Mu X D. Ananalysis of management strategy on 30 household stockfarms in rangeland region of the Northern China. Pratacultural Science, 1991, 8(5): 4-7.
[20]
Wang J J. The vegetation dynamic change during “the tenth five years” in Inner Mongolia. Inner Mongolia Prataculture, 2006, 18(3): 47-50.
[21]
Ding Y. The Study of Sustainable Development on Grazing Ecosystem of Natural Grassland: Household Perspective[D]. Hohhot, China: Inner Mongolia University, 2008.
[22]
Wen C Z. Improve family ranch for the development of modern animal husbandry. Journal of Sichuan Grassland, 1998, (4): 16-18.
[23]
Ren J Z. The agricultural structure must be changed in China: the worry of grain continous nine years increased. Acta Prataculturae Sinica, 2013, 22(3):1-5.
[24]
Wang C M, Yang L J, Chang S H, et al . Price analysis of domestic and international major livestock and forage products. Acta Prataculturae Sinica, 2014, 23(1): 300-311.
[25]
Prager D. Farm household well-being[EB/OL]. [2014.11.. 浏览
[26]
USDA, NASS. 2007 Census of Agriculture, United States, Summary and State Data. Geographic Area Series, 2009.
[27]
Wu S Q, Wu R Q, Jin W X, et al . The grassland resource and the development direction of pratacultural production in Sunjiatan, Wuzhong, Ningxia. Grassland and Turf, 2003, (1): 23-24.
[28]
Yang Y H. Views on the establishment of a new type of household farm in “return grazing land to grassland project”. Grassland and Turf, 2007, 3: 64-66, 68.
[29]
Ze B. The research demonstration summary of family ranch optimized mode of in the northwestern of Sichuan. Journal of Sichuan Grassland, 1998, 4: 1-8.
[30]
Xie X C. The characteristics of family ranch in China. Chinese Journal of Grassland, 1986, 2: 69.
[31]
Daoerjipalamu. Intensive Grassland Animal Husbandry[M]. Beijing: China Agricultural Science and Technology Press, 1996: 5.
[32]
Ding Y, Niu J M, Hou X Y, et al . Differentiation in households’ production in the view of sustainable development evaluation. Pratacultural Science, 2010, 27(11): 151-158.
[33]
Cribb J. The coming famine: the global food crisis and what we can do to avoid it. Berkeley and Los Angeles, USA: University of California Press, 2010.
[34]
Childers D, Corman J, Edwards M, et al . Sustainability challenges of phosphorus and food: solutions from closing the human phosphorus cycle. Bioscience, 2011, 61(2):117.
[35]
Kremen C, Iles A, Bacon C. Diversified farming systems an agroecological, systems-based alternative to modern industrial agriculture. Ecology and Society, 2012, 17(4): 44.
[36]
Kremen C, Miles A. Ecosystem services in biologically diversified versus conventional farming systems: benefits, externalities, and trade-offs. Ecology and Society, 2012, 17(4): 40.
[37]
Bacon C M, Getz C, Kraus S, et al . The social dimensions of sustainability and change in diversified farming systems. Ecology and Society, 2012, 17(4): 41.
[38]
Xolocotzi E H. Maize and man in the greater Southwest. Economic Botany, 1985, 39(4):416-430.
[39]
Pretty J. Regenerating Agriculture: Policies and Practice for Sustainability and Self-reliance[M]. Washington D C, USA: Joseph Henry Press, 1995.
[40]
Pretty J. Social capital and the collective management of resources. Science, 2003, 302:1912-1914.
[41]
Swift M J, Anderson J M. Biodiversity and ecosystem function in agricultural systems. In: Ernst-Detlef S, Harold A M. Biodiversity and Ecosystem Function. New York: Springer Berlin Heidelberg, 1994: 15-41.
[42]
Khairo S A, Mullen J D, Hacker R B, et al . Farming Systems in the Pastoral Zone of NSW: An Economic Analysis. Economic Research Report No.31, NSW DPI, Trangie, NSW, 2008.
[43]
Wilson G A. From productivism to post-productivism and back again? Exploring the (un)changed natural and mental landscapes of European agriculture. Transactions of the Institute of British Geographers, 2001, 26(1): 77-102.
[44]
Kemp D R, Charry A A, Whiteley W J, et al . Australian agricultural ecosystems: searching for biophysical sustainability performance indicators. Proceedings 13th International Farm Management Congress[C]. Session 10. Arnhem, The Netherlands, Cambridge, UK: The International Farm Management Association, 2002.
[45]
von Liebig J F. Die organische Chemie in ihrer Anwendung auf Agricultur und Physiology[M]. Braunschweig: Auflage Vieweg, 1843.
[46]
Ilbery B W, Bowler I R. From agricultural productivism to post-productivism. In: Ilbery B W.The Geography of Rural Change[M]. London: Longman, 1998:57-84.
[47]
Weiner J. Ecology-the science of agriculture in the 21st century. Journal of Agricultural Science, 2003, 141: 371-377.
[48]
Kemp D R, Michalk D L. Towards sustainable grassland and livestock management. Journal of Agricultural Science, 2007, 145(6): 543-564.
[49]
Kemp D R, Michalk D L, Charry A A. The development of ecological performance indicators for sustainable systems. In Proceedings of the 10th Australian Agronomy Conference. The Australian Society of Agronomy[C]. Hobart, Australia, 2001: 1050-1220. Available online: http://www.regional.org.au/au/asa/2001/4/c/kemp.htm. 浏览
[50]
Xu G Z. Systematic thinking of the ecosystemtic sustainable develompment. Forestry Economics, 2010, 8: 78-81.
[51]
Ma S J, Wang R S. The social-economic-natural complex ecosystem. Acta Ecologica Sinica, 1984, (1): 1-8.
[52]
Ding Y, Niu J M, Chen L R, et al . Evaluation of sustainable development of compound ecosystem on the scale of household pasture. Bulletin of Soil and Water Conservation, 2008, 28(2): 173-179.
[53]
Li X L, Hou X Y, Ubugunov L, et al . Effects of climate change on household compound ecosystems and herders’ adaptation. Acta Prataculturae Sinica, 2013, 22(1):148-156.
[54]
Gai Z Y. Study on Sustainable Development of Ecological Economy System in Grassland[D]. Beijing: Beijing Forestry University, 2005.
[55]
Campbell A, Siepen G. Landcare: Communities Shaping the Land and the Future[M]. Sydney, Australia: Allen and Unwin, 1994.
[56]
Kemp D R, Dowling P M. Species distribution within improved pastures over central NSW in relation to rainfall and altitude. Australian Journal of Agricultural Research, 1991, 42: 647-659.
[57]
Bengtsson J, Ahnstrom J, Weibull A C. The effects of organic agriculture on biodiversity and abundance: a meta-analysis. Journal of Applied Ecology, 2005, 42: 261-269.
[58]
Hole D G, Perkins A J, Wilson J D, et al . Does organic farming benefit biodiversity. Biological Conservation, 2005, 122: 113-130.
[59]
Letourneau D K, Bothwell S G. Comparison of organic and conventional farms: challenging ecologists to make biodiversity functional. Frontiers in Ecology and the Environment, 2008, 6: 430-438.
[60]
Amano T, Kusumoto Y, Okamura H, et al . A macro-scale perspective on within-farm management: how climate and topography alter the effect of farming practices.Ecology Letters, 2011,14: 1263-1272.
[61]
Fuller R J, Norton L R, Feber R E, et al . Benefits of organic farming to biodiversity vary among taxa. Biology letters, 2005, 1: 431-434.
[62]
Batáry P, Báldi A, Kleijn D, et al . Landscape-moderated biodiversity effects of agri-environmental management: a meta-analysis. Proceedings of the Royal Society B: Biological Sciences, 2011, 278: 1894-1902.
[63]
Tscharntke T, Klein A M, Kruess A, et al . Landscape perspectives on agricultural intensification and biodiversity-ecosystem service management. Ecology Letters, 2005, 8: 857-874.
[64]
White C.The Carbon Ranch. Society for Range Management, 2011, 33(2): 24-30.
[65]
Inner Mongolia Erdos Municipal People’s Government Office of Agricultural Joint Research Group. The successful practice of modern eco-family ranch. China Animal Husbandry Bulletin, 2010, 7:15-17.
[66]
Yang S F. High standards family ranch of construction should be promoted. Chinese Journal of Animal Science, 2000, 36(1): 52.
[67]
Wu J P, Randall J, Yang L, et al . Precision management of wool sheep grazing production system. China Advances in Animal Breeding and Genetics-15th National Animal Breeding and Genetics Symposium Proceedings[C]. Yanglin: China Institute of Veterinary, 2009: 359.
[68]
Han G D, Li N, Zhao M L, et al . Changing livestock numbers and farm management to improve the livelihood of farmers and rehabilitate grasslands in desert steppe: a case study in Siziwang Banner, Inner Mongolia Autonomous Region. In: Kemp D R, Michalk D L. Development of 114 Sustainable Livestock Systems on Grasslands in Northwestern China[M]. ACIAR Proceedings No. 134 Australian Centre for International Agricultural Research: Canberra, 2011: 80-96.
[69]
Li Z G, Han G D, Zhao M L, et al . The Optimizing Management of Family Ranch in Desert Steppe. Symposium Proceedings of Rural prataculture[C]. Xiamen, China: Chinese Grassland Society Youth Commission, 2008: 579-583.
[70]
Siriguleng, Li Z J. Improving family ranch and the quality and profit of animal husbandry economy through adopt the integrated technology. Inner Mongolia Science Technology & Economy, 2006, (9): 61-62.
[71]
Li X L. A preliminary investigation of turfgrass diseases and their control strategies in Ningxia, China. Pratacultural Science, 2001, 18(4): 50-56.
[72]
Li G L, Ding L S. The evaluation of extension and practice of household ranch optimization mode in Gannan prefecture. Pratacultural Science, 2006, 23(9): 99-102.
[73]
Chang Q. Discussion of the production and management model of household ranch in Qinghai Lake area. Prataculture & Animal Husbandry, 2006, (7): 53-54.
[74]
Johnson I R, Lodge G M, White R E. The sustainable grazing systems pasture model: description, philosophy and application to the SGS national experiment. Australian Journal of Experimental Agriculture, 2003, 43: 711-728.
[75]
Schils R L M, Olesen J E, Del Prado A, et al . A review of farm level modelling approaches for mitigating greenhouse gas emissions from ruminant livestock systems. Livestock Science, 2007, 112: 240-251.
[76]
Dube S. A Model for Adaptive Livestock Management on Semi-arid Rangelands in Texas. Texas, United States: Texas A&M University, 2005.
[77]
Li N. Study on Optimal Management Model of Household Farm in Desert Steppe of Inner Mongolia[D]. Hohhot, China: Inner Mongolia Agricultural University, 2009.
[78]
Zheng Y, Xu Z, Takahashi T, et al . Research on grazing managanent optinal model of typical steppe study a case study in Taipusi Banner, Inner Mongolia. Ecology, 2010, 30(14): 3933-3940.
[79]
Duan Q W, Li G, Chen B R, et al . Decision support systems for grazing on the scale of a ranch: recent developments. Journal of Beijing Normal University (Natural Science), 2009, 45(2): 205-211.
[80]
Wei Y R. Research on the Grassland Model and Balance Model of Livestock Capacity in Typical Grassland of China[D]. Beijing, China: China Agricultural University, 2004.
[81]
Parton W J, Scurlock J M O, Ojima D S, et al . Observations and modeling of biomass on soil organic matter dynamics for the grassland biome worldwide. Global Biogeochemical Cycles, 1993, 7: 785-810.
[82]
Moore A D, Donnelly J R, Freer M. GAZPLAN: decision support systems for Australian grazing enterprises. III. Pasture growth and soil moisture submodels, and the GrassGro DSS. Agricultural Systems, 1997, 55: 535-582.
[83]
Ren J Z, Hou F J. Discussion on the framework of pratacultural science. Acta Prataculturae Sinica, 2004, 13(4): 1-6.
[84]
Wuliji. Explore of moderate management in household ranch. Inner Mongolia Prataculture, 1992, (3): 12-19.