol, 7: 389 ~ 403 [29] Houghton RA.1995.Determining emissions carbon from land: A global strategy.In: Murai S ed.Toward Global Planning of Sustainable Use of the Earth, Development of Global Eco-engineering.Amsterdam: Elsevier Science.59 ~ 76 [30] IGBP Terrestrial Carbon Working Group.1998.The terrestrial carbon cycle: implication for the Kyoto Protocol.Science, 280:1393 ~1394 [31] Isaev A, Korovin G, Zamolod D, et al.1995.Carbon stock and deposition in phytomass of the Russian forests.Water Air Soil Poll,82: 247 ~ 256 [32] Jenkins JC, Birdsey RA, Pan YD.2001.Biomass and NPP estimation for the Mid-Atlantic region(USA)using plot-level inventory data.Ecol Appl, 11:1174~ 1193 [33] Johnson WC, Sharpe DM.1983.The ratio of total to merchantable forest biomass and its application to the global carbon budget.Can J For Res, 13:372~383 [34] Kang H-N(康蕙宁),Ma Q-Y(马钦彦),Yuan J-Z(袁嘉祖).1996.Estimation of the Chinese forest function on carbon sink.Chin J Appl Ecol(应用生态学报),7(3):230~234(in Chinese) [35] Kauppi PE, Mielikinen K, Kunsela K.1992.Biomass and carbon budget of European forests, 1971 to 1990.Science, 256:70~ 74 [36] Krankina ON, Harmon ME, Winjum JK.1996.Carbon storage and sequestration in the Russian forest sector.Ambio, 25: 284~ 288 [37] Lefsky AS, Harding D, Cohen WB et al.1999.Surface lidar remote sensing of basal area and biomass in deciduous forests of eastern Maryland, USA.Remot Sens Environ, 67:83~98 [38] Leith H, Whittaker RH.1975.Primary Productivity of Biosphere.Berlin: Springer-Verlag. [39] Li W-H(李文华),Deng K-M(邓坤枚),Li F(李飞).1981.The study on biomass and production in Changbai mountain major forest ecosystem.For Ecosys Stud, (2) :34~50(in Chinese) [40] Li W-H(李文华),Li F(李飞).1996.Research of Forest in Chi na.Beijing:China Forestry Press.(in Chinese) [41] Li Y-D(李意德).1993.Comparative analysis for biomass measurement oftropical mountain rain forest in Hainan island,China.Acta Ecol Sin(生态学报),13(4):314~320(in Chinese) [42] Liu G-H(刘国华),Fu B-J(傅伯杰),Fang J-Y(方精云).2000.Carbon dynamics of Chinese forests and its contribution to global carbon balance.Acta Phytoecol Sin(植物生态学报),20(5):733~740(in Chinese) [43] Loetsch F, Haller KE,Zohret F.1973.Trans.Lin C-Y(林昌庾),Sha Z(沙琢),eds.1985.Forest Inventory.Beijing:China Forest Press.1~4(in Chinese) [44] Luo T-X(罗天祥),Li W-H(李文华),Zhao S-D(赵士洞).1999.Productivity distribution patterns and modeling of Pinus taulaeformis in China.Chin J Appl Ecol(应用生态学报),10(3):257~261(in Chinese) [45] Luoi T-X(罗天祥),Li W-H(李文华),Leng Y-F(冷允法),et al.1998.Estimation of total biomass and potential distribution of net primary productivity in Tibetean Plateau.Ceog Res(地理研究),17(4):337~344(in Chinese) [46] Luo TX,Li WH,Zhu HZ.2002.Estimated biomass and productivity of natural vegetation on the Tibetan plateau.Ecol Appl,12:980~997 [47] Ma Q-Y(马钦彦),Xie Z-M(谢征鸣).1996.Estimation of carbon stored in Chinese pine forest.J Beijing For Univ(北京林业大学学报),18(3):31~34(in Chinese) [48] Means JE, Acker SA, Harding DJ, et al.1999.Use of large-footprint scanning lidar to estimate forest stand characteristics in the western cascades of Oregon.Remote Sens Environ, 67:298~ 308 [49] Muller RN, Liu Y.1991.Coarse woody debris in an old-growth deciduous forest on the Cumberland plateau, southeastern Kentucky.Can J For Res, 21:1567~ 1572 [50] Murillo JC.1994.The carbon budget of the Spanish forests.Biogeochemistry, 25:197~217 [51] Murillo JCR.1997.Temporal variations in the carbon budget of forest ecosystems in Spain.Ecol Appl, 7: 461 ~ 469 [52] Nemani R, Running S.1997.Land cover characterization using multi temporal Red, Near-IR, and Thermal-IR data from NOAA/AVHRR.Ecol Appl, 7:79 ~90 [53] Olson J, Watts J, Alison L.1983.Carbon in live vegetation of major world ecosystems.Oak Ridge National Laboratory.Tennessee: Oak Ridge. [54] Ovinghton JD.1956.The form, weights and productivity of tree species growth of tree species grown in close stands.New Phytol, [55] Reichle DE, Franklin JF, Goodwell DE.1975.Productivity of World Ecosystems.Washington D.C.: National Academy of Sciences. [56] Remezon NP.1959.Method studying the biological cycles of elements in forest.Soviet Soil Sci, 1:59~67 [57] Rennie PJ.1955.The uptake of nutrients by mature forest growth.Plant Soil, 7:49 ~ 95 [58] Rosenqvist A, Imhoff M, Milne A.1999.Remote Sensing and the KyotoProtocol:A Review of Available and Future Technology for Monitoring Treaty Compliance.Report of a workshop, Ann Arbor,Michigan, USA, October.20~ 22 [59] Sccama TG, Hamburg SP, Arthur MA, et al.1994.Corrections to allometric equations and plant tissue chemistry for hubbard brook experimental forest.Ecology, 75: 246 ~ 248 [60] Schimel DS, House JI, Hibbard KA, et al.2001.Recent patterns and mechanisms of carbon exchange by terrestrial ecosystems.Nature, 414:169~172 [61] Schroeder P, Brown S, Mo J, et al.1997.Biomass estimation for temperate broadleaf forests of the US using inventory data.For Sci, 43: 424 ~ 434 [62] Slsymaker D, Schultz MH, Hanson A, et al.1999.Calculating forest biomass with small format aerial photography, videography and a profiling laser.Proceedings of the 17th Biennial Workshop on Color Photography and Videography in Resource Assessment.241~260 [63] Sundquist ET.1993.The global carbon dioxide budget.Science,259: 934 ~ 941 [64] Turner DP, Koepper GJ, Harmon ME, et al.1995.A carbon budget for forests of the conterminous United States.Ecol Appl, 5:421 ~436 [65] Wang S-Q(王绍强),Zhou C-H(周成虎),Luo C-F(罗承发).1999.Study carbon storage spatial distnbution ofterrestrial natural vegetation in China.Prog Geog(地球科学进展),18(3):238~244(in Chinese) [66] Wang X-K(王效科),Feng Z-W(冯宗炜),Ouyang Z-Y(欧阳志云).2001.Vegetation carbon storage and density of forest ecosystem in China.Chin J Appl Ecol(应用生态学报),12(1):13~16(in Chinese) [67] Wang XK,Feng ZW,Ouyang ZY.2001.The impact of human disturbance on vegetation carbon storage in forest ecosyaem in China.For Ecol Man,148:117~123 [68] Wang Y-H(王玉辉),Zhou G-S(周广胜),Jiang Y-L(蒋延龄),et al.2001.Estimating biomass and NPP of Larix forest based on forest inventory dara(FID).Acta Phytoecol Sin(植物生态学报),25(4):420~425(in Chinese) [69] Whittaker RH, Likens GE.1975.Methods of Assessing Terrestrial Productivity.New York: Springer-Verlag.305 ~ 328 [70] Woodwell GM, Whittaker RH, Reiners WA, et al.1978.The biota and the world carbon budge.Science, 199:141 ~ 146 [71] Zhang XQ, Xu DY.2002.Calculation forest biomass change in China.Science, 296:1359 [72] Zhao S-D(赵士洞),Luo T-X(罗天祥).1998.Approach to the regional scale bio-productivity of terrestrial ecosystem.Resour Sci(资源科学),20(1):24~34(in Chinese) [73] Zhou GS, Wang YH, Jiang YL, et al.2002.Estimating biomass and net primary production from forest inventory data: A case study of China's Larix forests.For Ecol Man, 169:149~ 157 |
[1] | CAO Huayan, MIAO Zheng, HAO Yuanshuo, DONG Lihu. Stem moisture content prediction model for Larix olgensis based on beta regression. [J]. Chinese Journal of Applied Ecology, 2024, 35(3): 587-596. |
[2] | HU Ailian, YANG Juan, LIU Baolin, ZOU Yu. Prediction on the changes in potential suitable areas for mangroves along the coast of Guangxi and the threat from Spartina alterniflora invasion [J]. Chinese Journal of Applied Ecology, 2024, 35(3): 669-677. |
[3] | LI Xiangling, CHEN Fengxian, CHEN Xijuan. Prediction of atrazine degradation in soil based on XGBoost model [J]. Chinese Journal of Applied Ecology, 2024, 35(3): 789-796. |
[4] | CAO Xiaomei, MIAO Zheng, HAO Yuanshuo, DONG Lihu. Height-diameter model of broad-leaved mixed forest based on species classification in Maoershan, Northeast China [J]. Chinese Journal of Applied Ecology, 2024, 35(2): 307-320. |
[5] | LI Jiayu, SHI Xiuzhen, LI Shuaijun, WANG Zhenyu, WANG Jianqing, ZOU Bingzhang, WANG Sirong, HUANG Zhiqun. Effects of stand ages on soil enzyme activities in Chinese fir plantations and natural secondary forests [J]. Chinese Journal of Applied Ecology, 2024, 35(2): 339-346. |
[6] | ZUO Yuzhu, PAN Chengzhong, MA Yongxing, MA Lan. Rainfall-runoff partitioning in small watersheds of different vegetation types in the loess area based on hydrogen and oxygen isotope tracing [J]. Chinese Journal of Applied Ecology, 2024, 35(2): 399-406. |
[7] | GAN Wenjing, MO Shangxuan, ZHANG Jianhong, SONG Xianwei, XIAN Jinmei, YANG Lu, NONG Haiqin. Water conservation pattern of Fangcheng River Basin in Beibu Gulf and its response to precipitation [J]. Chinese Journal of Applied Ecology, 2024, 35(2): 407-414. |
[8] | LU Chang, CAI Xueqin, HAO Canshu, LIU Yuzhen, WANG Zhiyu, MA Ya'nan. Ecosystem service tradeoff and synergistic relationship in the Yellow River Delta High-Efficiency Eco-Economic Zone [J]. Chinese Journal of Applied Ecology, 2024, 35(2): 457-468. |
[9] | YUAN Jiayu, Xiong Li, WU Zhiwei, ZHU Shihao, KANG Ping, LI Shun. Characteristics of pine wood nematode disease in Nankang District, Ganzhou, Jiangxi Province, China [J]. Chinese Journal of Applied Ecology, 2024, 35(2): 507-515. |
[10] | WANG Fei, ZHOU Zihan, HAN Dongrui, WANG Meng, WEI Qinggang, LUO Xiubin, GAO Rui, ZHANG Zhuoran, FANG Jingchun. Research progress in parameterizing irrigation and fertilization in land surface model [J]. Chinese Journal of Applied Ecology, 2024, 35(2): 543-554. |
[11] | LIU Yisheng, HOU Peng, WANG Ping, ZHU Jian. Research advance on quantitative assessment methods of ecosystem water conservation service functions [J]. Chinese Journal of Applied Ecology, 2024, 35(1): 275-288. |
[12] | XIAO Chen, TIAN Dongyuan, MA Rong, DONG Lingbo. Compatibility predictive model for regeneration quantities of Larix gmelinii natural forest in Daxing’anling Mountains, China [J]. Chinese Journal of Applied Ecology, 2023, 34(9): 2345-2354. |
[13] | SUN Long, MA Linggan, GUO Yan, FAN Jiale, CHEN Boxuan, HU Tongxin. Prediction model of water content in surface dead fuel based on convolution neural network and meteoro-logical factors regression [J]. Chinese Journal of Applied Ecology, 2023, 34(9): 2453-2461. |
[14] | QI Yuting, ZHANG Ping, LIU Lei, MA Xuenan, WANG Huan, ZHAO Juan. Multi-scenario optimization of land use structure and prediction of ecosystem service value in Guanzhong Plain urban agglomeration [J]. Chinese Journal of Applied Ecology, 2023, 34(9): 2507-2517. |
[15] | REN Menglin, GUO Yan, CHEN Boxuan, FAN Jiale, HU Tongxin, SUN Long. Prediction models of fire spread rate of Pinus koraiensis plantation's surface fuel [J]. Chinese Journal of Applied Ecology, 2023, 34(8): 2091-2100. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||