[1] Turner B L I I, Meywr W B, Skole D. Global land-use/landcover change: Towards an integrated program of study[J]. Ambio ,1994b,23(1) :91-95.
[2] Tunner B L I I, Skole D, Sanderson S, et al. Land use and land cover change[J]. 地学前沿, 1997, 4(1): 26-33.
[3] 陈佑启,Peter H Verburg.中国土地利用/土地覆盖的多尺度空间分布特征分析[J].地理科学,2000,20(3):197~202.
[4] 陈利顶,傅伯杰,王军.黄土丘陵区典型小流域土地利用变化研究——以陕西延安地区大南沟流域为例[J].地理科学,2001,21(2):46~51.
[5] 李天宏,韩鹏.厦门市土地利用/覆盖动态变化的遥感监测与分析[J].地理科学,2001,21(6):537~543.
[6] 李小建,刘钢军,钱乐祥,等.中尺度流域土地利用/土地覆盖变化评估——以伊洛河中部地区为例[J].地理科学,2001,21(4):289~296.
[7] 苏维词.贵阳城市土地利用变化及其环境效应[J].地理科学,2000,20(5):462~468.
[8] 秦丽杰,张郁,许红梅,等.土地利用变化的生态环境效应研究——以前郭县为例[J].地理科学,2002,22(4):508~512.
[9] Houghton RA, HobbleJE, MwllilloJM, etal. Changes in the carbon content of terrestrial biota and soil between 1860 and1980: a net release of CO2 to the atmosphere[J]. Ecological Monography, 1983,53(3) :235-262.
[10] 康幕谊,江源,石瑞香.NECT样带1984~1996土地利用变化分析[J].地理科学,2000,20(2):115~120.
[11] Nasrallah H A, Brazel A J, Balling R C Jr. Analysis of the Kuwait City heat island[J]. Climate, 1987,7:185-192.
[12] Maston P A, Vitousek P M. Ecosystem approach to a global nitrous oxide budget[J]. Bioscience, 1990,40:667-672.
[13] Keller M, Jacob DJ, Wofsy S C, et al. Effects of tropical deforestation on global and regional atmosphere chemistry [J]. Climatic Change, 1991, 19:145-158.
[14] Logan J A. Tropospheric ozone: seasonal behavior, trends and anthropogenic influence [J]. Journal of Geophsical Research,1985, 90:10463-10482,
[15] Emanuel W R, King A W, Post W M. A dynamic model of terrestrial carbon cycling [J]. Global Biogeochemical Cycles,1993, 7(3) :339-358.
[16] Potter C S, Raich J W. Global patterns of carbon dioxide emission from soils [J]. Global Biogeochemical Cycles, 1995, 9(1) :23-26.
[17] 王绍强,陈育峰.陆地表层碳循环模型研究及其趋势[J].地理科学进展,1998,17(4):64~70.
[18] Adebayo Y R. A note on the effects of urbanization on temperature in Lbadan[J]. Climate, 1987, 7:185-192.
[19] 史培军,宫鹏,李晓兵,等.土地利用/覆盖变化研究的方法与实践[M].北京:科学出版社,2000.16~105.
[20] 周广胜,王玉辉.土地利用/覆盖变化对气候的反馈作用[J].自然资源学报,1999,14(4):318~322.
[21] Dickenson R E. Global change and terrestrial hydrology-a review[J]. Tellus, 1990, 43:176-189.
[22] Lean J. Simulation of the regional climatic impact of Amazon degradation[J]. Nature, 1989,342:411-413.
[23] Skukla J. Amazonian deforestation and climate change[J]. Science, 1990, 247: 1322-1324.
[24] Schlesinger W H, Reynolds J F, Gunningham G L, et al. Biological feedbacks in global desertification [J]. Science, 1990,247: 1043-1048.
[25] Lal R. Soil erosion and land degradation: the global risks[J].Adv. Soil Sci. , 1990,11:169-172.
[26] 张桃林,王兴祥.土壤退化研究的进展与趋向[J].自然资源学报,2000,15(3):232~237.
[27] 张家恩,徐琪.三峡库区退化土壤的恢复与重建研究[J].长江流域资源与环境,1998,7(3):248~254.
[28] 冷疏影,李秀彬.土地质量指标体系国际研究的新进展[J].地理学报,1999,54(2):177~185.
[29] White P J. A review of erosion and agriculture productivity with particular reference to grain crop production [J]. J Aust Agri Sci,1986. 52:99-118.
[30] 傅伯杰,陈利顶,马克明.黄土丘陵区小流域土地利用变化对生态环境的影响——以延安市羊圈沟流域为例[J].地理学报,1999,54(3):241~246.
[31] 蔡运龙,蒙吉军.退化土地的生态重建:社会工程途径[J].地理科学,1999,19(3):198~203.
[32] 蔡崇法,丁树文,张光远,等.三峡库区紫色土坡地养分状况及养分流失[J].地理研究,1996,15(3):77~84.
[33] 张桃林,鲁如坤,李忠佩.红壤丘陵区土壤养分退化与养分库重建[J].长江流域资源与环境,1998,7(1):18~24.
[34] 郭旭东,傅伯杰,陈利顶,等.低山丘陵区土地利用方式对土壤质量的影响——以河北省遵化市为例[J].地理学报,2001,56(4):447~455.
[35] 赵其国,孙波,张桃林.土壤质量的定义及评价方法[J].土壤,1997,29(3):113~120.
[36] 张光辉.土壤水蚀预报模型研究进展[J].地理研究,2001,20(3):274~281.
[37] 景可,李钜章,李凤新.黄河中游侵蚀量及趋势预测[J].地理学报,1998,53(增刊):107~115.
[38] 唐小明,李长安.土壤侵蚀速率研究方法综述[J].地球科学进展,1999,14(3):274~278.
[39] Darry I E, Granger, James W, et al. Spatially averaged longtime erosion rates measured from produced cosmogenic nuclides in alluvial sediment[J]. Journal of Geology, 1996, 104:249-257.
[40] 濮励杰,包浩生,D L Higgitt.土壤退化方法应用初步研究——以闽西沙县东溪流域为例[J].自然资源学报,1999,14(1):62~69.
[41] 张光辉.土壤侵蚀模型研究现状与展望[J].水科学进展,2002,13(3):389~396.
[42] 汤立群.流域产沙模型的研究[J].水科学进展,1996,7(1):47~53.
[43] Richey J E, Nobre C, Deser C. Amazon river discharge and climate variability[J]. Science, 1989, 246:101-103.
[44] Carpenter S R, Fisher S G, Grimm N B. Global change and freshwater ecosystems[J]. Rev. ofEco. Syst, 1992, 23:119-140.
[45] Miller C V, Denis J M, Ator S W. Nutrients in streams during basebelow in selected environmental settings of the Potomac river basin[J]. Water Resources, 1997, 33(6) :1155-1171.
[46] Daniel L Tufford. Stream nonpoint source nutrient prediction with land-use proximity and seasonality[J]. Journal of Environmental Quality, 1998, 27:100-111.
[47] Cathryn K Field. Estimating the effects of changing land use patterns on Connecticut lakes[J]. Journal of Environmental Quality, 1996, 25:325-333.
[48] Ekholm P, Kallio K, Salo S, et al. Relationship between catchment characteristics and nutrient concentrations in an agricultural river system[J]. Wat. Res. 2000,34( 15 ) :3709-3716.
[49] Michele A, Paola A, Maria R B, et al. Impact of land use and urban runoff on the contamination of the Sarno river basin in southwestern Italy [J]. Water, Air, and Soil Pollution, 2001,131:349-366.
[50] Martin Lindstrom. Urban land use influences on heavy metal fluxes and surface sediment concentrations of small lakes [J]. Water,Air, and Soil Pollution, 2001,131:363-383.
[51] Drolc A, Zagorc Konoan J, Cotman M. Evaluation of total nitrogen pollution reduction strategies in a river basin: a case study[J]. Water Science and Technology, 2001,44(6) :55-62.
[52] Clarke R A, Stanley C D, Mcneal B L, et al. Impact of agricultural land use on nitrate levels in lake Manatee, Florida[J]. Journal of Soil and Water Conservation, 2002,57(2) :106-111.
[53] David L C, Thomas E J, Donald E W. Effects of precipitation,air temperature, and land use on organic carbon discharges from Rhode river watershed [J]. Water, Air, and Soil Pollution,2001,129:139-159.
[54] McDowell R W, Sharpley A N, Chalmers A T. Land use and flow regime effects on phosphorus chemical dynamics in the fluvial sediment of the Winooski River, Vermont[J]. Ecological Engineering,2002,18:477-87.
[55] Berka C, Schreier H Hall . Linking water quality with agricultural intensification in a rural watershed[J]. Water,Air, and Soil Pollution, 2001,127:389-401.
[56] Gromaire M C, Gamaud S, Saad M,et al. Contribution of different sources to the pollution of wet weather flows in combined sewers[J]. War. Res. 2001,35(2):521-533.
[57] Lucie Sliva, Dudley Williams D. Buffer zone versus whole catchment approaches to studying land use impact on river water quality[J]. Wat. Res, 2001,35(14) :3462-3472.
[58] Payraudeau S, Tournoud M G, Cernesson F, et al. Annual nutrients export modeling by analysis of land use and topographic information: case of a small Mediterranean catchment[J]. Water Science and Technology, 2001,44(2-3) :321-327.
[59] Yamada K, Funaki T, Honda S, et al. Study of diffuse source pollution management for land use and drainage system planning[J]. Water Science and Technology, 2001,44(7) :203-221.
[60] Worrall F, Burt T P. The impact of land-use change on water quality at the catchment scale: the use of export coefficient and structural models[J]. Journal of Hydrology, 1999,221:75-90.
[61] Young W J, Farley T F, Davis J R. Nutrient management at the catchemt scale using decision support system[J]. Water Science and Technology, 1995,32(5-6) :277-282.
[62] 阎伍攻,陈非星.巢湖流域不同土地利用类型地表径流污染特征研究[J].长江流域资源与环境,1998,7(3):274~277.
[63] 单保庆,尹澄清.小流域磷污染物非点源输出的人工降雨模拟研究[J].环境科学学报,2000,20(1):33~37.
[64] 陈欣,王兆骞,杨武德,等.红壤小流域坡地不同利用方式对土壤磷素流失的影响[J].生态学报,2000,20(3):374~377.
[65] 黄满湘,章申,唐以剑,等.模拟降雨条件下农田径流中氮的流失过程[J].土壤与环境,2001,10(1):6~10.
[66] 杨金玲,张甘霖,张华,等.丘陵地区流域土地利用对氮素径流输出的影响[J].环境科学,2003,24(1):18~23.
[67] 梁涛,张秀梅,章申,等.西笤溪流域不同土地类型下氮元素输移过程[J].地理学报,2002,57(4):389~397.
[68] 梁涛,张秀梅,章申,等.西笤溪流域不同土地类型下磷素随暴雨径流的迁移特征[J].环境科学,2003,24(2):35~40.
[69] 郭旭东,陈利顶,傅伯杰.土地利用/土地覆被变化对区域生态环境的影响[J].环境科学进展,1999,7(6):66~75.
[70] 陈利顶,傅伯杰.农田生态系统管理与非点源污染控制[J].环境科学,2001,21(2):98~100.
[71] 李俊然,陈利顶,傅伯杰,等.于桥水库流域地表水非点源N时空变化特征[J].地理科学,2002,22(2):238~242.
[72] 郑一,王学军.非点源污染研究的进展与展望[J].水科学进展,2002,13(1):105~110.
[73] 马立珊,汪祖强,张水铭,等.苏南太湖水系农业面源污染及其控制对策研究[J].环境科学学报,1997,17(1):39~47.
[74] 李俊然,陈利顶,郭旭东.土地利用结构对非点源污染的影响[J].中国环境科学,2000,20(6):506~510.
[75] 王少华,俞立中,许世远,等.基于GIS的苏州河非点源污染的总量控制[J].中国环境科学,2002,22(6):520~524.
[76] 盛学良,舒金华,彭补拙,等.江苏省太湖流域总氮、总磷排放标准研究[J].地理科学,2002,22(4):449~452.
[77] 李荣刚,夏源陵,吴安之.江苏太湖地区水污染物及其向水体的排放量[J].湖泊科学,2000,12(2):147~153.
[78] 谭术魁.1998年长江中下游特大洪灾的土地利用思考[J].地理科学,1998,18(6):493~500.
[79] 史培军,袁艺,陈晋.深圳市土地利用变化对流域径流的影响[J].生态学报,2001,21(7):1041~1049.
[80] Webb B W. Load estimation methodologies for British rivers and their relevance to the LOIS RACS(R) programe[J]. The science of the Total Environment, 1997, 195:379-390.
[81] 刘苏峡,张士锋,刘昌明.黄河流域水循环研究的进展和展望[J].地理研究,2001,20(3):257~265.
[82] Beven K J, Kirkby M J. A physically-based, contributing area model of basin hydrology[J]. Hydrol. Sci. Bull, 1997,24(1):43-69.
[83] Roland E S. Modelling hydrological responses to land use and climate change: A southem African perspective [J]. Ambio,2000,29(1): 12-22.
[84] 邓慧平.气候与土地利用变化对水文水资源的影响研究[J].地球科学进展,2001,16(3):436~441.