[1] Rodle H. A comparison of the contribution of various gasses to the greenhouse effect [J]. Science,1990,248(4960):1217-1219
[2] 王让会. 全球变化的区域响应[M]. 北京:气象出版社,2008
[3] 刘东生. 全球变化和可持续发展科学[J]. 地学前缘,2002,9(1):1-8
[4] 李博,雍世鹏,李瑶,等. 中国的草原[M]. 北京:科学出版社,1990
[5] 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
[6] 姜恕,戚秋慧,孔德珍. 草原生态系统研究(I)[M]. 北京:科学出版社,1985
[7] Sims P L, Singh J S. The structure and function of ten western North American grasslands. III. Net primary production, turnover, and efficiencies of energy capture and water use [J]. Journal of Ecology,1978,66(3):573-597
[8] 张伟,张宏,泽柏. 我国高寒草甸碳循环研究进展[J]. 山地学报,2006,24(B10):266-274
[9] 牛建明. 气候变化对内蒙古草原分布和生产力影响的研究预测[J]. 草地学报,2001,9(4):277-282
[10] 任继周. 草地农业生态学[M]. 北京:中国农业出版社,1995
[11] 刘冬伟,史印涛,王明君,等. 放牧对三江平原小叶章草甸初级生产力及营养动态的影响[J]. 草地学报,2013,21(3):446-451
[12] 金峰,杨浩,赵其国. 土壤有机碳储量及影响因素研究进展[J]. 土壤,2000(1):11-17
[13] 耿元波,史晶晶. 草原凋落物的分解及营养元素的释放和累积[J]. 地理科学进展,2012,31(5):655-663
[14] Schlesinger W H, Andrews J A. Soil respiration and the global carbon cycle [J]. Biogeochemistry,2000,48(1):7-20
[15] 耿元波,董云社,齐玉春. 草地生态系统碳循环研究评述[J]. 地理科学进展,2004,23(3):74-81
[16] 刘立新,董云社,齐玉春. 草地生态系统土壤呼吸研究进展[J]. 地理科学进展,2004,23(4):36-42
[17] Raich J W, Schlesinger W H. The global carbon dioxide flux in soil respiration and its relationship to vegetation and climate [J]. Tellus B,1992,44(2):81-99
[18] Ojima D S, Parton W J, Schimel D S, et al. Modeling the effects of climatic and CO2 change on grassland storage of soil C [J]. Water, Air, and Soil Pollution,1993,70(4):643-657
[19] Sala O E, Parton W J, Joyce L A, et al. Primary production of the central grassland region of the United States [J]. Ecology,1988,69(1):40-45
[20] Jobbágy E G, Sala O E, Paruelo J M. Patterns and controls of primary production in the Patagonian steppe: A remote sensing approach [J]. Ecology,2002,83(2):307-319
[21] Bai Y F, Wu J G, Pan Q M, et al. Positive linear relationship between productivity and diversity: evidence from the Eurasian steppe [J]. Journal of Applied Ecology,2007,44(5):1023-1034
[22] 马文红,方精云,杨元合,等. 中国北方草地生物量动态及其与气候因子的关系[J]. 中国科学:生命科学,2010,40(7):632-641
[23] Yang Y, Fang J, Ma W, et al. Relationship between variability in aboveground net primary production and precipitation in global grasslands [J]. Geophisical Research Letters,2008,35(23):L23710
[24] 程迁,莫兴国,王永芬,等. 羊草草原碳循环过程的模拟与验证[J]. 自然资源学报,2010,25(1):60-70
[25] 王玉辉,周广胜. 内蒙古羊草草原植物群落地上初级生产力时间动态对降水变化的响应[J]. 生态学报,2004,24(6):1140-1145
[26] 李凌浩,李鑫,白文明,等. 锡林河流域一个放牧羊草群落中碳素平衡的初步估计[J]. 植物生态学报,2004,28(3):312-317
[27] Thomey M L, Collins S L, Vargas R, et al. Effect of precipitation variability on net primary production production and soil respiration in a Chihuahuan Desert grassland [J]. Global Change Biology,2011,17(4):1505-1515
[28] Heisler-White J L, Knapp A K, Kelly E F. Increasing precipitation event size increases aboveground net primary productivity in a semi-arid grassland [J]. Oecologia,2008,158(1):129-140
[29] Heisler-White J L, Blair J M, Kelly E F, et al. Contingent productivity responses to more extreme rainfall regimes across a grassland biome [J]. Global Change Biology,2009,15(12):2894-2904
[30] Bouma T J, Bryla D R. On the assessment of root and soil respiration for soils of different textures: Interactions with soil moisture contents and soil CO2 concentrations [J]. Plant and Soil,2000,227(1/2):215-221
[31] Sponseller R A. Precipitation pulses and soil CO2 flux in a Sonoran desert ecosystem [J]. Global Change Biology,2007,13(2): 426-436
[32] Casals P, Lopez-Sangil L, Carrara A, et al. Autotrophic and heterotrophic contributions to short-term soil CO2 efflux following simulated summer precipitation pulses in a Mediterranean dehesa [J]. Global Biogeochemical Cycles,2011,25(3):GB3012
[33] 安尼瓦尔·买买提,杨元合,郭兆迪,等. 新疆草地植被的地上生物量[J]. 北京大学学报:自然科学版,2006,42(4):521-526
[34] 袁飞,韩兴国,葛剑平,等. 内蒙古锡林河流域羊草草原净初级生产力及其对全球气候变化的响应[J]. 应用生态学报,2008, 19(10):2168-2176
[35] 徐淑新,张丽华,郭笃发. 草地生态系统碳通量研究进展[J]. 环境科学与管理,2010,35(7):146-149
[36] Batjes N H. Total carbon and nitrogen in the soils of the world [J]. Europe Journal of Soils Science,1996,47(2):151-163
[37] Marschner B, Bredow A. The effects on release and ecologically relevant properties of dissolved organic carbon in sterilized and biologically active soil samples [J]. Soil Biology & Biochemistry,2002,34(4):459-466
[38] 方精云,杨元合,马文红,等. 中国草地生态系统碳库及其变化[J]. 中国科学:生命科学,2010,40(7):566-576
[39] IPCC (Intergovernmental Panel on Climate Change). Climate change 2007: The physical science basis: Summary for policy makers [M]. Cambridge, UK: Cambridge University Press, 2007
[40] Tucker C J, Slayback D A, Pinzon J E, et al. Higher northern latitude normalized difference vegetation index and growing season trends from 1982 to 1999 [J]. International Journal of Biometeorology,2001,45(4):184-190
[41] 李英年,赵亮,赵新全,等. 5年模拟增温后矮嵩草草甸群落结构及生产量的变化[J]. 草地学报,2004,12(3):236-239
[42] 李英年,王启基,周兴民,等. 高寒草甸植物群落的环境特征分析[J]. 干旱区研究,1998,15(1):54-58
[43] 任继周,梁天刚,林慧龙,等. 草地对全球气候变化的响应及其碳汇潜势研究[J]. 草业学报,2011,20(2):1-22
[44] Bond-Lamberty B, Thomson A. Temperature-associated increases in the global soil respiration record [J]. Nature,2010, 464(7288):579-582
[45] Davidson E A, Ishida F Y, Nepstad D C. Effects of an experimental drought on soil emissions of carbon dioxide, methane, nitrous oxide, and nitric oxide in a moist tropical forest [J]. Global Change Biology,2004,10(5):718-730
[46] Yang Y H, Fang J Y, Tang Y H, et al. Storage patterns and controls of soil organic carbon in the Tibetan grasslands [J]. Global Change Biology,2008,14(7):1592-1599
[47] Saggar S, Parshotam A, Hedley C, et al. 14 C-labelled glucose turn over in New Zealand soils [J]. Soil Biology & Biochemistry,1999,31(14):2025-2037
[48] 杨钙仁,童成立,张文菊,等. 陆地碳循环中的微生物分解作用及其影响因素[J]. 土壤通报,2005,36(4):606-609
[49] Wang Z P, Delaune R D, Patrick W H, et al. Soil redox and pH effects on methane production in a flooded rice soil [J]. Soil Science Society of America Journal,1993,57(2):382-388
[50] 王艳芬,陈佐忠,Tieszen L T. 人类活动对锡林郭勒地区主要草原土壤有机碳分布的影响[J]. 植物生态学报,1998,22(6): 545-551
[51] Grünzweig J M, Krner C. Growth, water and nitrogen relations in grassland model ecosystems of the semi-arid Negev of Israel exposed to elevated CO2 [J]. Oecologia,2001,128(2):251-262
[52] 许振柱,周广胜,王玉辉. 草原生态系统对气候变化和CO2浓度升高的响应[J]. 应用气象学报,2005,16(3):385-394
[53] Morgan J A, Legain D R, Mosier A R, et al. Elevated CO2 enhances water relations and productivity and affects gas exchange in C3 and C4 grasses of the Colorado shotgrass steppe [J]. Global Change Biology,2001,7(4):451-466
[54] Huxman T E, Smith S D. Photosynthesis in an invasive grass and native forb at elevated CO2 during an El Niño year in the Mojave desert [J]. Oecologia,2001,128(2):193-201
[55] Hungate B A, Holland E A, Jackson R B, et al. The fate of carbon in grasslands under carbon dioxide enrichment [J]. Nature,1997,388(6642):5762-5791
[56] Van Groeningen K J, Harris D, Horwath W R, et al. Linking sequestration of 13C and 15N in aggregates in a pasture soil following 8 years of elevated atmospheric CO2 [J]. Global Change Biology,2002,8(11):1094-1108
[57] Hungate B A, Jackson R B, Field C B, et al. Detecting changes in soil carbon in CO2 enrichment experiments [J]. Plant and Soil,1996,187(2):135-145
[58] Wang Y H, Zhou G S, Jia B R. Modeling SOC and NPP responses of meadow steppe to different grazing intensities in Northeast China [J]. Ecological Modelling,2008,217(1):72-78
[59] Holt J A. Grazing pressure and soil carbon, microbial biomass and enzyme activities in semiarid northeastern Australia [J]. Applied Soil Ecology,1997,5(2):143-149
[60] Xie Z B, Zhu J G, Liu G, et al. Soil organic carbon stocks in China and changes from 1980s to 2000s [J]. Global Change Biology,2007,13(9):1989-2007
[61] 李香真,陈佐忠. 不同放牧率对草原植物与土壤C、N、P含量的影响[J]. 草地学报,1998,6(2):90-98
[62] Reeder J D, Schuman G E. Influence of livestock grazing on C sequestration in semi-arid mixed-grass and short-grass rangelands [J]. Environmental Pollution,2002,116(3):457-463
[63] 张成霞,南志标. 放牧对草地土壤理化特性影响的研究进展[J]. 草业学报,2010,19(4):204-211
[64] Houghton R A. Changes in terrestrial carbon over the last 135 years[M]//Heimann M, ed. The global carbon cycle. New York: Springer-Verlag, 1993
[65] 宋日,刘利,吴春胜,等. 东北松嫩草原土壤开垦对有机质含量及土壤结构的影响[J]. 中国草地学报,2009,31(4):91-95
[66] 闫玉春,唐海萍,常瑞英,等. 长期开垦与放牧对内蒙古典型草原地下碳截存的影响[J]. 环境科学,2008,29(5):1388-1393
[67] 李明峰,董云社,齐玉春,等. 农垦对温带草地生态系统CO2、CH4、N2O通量的影响[J]. 中国农业科学,2004,37(12):1960-1965
[68] 李凌浩. 土地利用变化对草原生态系统土壤碳贮量的影响[J]. 植物生态学报,1998,22(4):300-302
[69] 陈伏生,曾德慧,陈广生,等. 开垦对草甸土有机碳的影响[J]. 土壤通报,2004,35(4):413-419
[70] 崔骁勇,陈佐忠,陈四清. 草地土壤呼吸研究进展[J]. 生态学报,2001,21(2):315-325 |