韩兴国  男  博导  中国科学院植物研究所
电子邮件: xghan@ibcas.ac.cn
通信地址: 北京市海淀区香山南辛村20号
邮政编码: 100093

研究领域

生态系统生态学、保护生态学、生物地球化学、全球变化生物学、生态学历史

招生信息

博士生导师

招生专业
071300-生态学
招生方向
生态系统生态学
生物地球化学
全球变化生物学

教育背景

1985-10--1989-09   美国乔治亚大学   博士
1978-10--1982-07   山东农业大学   学士
学历

研究生

学位

博士

教授课程

生态系统生态学
生态系统生态学论文设计

专利与奖励

2013年“中国生态系统研究网络的创建及观测研究和试验示范”项目获国家科学技术进步一等奖,韩兴国研究员为第四完成人。

出版信息

韩兴国,李凌浩主编. 2012. 内蒙古草地生态系统维持机理. 北京:中国农业大学出版社

邬建国,葛剑平,韩兴国,余振良,张大勇. 2007. 《现代生态学讲座(III):学科进展与热点论题》. 北京:高等教育出版社

邬建国, 韩兴国, 黄建辉主编. 2001.《现代生态学讲座》(二):基础研究与环境问题. 科学技术出版社.

韩兴国, 李凌浩, 黄建辉(主编). 1999. 生物地球化学概论. 高等教育出版社. 施普林格出版社. 325页

蒋志刚, 马克平, 韩兴国(主编). 1997. 保护生物学. 浙江科学技术出版社. 263页

韩兴国. 1995. 生态演替理论与生态系统的恢复和重建. 第1-15页. 见;陈伟烈, 韩兴国, 贺金生(编著). 1995. 中国退化生态系统研究. 北京: 中国科学技术出版社. 246页

陈灵芝, 陈伟烈, 韩兴国, 贺金生(编著).  1995. 中国退化生态系统研究. 北京: 中国科学技术出版社. 246页

韩兴国. 1994. 岛屿生物地理学理论与生物多样性保护. 第83-103页. 钱迎情, 马克平(主编). 生物多样性研究的原理与方法. 北京: 中国科学技术出版社

韩兴国, 程维信. 1992. 养分的生物地球化学循环. 第73-100页. 见: 刘建国等主编: 当代生态学博论. 北京: 中国科学技术出版社


发表论文
[1] Ma, Wang, Liang, Xiaosa, Wang, Zhengwen, Luo, Wentao, Yu, Qiang, Han, Xingguo. Resistance of steppe communities to extreme drought in northeast China. PLANT AND SOIL[J]. 2022, 473(1-2): 181-194, [2] Chen, Jingyan, Dong, Gang, Chen, Jiquan, Jiang, Shicheng, Qu, Luping, Legesse, Tsegaye Gemechu, Zhao, Fangyuan, Tong, Qi, Shao, Changliang, Han, Xingguo. Energy balance and partitioning over grasslands on the Mongolian Plateau. ECOLOGICAL INDICATORS[J]. 2022, 135: [3] Yang, GuoJiao, Hautier, Yann, Zhang, ZiJia, Lu, XiaoTao, Han, XingGuo. Decoupled responses of above- and below-ground stability of productivity to nitrogen addition at the local and larger spatial scale. GLOBAL CHANGE BIOLOGY[J]. 2022, 28(8): 2711-2720, [4] Su, Jiao, Zhang, Haiyang, Han, Xingguo, Penuelas, Josep, Filimonenko, Ekaterina, Jiang, Yong, Kuzyakov, Yakov, Wei, Cunzheng. Low carbon availability in paleosols nonlinearly attenuates temperature sensitivity of soil organic matter decomposition. GLOBAL CHANGE BIOLOGY. 2022, [5] Gurmesa, Geshere Abdisa, Wang, Ang, Li, Shanlong, Peng, Shushi, de Vries, Wim, Gundersen, Per, Ciais, Philippe, Phillips, Oliver L, Hobbie, Erik A, Zhu, Weixing, Nadelhoffer, Knute, Xi, Yi, Bai, Edith, Sun, Tao, Chen, Dexiang, Zhou, Wenjun, Zhang, Yiping, Guo, Yingrong, Zhu, Jiaojun, Duan, Lei, Li, Dejun, Koba, Keisuke, Du, Enzai, Zhou, Guoyi, Han, Xingguo, Han, Shijie, Fang, Yunting. Retention of deposited ammonium and nitrate and its impact on the global forest carbon sink. NATURE COMMUNICATIONS[J]. 2022, 13(1): http://dx.doi.org/10.1038/s41467-022-28345-1.
[6] Luo, Wentao, Zuo, Xiaoan, GriffinNolan, Robert J, Xu, Chong, Sardans, Jordi, Yu, Qiang, Wang, Zhengwen, Han, Xingguo, Penuelas, Josep. Chronic and intense droughts differentially influence grassland carbon-nutrient dynamics along a natural aridity gradient. PLANT AND SOIL[J]. 2022, 473(1-2): 137-148, [7] Song, Lin, Luo, Wentao, GriffinNolan, Robert J, Ma, Wang, Cai, Jiangping, Zuo, Xiaoan, Yu, Qiang, Hartmann, Henrik, Li, MaiHe, Smith, Melinda D, Collins, Scott L, Knapp, Alan K, Wang, Zhengwen, Han, Xingguo. Differential responses of grassland community nonstructural carbohydrate to experimental drought along a natural aridity gradient. SCIENCE OF THE TOTAL ENVIRONMENT[J]. 2022, 822: http://dx.doi.org/10.1016/j.scitotenv.2022.153589.
[8] Pan, Qingmin, Symstad, Amy J, Bai, Yongfei, Huang, Jianhui, Wu, Jianguo, Naeem, Shahid, Chen, Dima, Tian, Dashuan, Wang, Qibing, Han, Xingguo. Biodiversity-productivity relationships in a natural grassland community vary under diversity loss scenarios. JOURNAL OF ECOLOGY[J]. 2022, 110(1): 210-220, [9] Wang, Ruzhen, Yang, Junjie, Liu, Heyong, Sardans, Jordi, Zhang, Yunhai, Wang, Xiaobo, Wei, Cunzheng, Lu, Xiaotao, Dijkstra, Feike A, Jiang, Yong, Han, Xingguo, Penuelas, Josep. Nitrogen enrichment buffers phosphorus limitation by mobilizing mineral-bound soil phosphorus in grasslands. ECOLOGY[J]. 2022, 103(3): [10] Niu, Guoxiang, Wang, Yinliu, Wang, Ruzhen, Ning, Qiushi, Guan, Huiling, Yang, Junjie, Lu, Xiankai, Han, Xingguo, Huang, Jianhui. Intensity and Duration of Nitrogen Addition Jointly Alter Soil Nutrient Availability in a Temperate Grassland. JOURNAL OF GEOPHYSICAL RESEARCH-BIOGEOSCIENCES[J]. 2022, 127(3): [11] Ning, Qiushi, Jiang, Liangchao, Niu, Guoxiang, Yu, Qiang, Liu, Jushan, Wang, Ruzhen, Liao, Sha, Huang, Jianhui, Han, Xingguo, Yang, Junjie. Mowing increased plant diversity but not soil microbial biomass under N-enriched environment in a temperate grassland. PLANT AND SOIL. 2022, [12] Muraina, Taofeek O, Xu, Chong, Yu, Qiang, Yang, Yadong, Jing, Minghui, Jia, Xiaotong, Jaman, Md Shahariar, Dam, Quockhanh, Knapp, Alan K, Collins, Scott L, Luo, Yiqi, Luo, Wentao, Zuo, Xiaoan, Xin, Xiaoping, Han, Xingguo, Smith, Melinda D. Species asynchrony stabilises productivity under extreme drought across Northern China grasslands. JOURNAL OF ECOLOGY[J]. 2021, 109(4): 1665-1675, http://dx.doi.org/10.1111/1365-2745.13587.
[13] Zhang, Jiahui, Ren, Tingting, Yang, Junjie, Xu, Li, Li, Mingxu, Zhang, Yunhai, Han, Xingguo, He, Nianpeng. Leaf Multi-Element Network Reveals the Change of Species Dominance Under Nitrogen Deposition. FRONTIERS IN PLANT SCIENCE[J]. 2021, 12: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7862345/.
[14] Wang, ZhiPing, Li, HuanLong, Wu, HongHui, Han, ShiJie, Huang, JianHui, Zhang, XiMei, Han, XingGuo. Methane Concentration in the Heartwood of Living Trees and Estimated Methane Emission on Stems in Upland Forests. ECOSYSTEMS[J]. 2021, 24(6): 1485-1499, http://dx.doi.org/10.1007/s10021-020-00596-3.
[15] 王尚, 鲍雪莲, 冯凯, 邓晔, 周文君, 邵鹏帅, 郑甜甜, 姚飞, 杨山, 刘圣恩, 史荣久, 白震, 解宏图, 于景华, 张颖, 张一平, 沙丽清, 宋清海, 刘运通, 周集中, 张于光, 李慧, 王清奎, 韩兴国, 朱永官, 梁超. 增温驱动的核心微生物的迁移可指示土壤属性的改变. 科学通报:英文版. 2021, 66(19): 2025-2035, [16] Xu, Minjie, Li, Tingting, Liu, Wei, Ding, Junjun, Gao, Lili, Han, Xingguo, Zhang, Ximei. Sensitivity of soil nitrifying and denitrifying microorganisms to nitrogen deposition on the Qinghai-Tibetan plateau. ANNALS OF MICROBIOLOGY[J]. 2021, 71(1): https://www.webofscience.com/wos/woscc/full-record/WOS:000610065900001.
[17] Fu, Wei, Chen, Baodong, Rillig, Matthias C, Jansa, Jan, Ma, Wang, Xu, Chong, Luo, Wentao, Wu, Honghui, Hao, Zhipeng, Wu, Hui, Zhao, Aihua, Yu, Qiang, Han, Xingguo. Community response of arbuscular mycorrhizal fungi to extreme drought in a cold-temperate grassland. NEW PHYTOLOGIST. 2021, [18] Ning, Qiushi, Hattenschwiler, Stephan, Lu, Xiaotao, Kardol, Paul, Zhang, Yunhai, Wei, Cunzheng, Xu, Chengyuan, Huang, Jianhui, Li, Ang, Yang, Junjie, Wang, Jing, Peng, Yang, Penuelas, Josep, Sardans, Jordi, He, Jizheng, Xu, Zhihong, Gao, Yingzhi, Han, Xingguo. Carbon limitation overrides acidification in mediating soil microbial activity to nitrogen enrichment in a temperate grassland. GLOBAL CHANGE BIOLOGY[J]. 2021, 27(22): 5976-5988, http://dx.doi.org/10.1111/gcb.15819.
[19] Wang, Shang, Bao, Xuelian, Feng, Kai, Deng, Ye, Zhou, Wenjun, Shao, Pengshuai, Zheng, Tiantian, Yao, Fei, Yang, Shan, Liu, Shengen, Shi, Rongjiu, Bai, Zhen, Xie, Hongtu, Yu, Jinghua, Zhang, Ying, Zhang, Yiping, Sha, Liqing, Song, Qinghai, Liu, Yuntong, Zhou, Jizhong, Zhang, Yuguang, Li, Hui, Wang, Qingkui, Han, Xingguo, Zhu, Yongguan, Liang, Chao. Warming-driven migration of core microbiota indicates soil property changes at continental scale. SCIENCE BULLETIN[J]. 2021, 66(19): 2025-2035, http://dx.doi.org/10.1016/j.scib.2021.01.021.
[20] Ren, Tingting, He, Nianpeng, Liu, Zhaogang, Li, Mingxu, Zhang, Jiahui, Li, Ang, Wei, Cunzheng, Lu, Xiaotao, Han, Xingguo. Environmental filtering rather than phylogeny determines plant leaf size in three floristically distinctive plateaus. ECOLOGICAL INDICATORS[J]. 2021, 130: http://dx.doi.org/10.1016/j.ecolind.2021.108049.
[21] Yang, Jianxia, Peng, Yang, Han, Xingguo. Slow recovery of soil methane oxidation potential after cessation of N addition in a typical steppe. PEDOBIOLOGIA[J]. 2021, 85-86: http://dx.doi.org/10.1016/j.pedobi.2021.150709.
[22] Hou, ShuangLi, Hattenschwiler, Stephan, Yang, JunJie, Sistla, Seeta, Wei, HaiWei, Zhang, ZhiWei, Hu, YanYu, Wang, RuZhen, Cui, ShuYan, Lu, XiaoTao, Han, XingGuo. Increasing rates of long-term nitrogen deposition consistently increased litter decomposition in a semi-arid grassland. NEW PHYTOLOGIST[J]. 2021, 229(1): 296-307, http://dx.doi.org/10.1111/nph.16854.
[23] Luo, Wentao, GriffinNolan, Robert J, Ma, Wang, Liu, Bo, Zuo, Xiaoan, Xu, Chong, Yu, Qiang, Luo, Yahuang, Mariotte, Pierre, Smith, Melinda D, Collins, Scott L, Knapp, Alan K, Wang, Zhengwen, Han, Xingguo, 雒文涛. Plant traits and soil fertility mediate productivity losses under extreme drought in C-3 grasslands. Ecology[J]. 2021, 102(10): http://dx.doi.org/10.1002/ecy.3465.
[24] Wang, ZhiPing, Han, ShiJie, Zheng, YanHai, Zhang, XiMei, Wu, HongHui, Cui, JiFa, Xiao, ChunWang, Han, XingGuo. Fencing facility affects plant species and soil organic carbon in temperate steppes. CATENA[J]. 2021, 196: http://dx.doi.org/10.1016/j.catena.2020.104928.
[25] Li, Ang, Gao, Lei, Chen, Shi, Zhao, Jinling, Ujiyad, Saqirilatu, Huang, Jianhui, Han, Xingguo, Bryan, Brett A. Financial inclusion may limit sustainable development under economic globalization and climate change. ENVIRONMENTAL RESEARCH LETTERS[J]. 2021, 16(5): http://dx.doi.org/10.1088/1748-9326/abf465.
[26] Lu, XiaoTao, Hou, ShuangLi, Reed, Sasha, Yin, JiangXia, Hu, YanYu, Wei, HaiWei, Zhang, ZhiWei, Yang, GuoJiao, Liu, ZhuoYi, Han, XingGuo. Nitrogen Enrichment Reduces Nitrogen and Phosphorus Resorption Through Changes to Species Resorption and Plant Community Composition. ECOSYSTEMS[J]. 2021, 24(3): 602-612, https://www.webofscience.com/wos/woscc/full-record/WOS:000558219400002.
[27] Hasi, Muqier, Zhang, Xueyao, Niu, Guoxiang, Wang, Yinliu, Geng, Qianqian, Quan, Quan, Chen, Shiping, Han, Xingguo, Huang, Jianhui. Soil moisture, temperature and nitrogen availability interactively regulate carbon exchange in a meadow steppe ecosystem. AGRICULTURAL AND FOREST METEOROLOGY[J]. 2021, 304: http://dx.doi.org/10.1016/j.agrformet.2021.108389.
[28] Niu, Guoxiang, Hasi, Muqier, Wang, Ruzhen, Wang, Yinliu, Geng, Qianqian, Hu, Shuya, Xu, Xiaohui, Yang, Junjie, Wang, Changhui, Han, Xingguo, Huang, Jianhui. Soil microbial community responses to long-term nitrogen addition at different soil depths in a typical steppe. APPLIED SOIL ECOLOGY[J]. 2021, 167: http://dx.doi.org/10.1016/j.apsoil.2021.104054.
[29] 杨泽, 嘎玛达尔基, 谭星儒, 游翠海, 王彦兵, 杨俊杰, 韩兴国, 陈世苹. 氮添加量和施氮频率对温带半干旱草原土壤呼吸及组分的影响. 植物生态学报. 2021, 1059-1072, https://kns.cnki.net/KCMS/detail/detail.aspx?dbcode=CJFQ&dbname=CJFDAUTO&filename=ZWSB202010007&v=MzAzMzhNMUZyQ1VSN3VmWmVSckZ5dmtXNzNLUHpyWWJMRzRITkhOcjQ5Rlk0UjhlWDFMdXhZUzdEaDFUM3FUclc=.
[30] Luo, Wentao, Wang, Xiaoguang, Auerswald, Karl, Wang, Zhengwen, Bird, Michael, I, Still, Christopher J, Lu, XiaoTao, Han, Xingguo, 雒文涛. Effects of plant intraspecific variation on the prediction of C-3/C-4 vegetation ratio from carbon isotope composition o f topsoil organic matter across grasslands. JOURNAL OF PLANT ECOLOGY[J]. 2021, 14(4): 628-637, http://dx.doi.org/10.1093/jpe/rtab022.
[31] Zhang, WenHao, Zhang, Yunhai, Han, Xingguo. Major advances in plant ecology research in China (2020). JOURNAL OF PLANT ECOLOGYnull. 2021, 14(5): 995-1001, http://apps.webofknowledge.com/CitedFullRecord.do?product=UA&colName=WOS&SID=5CCFccWmJJRAuMzNPjj&search_mode=CitedFullRecord&isickref=WOS:000698485900013.
[32] Yang, Junjie, Xu, Minjie, Pang, Shuang, Gao, Lili, Zhang, Zijia, Wang, Zhiping, Zhang, Yunhai, Han, Xingguo, Zhang, Ximei. Disturbance-level-dependent post-disturbance succession in a Eurasian steppe. SCIENCE CHINA-LIFE SCIENCES. 2021, https://www.webofscience.com/wos/woscc/full-record/WOS:000631330200001.
[33] Xiong, Dan, Wei, Cunzheng, Wang, Xugao, Lu, Xiaotao, Fang, Shuai, Li, Yingbin, Wang, Xiaobo, Liang, Wenju, Han, Xingguo, Bezemer, Thiemo Martijn, Li, Qi. Spatial patterns and ecological drivers of soil nematode beta-diversity in natural grasslands vary among vegetation types and trophic position. JOURNAL OF ANIMAL ECOLOGY[J]. 2021, 90(5): 1367-1378, http://dx.doi.org/10.1111/1365-2656.13461.
[34] Cao, Jirong, Pang, Shuang, Wang, Qibing, Williams, Mark A, Jia, Xiu, Dun, Shasha, Yang, Junjie, Zhang, Yunhai, Wang, Jing, Lu, Xiaotao, Hu, Yecui, Li, Linghao, Li, Yuncong, Han, Xingguo. Plant-bacteria-soil response to frequency of simulated nitrogen deposition has implications for global ecosystem change. FUNCTIONAL ECOLOGY[J]. 2020, 34(3): 723-734, https://www.webofscience.com/wos/woscc/full-record/WOS:000498592500001.
[35] Wang, XiaoGuang, Lu, XiaoTao, Zhang, HaiYang, Dijkstra, Feike A, Jiang, YanGao, Wang, XiaoBo, Lu, JiaYu, Wuyunna, Wang, ZhengWen, Han, XingGuo. Changes in soil C:N:P stoichiometry along an aridity gradient in drylands of northern China. GEODERMA[J]. 2020, 361: http://dx.doi.org/10.1016/j.geoderma.2019.114087.
[36] Dong, Lili, Berg, Bjorn, Sun, Tao, Wang, Zhengwen, Han, Xingguo. Response of fine root decomposition to different forms of N deposition in a temperate grassland. SOIL BIOLOGY & BIOCHEMISTRY[J]. 2020, 147: http://dx.doi.org/10.1016/j.soilbio.2020.107845.
[37] Wang, Nannan, Li, Lei, Zhang, Bingwei, Chen, Shiping, Sun, Wei, Luo, Yukun, Dong, Kuanhu, Han, Xingguo, Huang, Jianhui, Xu, Xiaofeng, Wang, Changhui. Population turnover promotes fungal stability in a semi-arid grassland under precipitation shifts. JOURNAL OF PLANT ECOLOGY[J]. 2020, 13(4): 499-509, http://dx.doi.org/10.1093/jpe/rtaa038.
[38] 杨泽, 嘎玛达尔基, 谭星儒, 游翠海, 王彦兵, 杨俊杰, 韩兴国, 陈世苹. 氮添加量和施氮频率对温带半干旱草原土壤呼吸及组分的影响. 植物生态学报. 2020, 44(10): 1059-1072, http://lib.cqvip.com/Qikan/Article/Detail?id=7104182003.
[39] Wei, HaiWei, Wang, XiaoGuang, Li, YingBin, Yang, JunJie, Wang, JunFeng, Lu, XiaoTao, Han, XingGuo. Simulated nitrogen deposition decreases soil microbial diversity in a semiarid grassland, with little mediation of this effect by mowing. PEDOBIOLOGIA[J]. 2020, 80: http://dx.doi.org/10.1016/j.pedobi.2020.150644.
[40] Li, HuanLong, Zhang, XiMei, Deng, FengDan, Han, XingGuo, Xiao, ChunWang, Han, ShiJie, Wang, ZhiPing. Microbial methane production is affected by secondary metabolites in the heartwood of living trees in upland forests. TREES-STRUCTURE AND FUNCTION[J]. 2020, 34(1): 243-254, https://www.webofscience.com/wos/woscc/full-record/WOS:000519600400001.
[41] Ma, Tian, Dai, Guohua, Zhu, Shanshan, Chen, Dima, Chen, Litong, Lu, XiaoTao, Wang, Xiaobo, Zhu, Juntao, Zhang, Yangjian, He, JinSheng, Bai, Yongfei, Han, Xingguo, Feng, Xiaojuan. Vertical variations in plant- and microbial-derived carbon components in grassland soils. PLANT AND SOIL[J]. 2020, 446(1-2): 441-455, http://dx.doi.org/10.1007/s11104-019-04371-9.
[42] Xiong, Dan, Wei, CunZheng, Wubs, E R Jasper, Veen, G J, Liang, Wenju, Wang, Xiaobo, Li, Qi, Van der Putten, Wim H, Han, Xingguo. Nonlinear responses of soil nematode community composition to increasing aridity. GLOBAL ECOLOGY AND BIOGEOGRAPHY[J]. 2020, 29(1): 117-126, https://www.webofscience.com/wos/woscc/full-record/WOS:000489653300001.
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[352] 陈灵芝, 韩兴国, 邢雪荣. 植物养分利用效率研究综述. 应用生态学报. 2000, 11(5): 785-, http://lib.cqvip.com/Qikan/Article/Detail?id=4522999.
[353] 渠春梅, 韩兴国, 苏波. 片断化森林的边缘效应与自然保护区的设计管理. 生态学报[J]. 2000, 20(1): 160-, http://lib.cqvip.com/Qikan/Article/Detail?id=4626975.
[354] 黄建辉, 韩兴国, 苏波, 渠春梅. 箭叶锦鸡儿群落加速亚高山草甸-箭叶锦鸡儿-硕桦林演替系列的演替进程(英文). 植物学报[J]. 2000, 42(7): 751-, [355] 黄建辉, 李海涛, 韩兴国, 陈灵芝. 暖温带两种针叶林生态系统中茎流和穿透雨的养分特征研究. 植物生态学报. 2000, 24(2): 248-, http://lib.cqvip.com/Qikan/Article/Detail?id=4550176.
[356] 韩兴国, 陈灵芝, 严昌荣. 北京山区落叶阔叶林优势种叶片特点及其生理生态特性. 生态学报[J]. 2000, 20(1): 53-, http://lib.cqvip.com/Qikan/Article/Detail?id=4626957.
[357] 黄建辉, 陈灵芝, 韩兴国. 几种常微量元素在辽东栎枝条分解过程中的变化特征. 生态学报[J]. 2000, 20(2): 229-, [358] 苏波, 韩兴国. 箭叶锦鸡儿群落 加速亚高山草甸—箭叶锦鸡儿—硕桦林演替系列的演?…. 植物学报:英文版. 2000, 42(7): 751-757, http://lib.cqvip.com/Qikan/Article/Detail?id=4312190.
[359] 李凌浩, 渠春梅, 韩兴国, 苏波, 白永飞, 黄建辉. 中国东北样带草原区植物δ~(13)C值及水分利用效率对环境梯度的响应. 植物生态学报[J]. 2000, 24(6): 648-, [360] 苏波, 黄建辉, 韩兴国. ^15N自然丰度法在生态系统氮素循环研究中的应用. 生态学报. 1999, 19(3): 408-, http://lib.cqvip.com/Qikan/Article/Detail?id=3550940.
[361] Alec Downey, 严昌荣, 陈灵芝, 韩兴国. 北京山区落叶阔叶林中核桃楸在生长中期的树干液流研究. 生态学报[J]. 1999, 19(6): 793-, http://lib.cqvip.com/Qikan/Article/Detail?id=3880452.
[362] 韩兴国, 黄建辉, 陈灵芝. 森林生态系统根系生物量研究进展. 生态学报[J]. 1999, 19(2): 270-, http://lib.cqvip.com/Qikan/Article/Detail?id=3424418.
[363] 韩兴国, 陈灵芝, 黄建辉, 严昌荣. 中国东部主要松林营养元素循环的比较研究. 植物生态学报. 1999, 23(4): 351-, http://lib.cqvip.com/Qikan/Article/Detail?id=3520681.
[364] 陈灵芝, 黄建辉, 韩兴国. 暖温带落叶阔叶林辽东栎枝条分解过程中有机物质的变化. 植物学报:英文版[J]. 1998, 40(4): 362-, http://lib.cqvip.com/Qikan/Article/Detail?id=2965480.
[365] 严昌荣, 韩兴国. 暖温带落叶阔叶林主要植物叶片中δ^13C值的种间差异及时空变化. 植物学报:英文版. 1998, 40(9): 853-859, http://lib.cqvip.com/Qikan/Article/Detail?id=3254886.
[366] 韩兴国, 黄银晓, 蒋高明. 城市与山地森林地区夏秋季大气CO2浓度变化初探. 环境科学学报[J]. 1998, 18(1): 108-, http://lib.cqvip.com/Qikan/Article/Detail?id=2916130.
[367] 黄建辉, 陈灵芝, 韩兴国. 辽东栎枝条分解过程中几种主要营养元素的变化. 植物生态学报[J]. 1998, 22(5): 398-, http://lib.cqvip.com/Qikan/Article/Detail?id=3288770.
[368] 蒋高明, 韩兴国. 北京山区典型暖温带落叶阔叶林大气CO2浓度,草本层光合作用及土壤释…. 植物学报:英文版. 1997, 39(7): 653-660, http://lib.cqvip.com/Qikan/Article/Detail?id=2629149.
[369] 韩兴国, 陈灵芝, 李海涛. 华北暖温带山地落叶阔叶混交林的茎流研究. 生态学报[J]. 1997, 17(4): 371-, http://lib.cqvip.com/Qikan/Article/Detail?id=2639983.
[370] 韩兴国. 柠檬酸,葡萄糖和有机质对植物磷素吸收和土壤磷素形态的影响. 植物生态学报[J]. 1996, 20(2): 97-, http://lib.cqvip.com/Qikan/Article/Detail?id=2211541.
[371] 韩兴国, 黄建辉, 娄治平. 关键种概念在生物多样性保护中的意义与存在的问题. 植物学报. 1995, 168-184, http://lib.cqvip.com/Qikan/Article/Detail?id=4001328192.
[372] 黄建辉, 韩兴国. 森林生态系统的生物地球化学循环:理论和方法. 植物学报. 1995, 195-223, http://lib.cqvip.com/Qikan/Article/Detail?id=4001328195.
发表著作
( 1 ) 岛屿生物地理学理论与生物多样性保护, The Theory of Island Biogeography and Conservation Biodiversity, 中国科学技术出版社, 1994-07, 第 1 作者
( 2 ) 中国退化生态系统研究,  The research of Degraded Ecosystems in China, 中国科学技术出版社, 1995-07, 第 3 作者
( 3 ) 保护生物学, Conservation Biology , 浙江科学技术出版社, 1997-07, 第 3 作者
( 4 ) 生物地球化学概论, An Introduction of Biogeochemistry, 高等教育出版社, 1999-07, 第 1 作者
( 5 ) 现代生态学讲座(III):学科进展与热点论题, Lectures in Mordern Ecology(III)Advances and Key Topics, 高等教育出版社, 2007-07, 第 3 作者

科研活动

   
科研项目
( 1 ) 北方草地与农牧交错带生态系统维持与适应性管理的科学基础, 主持, 国家级, 2006-07--2011-06
( 2 ) 中国北方草地“以禽代畜”生态经济示范工程, 主持, 国家级, 2009-01--2011-12
( 3 ) 东北典型生态系统碳、氮、水循环与耦合机制, 主持, 部委级, 2010-03--2012-12
( 4 ) 草原生态系统对极端气候事件的响应:中美联网研究, 主持, 研究所(学校), 2014-01--2019-12
( 5 ) 氮沉降对典型草原生态系统生物多样性与功能过程的影响机制, 主持, 国家级, 2015-01--2019-12
( 6 ) 土壤微生物时空分布格局的生态化学计量调控机制, 主持, 部委级, 2014-07--2019-06
( 7 ) 氮沉降对内蒙古典型草原生态系统 功能过程的影响机制, 主持, 部委级, 2016-01--2017-12
( 8 ) 北方农牧交错带草地退化机理及生态修复技术集成示范, 主持, 国家级, 2016-07--2020-12
( 9 ) 北方农牧交错带退化草地恢复重建途径与适应性管理, 主持, 国家级, 2016-07--2020-12
( 10 ) 氮沉降对典型草原生态系统生物多样性与功能过程的影响机制, 主持, 国家级, 2015-01--2019-12
( 11 ) 草原生态系统对极端气候事件的响应:中美联网研究, 主持, 国家级, 2014-01--2018-12

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