[1]刘楠,谢永生,索改弟,等.基于GIS和MUSLE的东北沟小流域非点源污染关键区识别[J].水土保持研究,2014,21(02):123-126.
 LIU Nan,XIE Yong-sheng,SUO Gai-di,et al.Identification of Critical Non-point Source Pollution Areas in Dongbeigou Watershed Based on GIS and MUSLE[J].Research of Soil and Water Conservation,2014,21(02):123-126.
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基于GIS和MUSLE的东北沟小流域非点源污染关键区识别

参考文献/References:

[1] 张维理,吴淑霞,冀宏杰,等.中国农业面源污染形势估计及控制对策.Ⅰ:21世纪初期中国农业面源污染的形势估计[J].中国农业科学,2004,37(7):1008-1017.
[2] Pimental D. World soil erosion and conservation[M]. Cambridge:Cambridge University Press,1993.
[3] 胥彦玲,王苏舰,李怀恩.土地覆盖变化对流域非点源污染的影响研究:以黑河流域为例[J].水土保持研究,2010,17(3):251-253.
[4] 周健.试论农业非点源污染的危害[J].农业环境保护,1990,9(1):22-25.
[5] Gburek W J, Sharpley A N. Hydrologic controls on phosphorus loss from upland agricultural watersheds[J]. Journal of Environmental Quality,1998,27(2):267-277.
[6] 张淑荣,陈利顶,傅伯杰,等.农业区非点源污染潜在危险性评价:以于桥水库流域磷流失为例[J].第四纪研究,2003,23(3):262-269.
[7] 杨菁荟,张万昌.SWAT模型及其在水环境非点源污染中的应用研究进展[J].水土保持研究,2009,16(5):260-266.
[8] 周军,张颖,高凤杰,等.阿什河流域农业非点源污染优先控制区域识别[J].水土保持研究,2013,20(3):180-184.
[9] Maas R P, Smolen M D, Dressing S A. Selecting critical areas for nonpoint-source pollution control[J]. Journal of Soil and Water Conservation,1985,40(1):68-71.
[10] Schauble T. Erosionsprognosen mit GIS und EDV-Ein Vergleich verschiedener Bewertungskonzepte am Beispiel einer Gaulandschaft[D]. Geographisches Institut, Universitat Tubingen,Germany,1999.
[11] Sivertun A K E, Reinelt L E, Castensson R. A GIS method to aid in non-point source critical area analysis[J]. International Journal of Geographical Information System,1988,2(4):365-378.
[12] Williams J R, Renard K G, Dyke P T. EPIC:A new method for assessing erosion’s effect on soil productivity[J]. Journal of Soil and Water Conservation,1983,38(5):381-383.
[13] Mitasova H, Hofierka J, Zlocha M, et al. Modelling topographic potential for erosion and deposition using GIS[J]. International Journal of Geographical Information Systems,1996,10(5):629-641.
[14] Sivertun ?, Prange L. Non-point source critical area analysis in the Gissel? watershed using GIS[J]. Environmental Modelling & Software,2003,18(10):887-898.
[15] McElroy A D. Loading functions for assessment of water pollution from nonpoint sources[M]. US Environmental Protection Agency, Office of Research and Development,1976.

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备注/Memo

收稿日期:2013-06-10;改回日期:2013-09-02。
基金项目:国家科技支撑计划课题“农田水土保持工程与耕作关键技术研究”(2011BAD31B01);水利部公益性行业科研专项“工程开挖面与堆积体水土流失测算技术研究”(201201048);“风力作用下扰动地表侵蚀预报关键技术研究”(201201047)
作者简介:刘楠(1989-),男,河北石家庄人,硕士研究生,主要从事GIS在环境监测与评价中的应用。E-mail:freestyleconan@nwsuaf.edu.cn
通讯作者:谢永生(1960-),男,河南开封人,研究员,主要从事环境评价、水土保持及土地资源等方面研究。Email:ysxie@ms.iswc.ac.cn

更新日期/Last Update: 1900-01-01