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中国科学院植物研究所韩兴国研究员,博士生导师
来自 : sourcedb.ib.cas.cn/cn/expert/2 发布时间:2021-03-25

1998. 4-2006.4 中国科学院植物研究所研究员、所长兼植物园主任、内蒙古草原生态系统定位研究站站长

1997. 2-1998. 4 中国科学院西双版纳热带植物园副主任 研究员

1995. 10-1997. 2 中国科学院植物研究所 所长助理, 植物生态研究中心主任 研究员

1992. 9-1995. 10 中国科学院植物研究所植物生态研究中心 副研究员

1990. 9-1992. 9 美国罗格斯大学海岸与海洋研究中心, 与JoaiI Ehrelifeld博士合作从事博士后研究

1989. 9-1990. 9 美国阿肯色大学农学系 助教

1985. 10-1989. 9 美国乔治亚大学生态研究所 研究助理

1982. 7-1985. 10 山东农业大学农学系 助教、讲师

国内外学术机构任职

武汉大学, 山东大学和西双版纳热带植物园客座教授

研究兴趣

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

承担项目

国家自然科学基金项目“克氏针茅草原碳素释放与氮素添加的耦合机制研究” 主持人

国家自然科学基金重点项目“草原生态系统中生源要素的计量化学关系及其耦合机理” 主持人

中国科学院知识创新工程重大项目“浑善达克沙地与京北农牧交错区生态环境综合治理实验示范研究” 首席

国家重点基础研究发展规划项目2级课题“农牧交错带生态系统生产力形成机制” 主持人

科技部首都圈防沙治沙应急技术研究与示范项目“锡林郭勒草原(锡林浩特)地区防沙治沙技术示范” 项目负责人

国家基金委杰出青年基金B类项目“锡林郭勒草原景观格局与生态系统功能的综合研究” 国内合作者

国家基金面上项目“热带中国碳素储量及其历史变化格局” 主持人

高度氧化土壤中的土壤有机质分解对铝铁固定的磷素的活化 (博士论文)

家禽粪便对地下水质量的影响(在美国阿肯色大学从事博士后期间参加)

新泽西北美湿地松林的土地管理对地下食物链的影响(在美国罗格斯大学参加)

人类活动对暖温带落叶阔叶林生态系统结构和功能的影响

中国典型退化暖温带落叶阔叶林生态系统恢复生态学的研究

稳定性同位素技术在暖温带落叶阔叶林植物水分利用效率的研究中的应用

人类干扰和土著知识对澜沧江流域生物多样性的影响 项目秘书, 二级课题主持人

国家环保总局“中国自然保护区生态旅游战略及其对策的研究” 主持人

国家基金面上项目“片断化热带雨林植物水分利用效率的边缘效应” 主持人

参加社会团体及职务

国家林业局西部地区生态环境建设专家咨询委员会委员(2000年6月)

中国科学院生物多样性委员会委员(1997至今)

《中国科学院研究生教学丛书》生物学科编委委员会成员(1999年至今)

《植物学研究进展》系列丛书编委

国家自然科学基金委项目评审组成员

中国植物学会理事长(1998至今)

中国生态学会常务理事兼副秘书长(1995至2000年)

《生物多样性》杂志主编(1998至今)

Journal of Integrative plant biology杂志主编

日本SCI刊物EcologicaI Research的咨询编委

《植物生态学报》、《生态学报》、《应用生态学报》、《生态学杂志》、《武汉植物研究》、《长江流域资源与环境》等国内术刊物的编委或常务编委

国际交流与合作

植被区系成分不同的森林生态系统中氮素矿化和硝化作用的比较研究(同美国纽约海克自然保护区合作研究)

世界保护联盟(IUCN)地区理事(RegionaI Councillor) (2000年10月至今)

多次参加国际有关生物多样性方面的谈判

研究论文(注*为通讯作者):

2018

[1] Chen SP, Wang WT, Xu WT, Wang Y, Wan HW, Chen DM, Tang ZY, Tang XL, Zhou GY, Xie ZQ, Zhou DW, Shangguan ZP, Huang JH, He JS, Wang YF, Sheng JD, Tang LS, Li XR, Dong M, Wu Y, Wang QF, Wang ZH, Wu JG, Chapin III FS, Bai YF*. 2018. Plant diversity enhances productivity and soil carbon storage. PNAS, 115:4027-4032.

[2] Zhang YH, Loreau M, He NP, Wang JB, Pan QM, Bai YF*, Han XG*. 2018. Climate variability decreases species richness and community stability in a temperate grassland. Oecologia, 188: 183-192.

[3] Wang ZP*, Zhang L, Wang B, Hou LY, Xiao CW, Zhang XM, Han XG. 2018. Dissolved methane in groundwater of domestic wells and its potential emissions in arid and semiarid regions of Inner Mongolia, China. Sci. Total. Environ., 626: 1193-1199.

2017

[4] Zhang XM*, Johnston ER, Li LH, Konstantinidis KT*, Han XG*. 2017. Experimental warming reveals positive feedbacks to climate change in the Eurasian Steppe. ISME J., 11: 885-895.

[5] Wang XB, Lv XT, Yao J, Wang ZW, Deng Y, Cheng WX, Zhou JZ, Han XG*. 2017. Habitat-specific patterns and drivers of bacterial β-diversity in China’s drylands. ISME J., 11: 1345-1358.

[6] Zhang XM*, Johnston ER, Barberan A, Ren Y, Lü XT, Han XG*. 2017. Decreased plant productivity resulting from plant group removal experiment constrains soil microbial functional diversity. Glob. Change. Biol., 23: 4318-4332

2016

[7] Zhang YH, Loreau M, Lu XT, He NP, Zhang GM, Han XG*. 2016. Nitrogen enrichment weakens ecosystem stability through decreased species asynchrony and population stability in a temperate grassland. Global Change Biology, 22(4):1445-1455.

[8] Zhang XM, Johnston ER, Liu W, Li LH, Han XG*. 2016. Environmental changes affect the assembly of soil bacterial community primarily by mediating stochastic processes. Global Change Biology, 22(1):198-207.

[9] Zhang BW, Li S, Chen SP*, Ren TT, Yang ZQ, Zhao HL, Liang Y, Han XG. 2016. Arbuscular mycorrhizal fungi regulate soil respiration and its response to precipitation change in a semiarid steppe. Scientific Reports, 6.

[10] Wang HJ*, Wang XM, Zhang YL, Mu YJ, Han XG. 2016. Evident elevation of atmospheric monoterpenes due to degradation-induced species changes in a semi-arid grassland. Science of The Total Environment, 541:1499-1503.

[11] Tian QY, Liu NN, Bai WM, Li LH, Chen JQ, Reich PB, Yu Q, Guo DL, Smith MD, Knapp AK, Cheng WX, Lu P, Gao Y, Yang A, Wang TZ, Li X, Wang ZW, Ma YB, Han XG, Zhang WH*. 2016. A novel soil manganese mechanism drives plant species loss with increased nitrogen deposition in a temperate steppe. Ecology, 97(1):65-74.

[12] Tian DS, Niu SL, Pan QM*, Ren TT, Chen SP, Bai YF, Han XG. 2016. Nonlinear responses of ecosystem carbon fluxes and water-use efficiency to nitrogen addition in Inner Mongolia grassland. Functional Ecology, 30: 490–499.

2015

[13] Zhang YH*, Feng JC, Isbell F, Lu XT*, Han XG*. 2015. Productivity depends more on the rate than the frequency of N addition in a temperate grassland. Scientific Reports, 5.

[14] Wang CH, Butterbach-bahl K, Wang QB, Xing XR, Han XG*. 2015. Nitrogen addition and mowing affect microbial nitrogen transformations in a C4 grassland in northern China. European Journal of Soil Science, 66(3):485-495.

[15] Ning QS, Gu Q, Shen JP, Lu XT, Yang JJ, Zhang XM, He JZ, Huang JH, Wang H, Xu ZH*, Han XG*. 2015. Effects of nitrogen deposition rates and frequencies on the abundance of soil nitrogen-related functional genes in temperate grassland of northern China. Journal of Soils and Sediments, 15(3):694-704.

[16] Feng JC, Han X, He NP, Zhang YH, Zhou LS, Han XG*. 2015. Sheep grazing stimulated plant available soil nitrate accumulation in a temperate grassland. Pakistan Journal of Botany, 47(5):1865-1874.

[17] Zhang XM, Liu W, Zhang GM, Jiang L, Han XG*. 2015. Mechanisms of soil acidification reducing bacterial diversity. Soil Biology Biochemistry, 81:275-281.

[18] Zhang HX, Zhang GM (equally first co-author), Lü XT, Zhou DW*, Han XG*. 2015. Salt tolerance during seed germination and early seedling stages of 12 halophytes. Plant and Soil, 388(1-2): 229-241.

[19] Lv XT*, Freschet GT, Kazakou E, Wang ZW, Zhou LS, Han XG. 2015. Contrasting responses in leaf nutrient-use strategies of two dominant grass species along a 30-yr temperate steppe grazing exclusion chronosequence. Plant and Soil, 387(1-2):69-79.

[20] Yu Q, Wilcox K, La Pierre K, Knapp AK, Han XG Smith MD*. 2015. Stoichiometric homeostasis predicts plant species dominance, temporal stability and responses to global change. Ecology, 96(9):2328-2335.

[21] Yu Q*, Wu HH, Wang ZW, Flynn Dan FB, Yang H, Lu FM, Smith M, Han XG. 2015. Long term prevention of disturbance induces the collapse of a dominant species without altering ecosystem function. Scientific Reports, 5.

[22] Xu ZW, Ren HY, Li MH, van Ruijven J, Han XG, Wan SQ, Li H, Yu Q, Jiang Y*, Jiang L. 2015. Environmental changes drive the temporal stability of semi-arid natural grasslands through altering species asynchrony. Journal of Ecology, 103(5):1308-1316.

[23] Xu ZW, Ren HY, Cai JP, Wang RZ, He P, Li MH, Lewis BJ, Han XG, Jiang Y*. 2015. Antithetical effects of nitrogen and water availability on community similarity of semiarid grasslands: evidence from a nine-year manipulation experiment. Plant and Soil, 397(1-2): 357-369.

[24] Ren HY*, Xu ZW, Huang JH, Lu XT, Zeng DH, Yuan ZY, Han XG, Fang YT. 2015. Increased precipitation induces a positive plant-soil feedback in a semi-arid grassland. Plant and Soil, 389(1-2):211-223.

[25] Luo WT, Elser JJ, Lu XT, Wang ZW, Bai E, Yan CF, Wang C, Li MH, Zimmermann NE, Han XG, Xu ZW, Li H, Jiang Y*. 2015. Plant nutrients do not covary with soil nutrients under changing climatic conditions. Global Biogeochemical Cycles, 29(8):1298-1308.

[26] Wu JG*, Naeem S, Elser J, Bai YF, Huang JH, Kang L, Pan QM, Wang QB, Hao SG, Han XG. 2015. Testing biodiversity-ecosystem functioning relationship in the world\'s largest grassland: overview of the IMGRE project. Landscape Ecology, 30(9): 1723-1736.

[27] Yuan F, Wu JG, Li A*, Rowe H, Bai YF, Huang JH, Han XG. 2015. Spatial patterns of soil nutrients, plant diversity, and aboveground biomass in the Inner Mongolia grassland: before and after a biodiversity removal experiment. Landscape Ecology, 30(9): 1737-1750.

[28] Filley TR*, Li ML, Zhuang J, Yu GR, Sayler G, Ouyang ZY, Han XG, Zhang XD, Jiang GB, Zhou CH, Wang F, Bickham JW. 2015. Bi-national research and education cooperation in the US-China EcoPartnership for Environmental Sustainability. Journal of Renewable and Sustainable Energy, 7(4).

[29] Briske DD, Zhao ML*, Han GD, Xiu CB, Kemp DR, Willms W, Havstad K, Kang L, Wang ZW, Wu JG, Han XG, Bai YF. 2015. Strategies to alleviate poverty and grassland degradation in Inner Mongolia: Intensification vs production efficiency of livestock systems. Journal of Environmental Management, 152:177-182.

2014

[30] Zhang YH, Lv XT, Isbell F, Stevens C, Han X, He NP, Zhang GM, Yu Q, Huang JH, Han XG*. 2014. Rapid plant species loss at high rates and at low frequency of N addition in temperate steppe. Global Change Biology, 2014. 20:3520-3529

[31] Zhang XM, Wei HW, Chen QS, Han XG*. 2014.The counteractive effects of nitrogen addition and watering on soil bacterial communities in a steppe ecosystem. Soil Biology and Biochemistry, 2014. 72: 26-34

[32] Han X, Sistla SA, Zhang YH, Lv XT*, Han XG. 2014. Hierarchical responses of plant stoichiometry to nitrogen deposition and mowing in a temperate steppe. Plant and Soil, 2014. 382(1-2): 175-187

[33] Zhang ZJ, Elser JJ, Cease AJ, Zhang XM, Yu Q, Han XG, Zhang GM*. 2014. Grasshoppers regulate N:P stoichiometric homeostasis by changing phosphorus contents in their frass. PLoS One, 9(8): e103697

[34] Zhang YH, Han X, He NP, Long M, Huang JH, Zhang GM, Wang QB, Han XG*.2014. Increase in ammonia volatilization from soil in response to N deposition in Inner Mongolia grasslands. Atmospheric Environment, 2014. 84(2014): 156-162.

2013

[35] Wei CZ, Yu Q, Bai E, Lv XT, Li Q, Xia JY, Kardol P, Liang WJ, Wang ZW, Han XG*. 2013. Nitrogen deposition weakens plant-microbe interactions in grassland ecosystems. Global Change Biology, 2013. 19(12): 3688-3697.

[36] Wang ZP, Chang SX*, Chen H, Han XG*. 2013.Widespread non-microbial methane production by organic compounds and the impact of environmental stresses. Earth-Science Reviews, 2013. 127(2013): 193-202.

[37] Ren HY, Xu ZW, Zhang WH, Jiang L, Huang JH*, Chen SP, Wang LX, Han XG. 2013.Linking ethylene to nitrogen-dependent leaf longevity of grass species in a temperate steppe. Annals of Botany, 2013. 112(9): 1879-1885.

[38] Wang ZP*, Han XG, Chang SX, Wang B, Yu Q, Hou LY, Li LH.2013. Soil organic and inorganic carbon contents under various land uses across a transect of continental steppes in Inner Mongolia. Catena, 109:110-117.

[39] Zhang YH, He NP, Zhang GM, Huang JH, Wang QB, Pan QM, Han XG*. 2013. Ammonia emissions from soil under sheep grazing in Inner Mongolian grasslands of China. Journal of Arid Land, 5(2):155-165.

[40] Zhang XM, Liu W, Schloter M, Zhang GM, Chen QS, Huang JH, Li LH, Elser JJ, Han XG*. 2013.Response of the abundance of key soil microbial nitrogen-cycling genes to multi-factorial global changes. PloS One, 8(10): e76500.

[41] Lv XT*, Reed S, Yu Q, He NP, Wang ZW, Han XG.2013. Convergent responses of nitrogen and phosphorus resorption to nitrogen inputs in a semiarid grassland. Global Change Biology, 19(9): 2775-2784.

[42] Luo WT, Jiang Y, Lv XT, Wang X, Li MH, Bai E, Han XG, Xu ZW*.2013. Patterns of plant biomass allocation in temperate grasslands across a 2500-km transect in northern China. PloS One, 8: e71749.

[43] Zhang -Y, Wu HH, Yu Q*, Wang ZW, Wei CZ, Long M, Kattge J, Smith M, Han XG.2013. Sampling Date, Leaf Age and Root Size: Implications for the Study of Plant C:N:P Stoichiometry. PloS One, 8(4): e60360.

[44] Chen WW, Wolf B, Zhang XH, Yao ZS, Butterbach-Bahl K, Bruggemann N, Han SH, Liu CY, Han XG. 2013.Carbon dioxide emission from temperate semiarid steppe during the non-growing season. Atmospheric Environment, 64: 141-149.

[45] 张云海,何念鹏,张光明,黄建辉,韩兴国*. 2013.氮沉降强度和频率对羊草叶绿素含量的影响. 生态学报, 33(21): 6786-6794.

2012

[46] He NP, Zhang YH, Dai JZ, Han XG, Baoyin TGT, Yu GR*. 2012. Land-use impact on soil carbon and nitrogen sequestration in typical steppe ecosystems, Inner Mongolia. Journal Of Geographical Sciences, 22(5):859-873

[47] He NP*, Zhang YH, Dai JZ, Han XG, Yu GR. 2012. Losses in Carbon and Nitrogen Stocks in Soil Particle-Size Fractions along Cultivation Chronosequences in Inner Mongolian Grasslands. Journal of Environmental Quality, 41(5):1507-1516

[48] He NP, Chen QS*, Han XG, Yu GR, Li LH. 2012. Warming and increased precipitation individually influence soil carbon sequestration of Inner Mongolian grasslands, China. Agriculture Ecosystems Environment, 158:184-191

[49] Liu J, Wu JG, Liu FQ, Han XG. 2012. Quantitative assessment of bioenergy from crop stalk resources in Inner Mongolia, China. Applied Energy, 93: 305-318

[50] Liu YS, Pan QM*, Zheng SX, Bai YF, Han XG. 2012. Intra-seasonal precipitation amount and pattern differentially affect primary production of two dominant species of Inner Mongolia grassland. Acta Oecologica-International Journal Of Ecology, 44:2-10(SI)

[51] Lv XT, Lv FM, Zhou LS, Han X, Han XG. 2012. Stoichiometric responses of dominant grasses to fire and mowing in a semiarid grassland. Journal of Arid Environments, 78: 154-160

[52] Lv XT, Kong DL, Pan QM, Simmons ME, Han XG*. 2012. Nitrogen and water availability interact to affect leaf stoichiometry in a semi-arid grassland. Oecologia, 168: 301-310

[53] Wang HJ, Xia JY, Mu YJ, Nie L, Han XG, Wan SQ. 2012. BVOCs emission in a semi-arid grassland under climate warming and nitrogen deposition. Atmospheric Chemistry And Physics, 12: 3809-3819

[54] Wei CZ, Zheng HF, Li Q, Lv XT, Yu Q, Zhang HY, Chen QS, He NP, Kardol P, Liang WJ, Han XG*. 2012. Nitrogen addition regulates soil nematode community composition through ammonium suppresssion. PloS One, 7: e43384

[55] Wu HH, Wiesmeier M, Yu Q, Steffens M, Han XG, Kogel-Knabner I. 2012. Labile organic C and N mineralization of soil aggregate size classes in semiarid grasslands as affected by grazing management. Biology and Fertility of Soils, 48: 305-313

[56] Zhang P, Chen SP, Zhang WL, Miao HX, Chen JQ, Han XG, Lin GH. 2012. Biophysical regulations of NEE light response in a steppe and a cropland in Inner Mongolia. Journal of Plant Ecology-UK, 5: 238-248

[57] Zhang XM, Han XG*. 2012. Nitrogen deposition alters soil chemical properties and bacterial communities in the Inner Mongolia grassland. Journal of Environmental Sciences-China,24(8):1483-1491

[58] 董宁, 韩兴国, 邬建国. 2012. 内蒙古鄂尔多斯市城市化时空格局变化及其驱动力. 应用生态学报, 4: 1097-1103

[59] 何念鹏*,韩兴国,于贵瑞,代景忠.2012. 火烧对长期封育草地土壤碳固持效应的影响. 生态学报,2012. 32(14): 4388-4395

[60] 何念鹏, 韩兴国, 于贵瑞. 2012. 内蒙古放牧草地土壤碳固持速率和潜力. 生态学报, 32: 844-851

[61] 王玮, 邬建国, 韩兴国. 2012. 内蒙古典型草原土壤固碳潜力及其不确定性的估算. 应用生态学报, 23: 29-37

2011

[62] Wang ZP*, Xie ZQ, Zhang BC, Hou LY, Zhou YH, Li LH, Han XG. 2011. Aerobic and anaerobic nonmicrobial methane emissions from plant material. Environmental Science Technology,45: 9531-47

[63] Zhang X, Bai W, Gilliam FS, Wang Q, Han X, Li L*. 2011. Effects of in situ freezing on soil net nitrogen mineralization and net nitrification in fertilized grassland of northern China. Grass and Forage Science, 66: 391-401

[64] Jiang LL, Han XG*, Dong N, Wang YF, Kardol P. 2011. Plant species effects on soil carbon and nitrogen dynamics in a temperate steppe of northern China. Plant and Soil, 346: 331-347

[65] Kong DL, Wu HF, Zeng H, Lü XT, Simmons M, Wang M, Sun XF, Han XG*. 2011. Plant functional group removal alters root biomass and nutrient cycling in a typical steppe in Inner Mongolia, China. Plant and Soil, 346: 133-144

[66] Chen WW, Wolf B, Zheng XH*, Yao ZS, Butterbach-Bahl K, Bruggemann N, Liu CY, Han SH, Han XG. 2011. Annual methane uptake by temperate semiarid steppes as regulated by stocking rates, aboveground plant biomass and topsoil air permeability. Global Change Biology, 17: 2803-2816

[67] Yu Q, Elser JJ, He NP, Wu HH, Chen QS, Zhang GM, Han XG*. 2011. Stoichiometric homeostasis of vascular plants in the Inner Mongolia grassland. Oecologia, 166: 1-10

[68] Zhang GM, Han XG, Elser JJ*. 2011. Rapid top–down regulation of plant C:N:P stoichiometry by grasshoppers in an Inner Mongolia grassland ecosystem. Oecologia, 166: 253-264

[69] Liu YS, Pan QM*, Liu HD, Bai YF, Simmons M, Dittert K, Han XG. 2011. Plant responses following grazing removal at different stocking rates in an Inner Mongolia grassland ecosystem. Plant and Soil, 340: 199-213

[70] Yang H, Auerswald K, Bai YF*, Han XG. 2011. Complementarity in water sources among dominant species in typical steppe ecosystems of Inner Mongolia, China. Plant and Soil, 340: 303-313

[71] Wang CH, Butterbach-Bahl K, Han Y, Wang QB, Zhang LH, Han XG, Xing XR*. 2011. The effects of biomass removal and N additions on microbial N transformations and biomass at different vegetation types in an old-field ecosystem in northern China. Plant and Soil, 340: 397-411

[72] Lü XT, Cui Q, Wang QB, Han XG*. 2011. Nutrient resorption response to fire and nitrogen addition in a semi-arid grassland. Ecological Engineering, 37: 534-538

[73] Butterbach-Bahl K*, K?gel-Knabner I, Han XG. 2011. Steppe ecosystems and climate and land-use changes—vulnerability, feedbacks and possibilities for adaptation. Plant and Soil, 340: 1-6

[74] Wu HH, Dannenmann M*, Fanselow N, Wolf B, Yao ZS, Wu X, Brüggemann N, Zheng XH, Han XG, Dittert K. 2011. Feedback of grazing on gross rates of N mineralization and inorganic N partitioning in steppe soils of Inner Mongolia. Plant and Soil, 340: 127-139

[75] Lü FM, Lü XT, Liu W, Han X, Zhang GM, Kong DL, Han XG*. 2011. Carbon and nitrogen storage in plant and soil as related to nitrogen and water amendment in a temperate steppe of northern China. Biology and Fertility of Soils, 47: 187-196

[76] Ren HY, Xu ZW, Huang JH*, Clark C, Chen SP, Han XG. 2011. Nitrogen and water addition reduce leaf longevity of steppe species. Annals of Botany, 107: 145-155

[77] Zhang XM, Liu W, Bai YF, Zhang GM, Han XG*. 2011. Nitrogen deposition mediates the effects and importance of chance in changing biodiversity. Molecular Ecology, 20: 429-438

2010及以前

[78] Yu Q, Chen Q, Elser JJ, He N, Wu H, Zhang G, Wu J, Bai Y, Han X*. 2010. Linking stoichiometric homoeostasis with ecosystem structure, functioning and stability. Ecology Letters 13:1390-1399

[79] Wang J, Huang J*, Wu J, Han X, Lin G. 2010. Ecological consequences of the Three Gorges Dam: insularization affects foraging behavior and dynamics of rodent populations. Frontiers in Ecology and the Environment 8:13-19

[80] Chen QS*, Wang QB, Han XG, Wan SQ, Li LH. 2010. Temporal and spatial variability and controls of soil respiration in a temperate steppe in northern China. Global Biogeochemical Cycles: doi:10.1029/2009GB003538

[81] Cui Q, Lü XT, Wang QB, Han XG*. 2010. Nitrogen fertilization and fire act independently on foliar stoichiometry in a temperate steppe. Plant and Soil, 334:209-219

[82] Jiang LL, Han XG*, Zhang GM, Kardol P. 2010. The role of plant–soil feedbacks and land-use legacies in restoration of a temperate steppe in northern China. Ecological Research, 25:1101-1111

[83] Kong DL, Wu H, Wang M, Simmons M, Lü X, Yu Q, Han X*. 2010. Structural and chemical differences between shoot- and root-derived roots of three perennial grasses in a typical steppe in Inner Mongolia China. Plant and Soil, 336: 209-217

[84] Lü XT, XG Han*. 2010. Nutrient resorption responses to water and nitrogen amendment in semi-arid grassland of Inner Mongolia, China. Plant and Soil, 327:481-491

[85] Lü XT, Wei CZ, Cui Q, Zhang YH, Han XG*. 2010. Interactive effects of soil nitrogen and water availability on leaf mass loss in a temperate steppe. Plant and Soil, 331:497-504

[86] Liu P, Huang J *, Sun O, Han X. 2010. Litter decomposition and nutrient release as affected by soil nitrogen availability and litter quality in a semiarid grassland ecosystem. Oecologia, 162:771-780

[87] Miao BH, Han XG, Zhang WH*. 2010. The ameliorative effect of silicon on soybean seedlings grown in potassium-deficient medium. Annals of Botany, 105:967-973

[88] Wang C, Han X, Xing X*. 2010. Effects of grazing exclusion on soil net nitrogen mineralization and nitrogen availability in a temperate steppe in northern China. Journal of Arid Environments, 74: 1287-1293

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著作专著:

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