• Journal of Geographical Sciences
  • Vol. 30, Issue 4, 535 (2020)
Xiang LUO1, Xinhe AO1, Zuo ZHANG1, Qing WAN2、*, and Xingjian LIU3
Author Affiliations
  • 1College of Public Administration, Central China Normal University, Wuhan 430079, China
  • 2School of Management, Wuhan Institute of Technology, Wuhan 430205, China
  • 3Department of Urban Planning and Design, University of Hong Kong, Hong Kong 999077, China
  • show less
    DOI: 10.1007/s11442-020-1741-8 Cite this Article
    Xiang LUO, Xinhe AO, Zuo ZHANG, Qing WAN, Xingjian LIU. Spatiotemporal variations of cultivated land use efficiency in the Yangtze River Economic Belt based on carbon emission constraints[J]. Journal of Geographical Sciences, 2020, 30(4): 535 Copy Citation Text show less
    References

    [1] D Banker R, A Charnes, W Cooper W. Some models for estimating technical and scale inefficiencies in data envelopment analysis. Management Science, 30, 1078-1092(1984).

    [2] E Battese G, J Coelli T. Frontier production functions, technical efficiency and panel data: With application to paddy farmers in India. Journal of Productivity Analysis, 3, 153-169(1992).

    [3] R Brown L. Who Will Feed China? Wake-up Call for a Small Planet. London: England Earthscan Publications.(1995).

    [4] A Buyanovsky G, H Wagner G. Carbon cycling in cultivated land and its global significance. Global Change Biology, 4, 131-141(1998).

    [5] A Chabi-Olaye, C Nolte, F Schulthess et al. Relationships of intercropped maize, stem borer damage to maize yield and land-use efficiency in the humid forest of Cameroon. Bulletin of Entomological Research, 95, 417-427(2005).

    [6] A Charnes, W Cooper W, E Rhodes. Measuring the efficiency of decision-making units. European Journal of Operational Research, 2, 429-444(1978).

    [7] J Chen Y, L Xiao B, N Fang L et al. The quality analysis of cultivated land in China. Scientia Agricultura Sinica, 44, 3557-3564(2011).

    [8] S Chen Y, H Zhang S, S Huang D et al. The development of China’s Yangtze River Economic Belt: How to make it in a green way?. Science Bulletin, 62, 648-651(2017).

    [9] T Dalgaard, N Halberg, R Porter J. A model for fossil energy use in Danish agriculture used to compare organic and conventional farming. Agriculture Ecosystems and Environment, 87, 51-65(2001).

    [10] Z Deng X, K Huang J, S Rozelle et al. Cultivated land conversion and potential agricultural productivity in China. Land Use Policy, 23, 372-384(2005).

    [11] Z Deng X, K Huang J, S Rozelle et al. Impact of urbanization on cultivated land changes in China. Land Use Policy, 45, 1-7(2015).

    [12] T Feng, R Zhang F, C Li et al. Spatial distribution of prime farmland based on cultivated land quality comprehensive evaluation at county scale. Transactions of the Chinese Society of Agricultural Engineering, 30, 200-210, 293(2014).

    [13] S Gregg J, J Andres R, G Marland. China: Emissions pattern of the world leader in CO2 emissions from fossil fuel consumption and cement production. Geophysical Research Letters, 35, 135-157(2008).

    [14] J Guo, K Zhang Z, L Meng. China’s provincial CO2 emissions embodied in international and interprovincial trade. Energy Policy, 42, 486-497(2012).

    [15] K Huang J, Z Deng X, S Rozelle. Cultivated land conversion and bio-productivity in China. Proceedings of SPIE - The International Society for Optical Engineering, 5544(2004).

    [16] G Jin, K Chen, P Wang et al. Trade-offs in land-use competition and sustainable land development in the North China Plain. Technological Forecasting and Social Change, 141, 36-46(2019).

    [17] G Jin, Z Deng X, X Chu et al. Optimization of land-use management for ecosystem service improvement: A review. Physics and Chemistry of the Earth, 101, 70-77(2017).

    [18] G Jin, Z Deng X, D Zhao X et al. Spatiotemporal patterns in urbanization efficiency within the Yangtze River Economic Belt between 2005 and 2014. Journal of Geographical Sciences, 28, 1113-1126(2018).

    [19] G Jin, H Li Z, Z Deng X et al. An analysis of spatiotemporal patterns in Chinese agricultural productivity between 2004 and 2014. Ecological Indicators, 105, 591-600(2019).

    [20] J Jin J, C Jiang, L Li. The economic valuation of cultivated land protection: A contingent valuation study in Wenling City, China. Landscape and Urban Planning, 119, 158-164(2013).

    [21] F Johnson M, J Franzluebbers A, L Weyers S et al. Agricultural opportunities to mitigate greenhouse gas emissions. Environmental Pollution, 150, 107-124(2007).

    [22] T Kaoru. A slacks-based measure of efficiency in data envelopment analysis. European Journal of Operational Research, 130, 498-509(2001).

    [23] J Lee, J Six, A P King et al. Tillage and field scale controls on greenhouse gas emissions. Journal of Environmental Quality, 35, 714-725(2006).

    [24] B Li, B Zhang J, P Li H. Research on spatial-temporal characteristics and affecting factors decomposition of agricultural carbon emission in China. China Population, Resources and Environment, 21, 80-86(2011).

    [25] H Li, F Shi J. Energy efficiency analysis on Chinese industrial sectors: An improved Super-SBM model with undesirable outputs. Journal of Cleaner Production, 65, 97-107(2014).

    [26] C Li S, L Bing Z, G Jin. Spatially explicit mapping of soil conservation service in monetary units due to land use/cover change for the Three Gorges Reservoir Area, China. Remote Sensing, 11, 1-21(2019).

    [27] J Li Z, K Yu X, J Gong C. Intensity change in cultivated land use in Shandong province from 1980 to 2010. Information Engineering Research Institute, 5, 140-146(2013).

    [28] C Lin H, , . A new method for analyzing agricultural land-use efficiency, and its application in organic and conventional farming systems in southern Germany. European Journal of Agronomy, 83, 15-27(2017).

    [29] G Liu H, D Liu W, X M Fan et al. Carbon emissions embodied in value added chains in China. Journal of Cleaner Production, 103, 362-370(2015).

    [30] W Liu X, L Zhao C, W Song. Review of the evolution of cultivated land protection policies in the period following China’s reform and liberalization. Land Use Policy, 67, 660-669(2017).

    [31] G Lyle, A Bryan B, B Ostendorf. Identifying the spatial and temporal variability of economic opportunity costs to promote the adoption of alternative land uses in grain growing agricultural areas: An Australian example. Journal of Environmental Management, 155, 123-135(2015).

    [32] H Pan J, J Phillips, Y Chen. China’s balance of emissions embodied in trade: Approaches to measurement and allocating international responsibility. Oxford Review of Economic Policy, 24, 354-376(2008).

    [33] K Paustian, V Cole C, D Sauerbeck et al. CO2 mitigation by agriculture: An overview. Climatic Change, 40, 135-162(1998).

    [34] M Post W, C Kwon K. Soil carbon sequestration and land-use change: Processes and potential. Global Change Biology, 6, 317-327(2000).

    [35] K Quaye A, S Hall C A, A Luzadis V. Agricultural land use efficiency and food crop production in Ghana. Environment Development and Sustainability,, 12, 967-983(2010).

    [36] T Skevas, E Stefanou S, A Oude Lansink. Pesticide use, environmental spillovers and efficiency: A DEA risk-adjusted efficiency approach applied to Dutch arable farming. European Journal of Operational Research, 237, 658-664(2014).

    [37] W Song, C Pijanowski B. The effects of China’s cultivated land balance program on potential land productivity at a national scale. Applied Geography, 46, 158-170(2014).

    [38] J Tobin. Estimation of relationships for limited dependent variables. Econometrica, 26, 24-36(1958).

    [39] K Tone. A slacks-based measure of efficiency in data envelopment analysis. European Journal of Operational Research, 130, 498-509(2001).

    [40] G Wang G, S Liu Y, R Li Y et al. Dynamic trends and driving forces of land use intensification of cultivated land in China. Journal of Geographical Sciences, 25, 45-57(2015).

    [41] Y Wang K. The research on impact factors and characteristic of cultivated land resources use efficiency: Take Henan province, China as a case study. Information Engineering Research Institute, 5, 2-9(2013).

    [42] O West T, G Marland. A synthesis of carbon sequestration, carbon emissions, and net carbon flux in agriculture: Comparing tillage practices in the United States. Agriculture Ecosystems and Environment, 91, 217-232(2002).

    [43] L Wu F, L Li, L Zhang H et al. Effects of conservation tillage on net carbon flux from farmland ecosystems. Chinese Journal of Ecology, 26, 2035-2039(2007).

    [44] B Xu X, Z Hu H, Y Tan et al. Quantifying the impacts of climate variability and human interventions on crop production and food security in the Yangtze River Basin, China, 1990-2015. Science of The Total Environment, 665, 379-389(2019).

    [45] H Yang, B Li X. Cultivated land and food supply in China. Land Use Policy, 17, 73-88(2000).

    [46] S Yang, P Li S, L Luo. Study on the farmland use efficiency and its influencing factors in Shanxi province. China Land Science, 25, 47-54(2011).

    [47] X Yao, C Zhou H, Z Zhang A et al. Regional energy efficiency, carbon emission performance and technology gaps in China: A meta-frontier non-radial directional distance function analysis. Energy Policy, 84, 142-154(2015).

    [48] H Ye, J Pu L. Study on the cultivated land use efficiency between different regions of China and its convergence. Journal of Natural Resources, 26, 1467-1474(2011).

    [49] R Zhang J, H Zeng W, J N Wang et al. Regional low-carbon economy efficiency in China: Analysis based on the Super-SBM model with CO2 emissions. Journal of Cleaner Production, 163, 202-211(2017).

    [50] L Zhang, R Zhang F, P L An et al. Comparative study of cultivated land use intensive degree and its change law at different economic levels. Transactions of the Chinese Society of Agricultural Engineering, 24, 108-112(2008).

    [51] N Zhang, Q Gao Z, M Wang X et al. Modeling the impact of urbanization on the local and regional climate in Yangtze River Delta, China. Theoretical and Applied Climatology, 102, 331-342(2010).

    [52] T Zhang R, F Jiao H. Spatial-temporal pattern differentiation and its mechanism analysis of using efficiency for provincial cultivated land in China. Transactions of the Chinese Society of Agricultural Engineering, 31, 277-287(2015).

    Xiang LUO, Xinhe AO, Zuo ZHANG, Qing WAN, Xingjian LIU. Spatiotemporal variations of cultivated land use efficiency in the Yangtze River Economic Belt based on carbon emission constraints[J]. Journal of Geographical Sciences, 2020, 30(4): 535
    Download Citation