[1] Reich P B, GrigalD F, Aber J D, et al. Nitrogen mineralization andp roductivity in 50 hardwood and conifer stands on diverse soils[J].Ecology, 1997, 78: 335 - 347
[2] Aber J,Melillo J. Terrestrial Ecosystem [M]. Second Edition. SanDiego, California, USA: Harcourt Academic Press, 2001
[3] Knoepp J D, SwankW T. Rates of nitrogen mineralization across anelevation and vegetation gradient in the southern Appalachians[J].Plant and Soil, 1998, 204: 235 - 241
[4] Schimel J P, Bennett J. Nitrogenmineralization: challenges of a changing paradigm[J]. Ecology, 2004, 85 (3) : 591 - 602
[5] Ineson P, Taylor K, Harrison A F, et al. Effects of climate change onnitrogen dynamics in up land soil. 1 a transp lant app roach[J]. GlobalChange Biology, 1998, 4: 143 - 152
[6] Finzi A C, Delucia E H, Hamilton J G, et al. The nitrogen budget ofa p ine forest under free air CO2 enrichment [J]. Oecologia, 2002,132: 567 - 578
[7] Mcmurtrie R E,Medlyn B E, Dewar R C. Increased understanding ofnutrient immobilization in soil organic matter is critical for p redictingthe carbon sink strength of forest ecosystem over the next 100 years[J]. Tree Physiology, 2001, 21: 831 - 839
[8] SwiftM J,Anderén O,Brussaard L , et al. Global change, soil biodiversity, and nitrogen cycling in terrestrial ecosystem: three case studies[J]. Global Change Biology, 1998, 4: 729 - 743
[9] Zak D R, HolmesW E,Macdonald NW, et al. Soil temperature,matric potential and the kinetics of microbial resp iration and nitrogenmineralization[J]. Soil Science Society of American Journal, 1999,63: 575 - 584
[10] WeintraubM N, Schimel J P. Interaction between carbon and nitrogen mineralization and soil organic matter chemistry in arctic tundrasoils[J]. Ecosystem, 2003, 6: 129 - 143
[11] Bonito GM, Coleman D C, Haines B L, et al. Can nitrogen budgetsexp lain differences in soil nitrogen mineralization rates of foreststands along an elevation gradient[J]. Forest Ecology andManagement, 2003, 176: 563 - 574
[12] Zaman M, Chang S X. Substrate type, temperature, and moisturecontent affect gross and net N mineralization and nitrification ratesin agroforestry systems[J]. Biol Fertile Soils, 2004, 39: 269 - 279
[13] van Der Krift TA J, Berendse F. The effects of p lant species on soilnitrogen mineralization[J]. Journal of Ecology, 2001, 89: 555 - 561
[14] 巨晓棠,李生秀. 培养条件对土壤氮素矿化的影响[J]. 西北农业学报, 1997, 6 (2) : 64 - 67
[15] 周才平,欧阳华. 温度和湿度变化对暖温带落叶阔叶林土壤氮素矿化的影响[J]. 植物生态学报, 2001, 25 (2) : 204 - 209
[16] 陈详伟,陈立新,刘伟琪. 不同森林类型土壤氮矿化的研究[J].东北林业大学学报, 1999, 27 (1) : 5 - 9
[17] 苏 波,韩兴国. 东山油松纯林和油松辽东栎林土壤氮素矿化/硝化作用研究[J]. 植物生态学报, 2001, 25 (2) : 195 - 203
[18] 王其冰,李林浩. 气候变化对草甸草原土壤氮素矿化作用影响的实验研究[J]. 植物生态学报, 2000, 24 (6) : 687 - 692
[19] 李玉中,祝廷成, Redmann R E. 三种利用类型羊草草地氮总矿化、硝化和无机氮消耗速率比较研究[J]. 生态学报, 2002, 22(5) : 668 - 673
[20] 张金霞,曹广明. 高寒草甸生态系统氮素循环[J]. 生态学报,1999, 19 (4) : 510 - 513
[21] 汤懋苍,程国栋. 青藏高原近代气候变化及其对环境的影响[M]. 广州:广东科技出版社, 1998
[22] 孙鸿烈,郑 度. 青藏高原形成演化与发展[M]. 广州:广东科技出版社, 1998
[23] 熊 毅,李庆逵. 中国土壤[M]. 北京:科学出版社, 1990
[24] 鲍士旦. 土壤农化分析[M]. 北京:中国农业出版社, 1999
[25] 文启孝. 土壤有机质研究法[M]. 北京:中国农业出版社, 1984:273 - 284
[26] Robertson G P, Wedin D, Groffman PM, et al. Soil carbon and ni2trogen availability[M] / /Robertson G P, Bledsoe C S, Coleman DC, et al. Standard SoilMethods for Long2Term Ecological Research.New York: Oxford University Press, Inc, 1999: 258 - 271
[27] 方开泰,马长兴. 正交与均匀试验设计[M]. 北京: 科学出版社, 2001
[28] 方 萍,何 延. 试验设计与统计[M]. 杭州: 浙江大学出版社, 2003
[29] 巨晓棠,李生秀. 土壤氮素矿化的温度水分效应[J]. 植物营养与肥料学报, 1998, 4 (1) : 37 - 42
[30] LeirósM C, Trasar2Cepeda C, Seoane S, et al. Dependence of mineralization of soil organic matter on temperature and moisture [J].Soil Biology & Biochemistry, 1999, 31: 327 - 335
[31] 李贵才,韩兴国,黄建辉,等. 森林生态系统土壤氮矿化影响因素研究进展[J]. 生态学报, 2001, 21 (7) : 1187 - 1195
[32] Nadelhoffer K J, Giblin A E, Shaver G. R, et al. Effects of temperature and substrate quality on elementmieralization in six arctic soils[J]. Ecology, 1991, 72 (1) : 242 - 253
[33] 任露泉. 试验优化设计与分析[M]. 北京: 高等教育出版社, 2003
[34] 李菊梅,王朝辉,李生秀. 有机质、全氮和可矿化氮在反映土壤供氮能力方面意义[J]. 土壤学报, 2003, 40 (2) : 232 - 238
[35] Vervaet H, Massart B,Boeckx P, et al. Use of p rincipal componentanalysis to assess factors controlling netN mineralization in deciduous and conifierous forest soils[J]. Biol Fertile Soils, 2002, 36: 93- 101
[36] Dalias P,Anderson J M, Bottner P, et al. Temperature responses ofnet nitrogen mineralization and nitrification in conifer forest soils incubated under standard laboratory conditions [J]. Soil Biology &Biochemistry, 2002, 34: 691~701