Articles

Advances in Integrative Studies on Terrestrial Ecosystem and Global Change through Combining Various Observing Systems and Networks

  • Niu Dong ,
  • LI Zhen-quan
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  • 1.Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085,China; 2.Institute of Geographical Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China; 3.Bureau of Science and Technology for Resources and Environment, Chinese Academy of Sciences, Beijing 100864, China

Received date: 2006-11-01

  Revised date: 2006-11-06

  Online published: 2006-11-15

Abstract

Environmental regime resulted from global change has become a big challenge that is commonly concerned by international society including scientists and technicians. Combination of various observing systems, as an effective and complex method package, has been widely recognized and applied in expounding the interrelations of global changes and terrestrial ecosystems. The paper addressed the importance of combining various observing systems in global change studies and made a brief introduction to several influential systems or networks of global terrestrial ecosystem observation. On the basis above, the main contributions to global change studies and the development of Chinese networks and systems for global terrestrial ecosystem observation have been evaluated. On the necessary for development in science and technology and social economy of China, the paper tentatively proposed the prior research fields in terrestrial ecosystems through combining observation systems and networks.

Cite this article

Niu Dong , LI Zhen-quan . Advances in Integrative Studies on Terrestrial Ecosystem and Global Change through Combining Various Observing Systems and Networks[J]. Advances in Earth Science, 2006 , 21(11) : 1199 -1206 . DOI: 10.11867/j.issn.1001-8166.2006.11.1199

References

[1] Fu Bojie, Niu Dong, Zhao Shidong. Science study on global change and terrestrial ecosystems: History and prospect[J]. Advances in Earth Science, 2005, 20 (5): 556-560.[傅伯杰, 牛栋, 赵士洞. 全球变化与陆地生态系统研究: 回顾与展望[J]. 地球科学进展, 2005, 20 (5) : 556-560. ]

[2] Chen Yiyu. Direction in the future of IGBP [J]. Advances in Earth Science, 2001, 16 (1): 15-17. [陈宜瑜.IGBP未来发展方向 [J]. 地球科学进展, 2001, 16 (1): 15-17.]

[3] Yu Guirui. Global Change, Carbon Cycle and Storage in Terrestrial Ecosystem [M]. Beijing: China Meteorological Press, 2003, 22-96.[于贵瑞. 全球变化与陆地生态系统碳循环和碳蓄积 [M ]. 北京: 气象出版社, 2003, 22-96.]

[4] Zhao Shidong. Background, present and future—ILTER [J]. Acta Phytoecologica Sinica, 2001, 25(4): 510-512.[赵士洞. 国际长期生态研究网络( ILTER) —背景、现状和前景 [J]. 植物生态学报, 2001, 25 (4): 510-512.]

[5] Koch G W, Scholes R J, Steffen W L, et al. The IGBP Terrestrial Transects: Science Plan [R]. IGBP Reports No. 36. Stockholm: IGBP, 1995, 61.

[6] Zhang Zhiqiang, Sun Chengquan. ENRICH and its Implement Project[J]. Advances in Earth Science, 1996, 11 (1): 65-73.[张志强, 孙成权. 欧洲全球变化研究网络(ENRICH)及其实施计划[J]. 地球科学进展, 1996, 11 (1): 65-73.]

[7] Cai Xiaoming. Ecosystem ecology[M]. Beijing: Science Press, 2002, 56-66. [蔡晓明. 生态系统生态学 [M]. 北京: 科学出版社, 2002, 56-66.]

[8] Dennis Baldocchi, Eva Falge, Lianhong Gu, et al. FLUXNET: A New Tool to Study the Temporal and Spatial Variability of Ecosystem-Scale Carbon Dioxide, Water Vapor, and Energy Flux Densities[J]. Bulletin of the American Meteorological Society,2001,82(11): 2 415-2 434.

[9] Cihlar J, Denning A S, Gosz J. Global Terrestrial Carbon Observation: Requirements, present status, and next steps[C]. 2000, 1-7.

[10] Yu Guirui, Zhang Leiming, Sun Xiaoming. Advances in carbon flux observation and research in Asia[J]. Science in China(Series D), 2005, 48 (Supp.I): 1-16.

[11] Ni Jian, Wang Guohong. Northeast China Transect (NECT): Ten-Year Synthesis and Future Challenges[J]. Acta Botanica Sinica, 2004, 46(4): 379-391.

[12] Gao Qiong, Li Xiaobin, Yang Xiusheng. Responses of Vegetation and Primary Production in North-South Transect of Eastern China to Global Change Under Land Use Constraint[J]. Acta Botanica Sinica, 2003, 45(11): 1 274-1 284.

[13] Liu Gang, Han Yong, Zhu Jianguo, et al. Rice-wheat rotational FACE platform I. System structure and control[J]. Chinese Journal of Applied Ecology, 2002, 13(10):1 253-1 258.[刘钢, 韩勇, 朱建国, . 稻麦轮作FACE系统平台I. 系统结构与控制 [J]. 应用生态学报, 2002, 13 (10):1 253-1 258.]

[14] Ding Yihui, Li Chongyin, Liu Yanju, et al. South China sea monsoon experiment[J]. Climatic and Environment Research, 2002, 7(2): 202-208.[丁一汇, 李崇银, 柳艳菊, . 南海季风试验研究 [J]. 气候与环境研究, 2002, 7(2): 202-208.]

[15] Zhou Xiaogang, Luo Yunfeng. Introduction on the Major Project of “Huaihe River Basin Energy and Water Cycle Experiment”[J]. Bulletin of National Science Foundation of China, 2004,4: 226-228. [周小刚, 罗云峰. 九五基金重大项目:淮河流域能量与水分循环试验和研究介绍与回顾 [J]. 中国科学基金, 2004, 4: 226-228. ]

[16] Xu Xiangde. Introduction of TIPEX[J]. Science and Technology Information of China, 1998, Z2: 95. [徐祥德. 青藏高原科学试验(TIPEX)介绍 [J].中国科技信息, 1998, Z2: 95.]

[17] Huang Yao. Study on Carbon Budget in Terrestrial and Marginal Sea Eco systems of China[J]. Bulletin of Chinese Academy of Sciences,2002, (2): 104-107.[黄耀. 中国陆地和近海生态系统碳收支研究 [J]. 中国科学院院刊, 2002, (2): 104-107.]

[18] Yang Linzhang, Sun Bo, Liu Jian. Progress in translocation and transformation of nutrients in agroecosystems and its optimized management[J]. Advances in Earth Science, 2002, 17(3): 441-445.[杨林章, 孙波, 刘健.农田生态系统养分迁移转化与优化管理研究[J]. 地球科学进展, 2002, 17(3): 441-445.]

[19] Wang Shuping, Zhou Guangsheng, Lu Yucai, et al. Distribution of soil carbon, nitrogen and phosphorus along northeast China transect (NECT) and their relations with climatic factors[J]. Acta Phytoecologica Sinica, 2002, 26(5): 513-517.[王淑平, 周广胜, 吕育财, . 中国东北样带(NECT)土壤碳、氮、磷的梯度分布及其气候因子的关系[J]. 植物生态学报, 2002, 26(5): 513-517.]

[20] Zhou Guangsheng, Wang Yuhui, Xu Zhenzhu, et al. The research progress of carbon cycling in northeast China transect [J]. Natural Science Progress, 2003, 13(9): 917-922.[周广胜, 王玉辉, 许振柱, . 中国东北样带碳循环研究进展[J]. 自然科学进展, 2003, 13(9): 917-922.]

[21] Su Bo, Han Xingguo, Li Linghao, et al. Reponses of 13C value and water use effieicency of plant species to environmental gradients along the grassland zone of northeast China transect[J]. Acta Phytoecologica Sinica, 2000, 24(6): 648-655.[苏波, 韩兴国, 李凌浩, . 中国东北样带草原区植物13C值及水分利用效率对环境梯度的响应[J]. 植物生态学报, 2000, 24(6): 648-655.]

[22] Li Zong, Sun Bo, Zhao Qiguo. Density and storage of soil organic carbon in east China[J]. Agro-environmental Protection, 2001, 20(6): 385-389.[李忠, 孙波, 赵其国. 我国东部土壤有机碳的密度和储量[J]. 农业环境保护, 2001, 20(6): 385-389.]

[23] Peng Shaolin, Zhao Ping, Ren Hai, et al. The possible heat-driven pattern variation of zonal vegetation and agricultural ecosystem along the north-south transect of China under the global change[J]. Earth Science Frontiers, 2002, 9(1): 217-226.[彭少麟, 赵平, 任海, . 全球变化压力下中国东部样带植被与农业生态系统格局的可能性变化[J]. 地学前缘, 2002, 9(1):217-226.]

[24] Yu Guirui, Wang Qiufeng, Yu Zhenliang. Study on the coupling cycle of water-carbon and process management in terrestrial ecosystem[J]. Advances in Earth Science, 2004, 19(5): 831-839.[于贵瑞, 王秋凤,于振良. 陆地生态系统水碳耦合循环与过程管理研究[J].地球科学进展,2004, 19(5):831-839.]

[25] Yu Wantai, Zhang Lu, Yin Xiuyan, et al. Geographic differentiation of yield-increase efficiency caused by recycled nutrients in agro-ecosystems[J]. Transactions of the CSAE, 2003, 19(6):28-31.[宇万太, 张璐, 殷秀岩,.农业生态系统养分循环再利用作物产量增益的地理分异 [J]. 农业工程学报, 2003, 19(6): 28-31.]

[26] Chen Yiyu, Chen Banqing, Ge Quansheng, et al. Global change research: progress and prospect[J]. Earth Science Frontiers,2002, 9(1): 11-18.[陈宜瑜, 陈泮勤, 葛全胜, . 全球变化研究进展与展望[J]. 地学前缘, 2002, 9(1): 11-18.]

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