Resources Science, Volume. 42, Issue 9, 1764(2020)

Characteristics of change and influencing factors of the technical efficiency of chemical fertilizer use for agricultural production in China

Pingping WANG1, Yijun HAN2, and Yi ZHANG3、*
Author Affiliations
  • 1National School of Development, Peking University, Beijing 100871, China
  • 2College of Economics and Management, China Agricultural University, Beijing 100083, China
  • 3Institute of Scientific and Technical Information, Chinese Academy of Tropical Agricultural Sciences, Haikou 571101, China
  • show less
    References(30)

    [1] Huang JK, Hu RF, Cao JM et al. Training programs and in the field guidance to reduce China’s overuse of fertilizer without hurting profitability[J]. Journal of Soil and Water Conservation, 63, 165-167(2008).

    [2] [2] 李谷成. 中国农业的绿色生产率革命: 1978-2008年[J]. 经济学(季刊), 2014,13(1):537-558. [ Li GC. The green productivity revolution of agriculture in China from 1978 to 2008[J]. China Economic Quarterly, 2014,13(2):537-558.] [Li G C. The green productivity revolution of agriculture in China from 1978 to 2008[J]. China Economic Quarterly, 2014, 13(2): 537-558.]

    [3] [3] 仇焕广, 栾昊, 李瑾, 等. 风险规避对农户化肥过量施用行为的影响[J]. 中国农村经济, 2014, (3):85-96. [ Qiu HG, LuanH, LiJ, et al. The impact of risk aversion on farmer’ behavior of excessive fertilizer application[J]. China Rural Economy, 2014, (3):85-96.] [Qiu H G, Luan H, Li J, et al. The impact of risk aversion on farmer’ behavior of excessive fertilizer application[J]. China Rural Economy, 2014, (3): 85-96.]

    [5] [5] 潘丹. 中国化肥消费强度变化驱动效应时空差异与影响因素解析[J]. 经济地理, 2014,34(3):121-126. [ PanD. The spatial-temporal difference of driving effects for fertilizer use intensity change and its determinants in China[J]. Economic Geography, 2014,34(3):121-126.] [Pan D. The spatial-temporal difference of driving effects for fertilizer use intensity change and its determinants in China[J]. Economic Geography, 2014, 34(3): 121-126.]

    [6] Zhu ZL, Chen DL. Nitrogen fertilizer use in China: Contributions to food production, impacts on the environment and best management strategies[J]. Nutrient Cycling in Agroecosystems, 63, 117-127(2002).

    [7] Ju XT, Xing GX, Chen XP et al. Reducing environmental risk by improving N management in intensive Chinese agricultural systems[J]. Proceedings of the National Academy of Sciences, 106, 3041-3046(2009).

    [8] [8] 张永强, 蒲晨曦, 王珧, 等. 化肥投入效率测度及归因: 来自20个玉米生产省份的面板证据[J]. 资源科学, 2018,40(7):1333-1343. [ Zhang YQ, Pu CX, WangY, et al. The efficiency estimation of fertilizer input and attribution panel evidence from 20 corn major producing provinces[J]. Resources Science, 2018,40(7):1333-1343.] [Zhang Y Q, Pu C X, Wang Y, et al. The efficiency estimation of fertilizer input and attribution panel evidence from 20 corn major producing provinces[J]. Resources Science, 2018, 40(7): 1333-1343.]

    [9] [9] 史常亮, 朱俊峰, 栾江. 我国小麦化肥投入效率及其影响因素分析: 基于全国15个小麦主产省的实证[J]. 农业技术经济, 2015, (11):69-78. [ Shi CL, Zhu JF, LuanJ. Chemical fertilizers efficiency and its influencing factors for wheat: Based on the empirical evidence of 15 wheat major producing provinces in China[J]. Journal of Agrotechnical Economics, 2015, (11):69-78.] [Shi C L, Zhu J F, Luan J. Chemical fertilizers efficiency and its influencing factors for wheat: Based on the empirical evidence of 15 wheat major producing provinces in China[J]. Journal of Agrotechnical Economics, 2015, (11): 69-78.]

    [11] [11] 张军伟, 张锦华, 吴方卫. 粮食生产中化肥投入的影响因素研究: 基于Durbin模型的分析[J]. 经济地理, 2018,38(11):174-182. [ Zhang JW, Zhang JH, Wu FW. The influencing factors of fertilizer input in grain production: Based on durbin model[J]. Economic Geography, 2018,38(11):174-182.] [Zhang J W, Zhang J H, Wu F W. The influencing factors of fertilizer input in grain production: Based on durbin model[J]. Economic Geography, 2018, 38(11): 174-182.]

    [12] [12] 杨增旭, 韩洪云. 化肥施用技术效率及影响因素: 基于小麦和玉米的实证分析[J]. 中国农业大学学报, 2011,16(1):140-147. [ Yang ZX, Han HY. Technical efficiency of fertilizer and its influencing factors: Based on wheat and corn empirical study[J]. Journal of China Agricultural University, 2011,16(1):140-147.] [Yang Z X, Han H Y. Technical efficiency of fertilizer and its influencing factors: Based on wheat and corn empirical study[J]. Journal of China Agricultural University, 2011, 16(1): 140-147.]

    [13] Wu YR. Chemical fertilizer use efficiency and its determinants in China’s farming sector: Implications for environmental protection[J]. China Agricultural Economic Review, 3, 117-130(2011).

    [14] [14] 颜璐, 马惠兰. 棉农化肥施用技术效率及影响因子分析: 基于莎车县农户调查数据的实证研究[J]. 浙江大学学报(农业与生命科学版), 2014, (2):203-209. [ YanL, Ma HL. Analysis of chemical fertilizer efficiency by cotton farmers and its influence factors: An empirical study based on peasant household survey in Shache County[J]. Journal of Zhejiang University (Agriculture and Life Sciences), 2014, (2):203-209.] [Yan L, Ma H L. Analysis of chemical fertilizer efficiency by cotton farmers and its influence factors: An empirical study based on peasant household survey in Shache County[J]. Journal of Zhejiang University (Agriculture and Life Sciences), 2014, (2): 203-209.]

    [15] [15] 吴玉鸣. 中国区域农业生产要素的投入产出弹性测算: 基于空间计量经济模型的实证[J]. 中国农村经济, 2010, (6):25-37. [ Wu YM. Measurement of input-output elasticity of Chinese agricultural production: An empirical study based on spatial econometric model[J]. China Rural Economy, 2010, (6):25-37.] [Wu Y M. Measurement of input-output elasticity of Chinese agricultural production: An empirical study based on spatial econometric model[J]. China Rural Economy, 2010, (6): 25-37.]

    [16] [16] 史常亮, 朱俊峰, 揭昌亮. 中国农业全要素生产率增长地区差异及收敛性分析: 基于固定效应SFA模型和面板单位根方法[J]. 经济问题探索, 2016, (4):134-141. [ Shi CL, Zhu JF, Jie CL. Analysis of regional differences and convergence of Chinese agricultural total factor productivity growth: Based on the fixed effects of SFA model and panel unit root method[J]. Inquiry into Economic Issues, 2016, (4):134-141.] [Shi C L, Zhu J F, Jie C L. Analysis of regional differences and convergence of Chinese agricultural total factor productivity growth: Based on the fixed effects of SFA model and panel unit root method[J]. Inquiry into Economic Issues, 2016, (4): 134-141.]

    [17] Gong BL. Agricultural reforms and production in China: Changes in provincial production function and productivity in 1978-2015[J]. Journal of Development Economics, 132, 18-31(2018).

    [18] Battese GE, Coelli TJ. A model for technical inefficiency effects in a stochastic frontier production function for panel data[J]. Empirical Economics, 20, 325-332(1995).

    [19] Tobler WR. A computer movie simulating urban growth in the Detroit region[J]. Economic Geography, 46, 234-240(1970).

    [20] [20] 徐乐怡, 曹信生, 刘程军. 产业视角的中国城镇化质量分级与演化研究[J]. 经济地理, 2018,38(12):68-75. [ Xu LY, Cao XS, Liu CJ. Spatial pattern evolution of China’s urbanization quality classification from the perspective of industry[J]. Economic Geography, 2018,38(12):68-75.] [Xu L Y, Cao X S, Liu C J. Spatial pattern evolution of China’s urbanization quality classification from the perspective of industry[J]. Economic Geography, 2018, 38(12): 68-75.]

    [21] [21] 陶春海, 王玉晓. 政府卫生支出对区域经济的空间溢出效应研究: 基于山东省17市的空间面板模型[J]. 华东经济管理, 2019,33(3):19-24. [ Tao CH, Wang YX. A study on the spatial spillover effect of government health expenditure on regional economy: Based on the spatial panel model of 17 Cities in Shandong Province[J]. East China Economic Management, 2019,33(3):19-24.] [Tao C H, Wang Y X. A study on the spatial spillover effect of government health expenditure on regional economy: Based on the spatial panel model of 17 Cities in Shandong Province[J]. East China Economic Management, 2019, 33(3): 19-24.]

    [22] Kodde DA, Palm FC. Wald criteria for jointly testing equality and inequality restrictions[J]. Econometrica: Journal of the Econometric Society, 54, 1243-1248(1986).

    [23] [23] 史常亮, 张益, 郭焱, 等. 耕地细碎化对农户化肥使用效率的影响[J]. 自然资源学报, 2019,34(12):2687-2700. [ Shi CL, ZhangY, GuoY, et al. The impact of arable land fragmentation on farmer’s fertilizer use efficiency[J]. Journal of Natural Resources, 2019,34(12):2687-2700.] [Shi C L, Zhang Y, Guo Y, et al. The impact of arable land fragmentation on farmer’s fertilizer use efficiency[J]. Journal of Natural Resources, 2019, 34(12): 2687-2700.]

    [24] [24] 刘华军, 孙淑惠, 李超. 环境约束下中国化肥利用效率的空间差异及分布动态演进[J]. 农业经济问题, 2019,12(8):65-75. [ Liu HJ, Sun SH, LiC. Regional difference and dynamic evolution of fertilizer use efficiency in China under environmental constraints[J]. Issues of Agricultural Economy, 2019,12(8):65-75.] [Liu H J, Sun S H, Li C. Regional difference and dynamic evolution of fertilizer use efficiency in China under environmental constraints[J]. Issues of Agricultural Economy, 2019, 12(8): 65-75.]

    [25] [25] 侯孟阳, 姚顺波. 空间视角下中国农业生态效率的收敛性与分析特征[J]. 中国人口·资源与环境, 2019,29(4):116-126. [ Hou MY, Yao SB. Convergence and differentiation characteristics on agro-ecological efficiency in China from a spatial perspective[J]. China Population, Resources and Environment, 2019,29(4):116-126.] [Hou M Y, Yao S B. Convergence and differentiation characteristics on agro-ecological efficiency in China from a spatial perspective[J]. China Population, Resources and Environment, 2019, 29(4): 116-126.]

    [26] [26] 高鸣, 宋洪远. 粮食生产技术效率的空间收敛及功能区差异: 兼论技术扩散的空间涟漪效应[J]. 管理世界, 2014, (7):83-92. [ GaoM, Song HY. The spatial convergence of technical efficiency of grain production and the difference of functional areas: A discussion on the spatial ripple effect of technological diffusion[J]. Management World, 2014, (7):83-92.] [Gao M, Song H Y. The spatial convergence of technical efficiency of grain production and the difference of functional areas: A discussion on the spatial ripple effect of technological diffusion[J]. Management World, 2014, (7): 83-92.]

    [27] [27] 张云华, 彭超, 张琛. 氮元素施用与农户粮食生产效率: 来自全国农村固定观察点数据的证据[J]. 管理世界, 2019,35(4):109-119. [ Zhang YH, PengC, ZhangC. The use of nitrogen element and grain production efficiency: Evidence from national fixed point survey data[J]. Management World, 2019,35(4):109-119.] [Zhang Y H, Peng C, Zhang C. The use of nitrogen element and grain production efficiency: Evidence from national fixed point survey data[J]. Management World, 2019, 35(4): 109-119.]

    [28] [28] 何浩然, 张林秀, 李强. 农民施肥行为及农业面源污染研究[J]. 农业技术经济, 2006, (6):2-10. [ He HR, Zhang LX, LiQ. Rational fertilization and reduction of large-scale farmland pollution by rationalized fertilizer usage[J]. Journal of Agrotechnical Economics, 2006, (6):2-10.] [He H R, Zhang L X, Li Q. Rational fertilization and reduction of large-scale farmland pollution by rationalized fertilizer usage[J]. Journal of Agrotechnical Economics, 2006, (6): 2-10.]

    [29] [29] 潘丹. 中国化肥消费强度变化驱动效应时空差异与影响因素解析[J]. 经济地理, 2014,34(3):121-126. [ PanD. The spatial-temporal difference of driving effects for fertilizer use intensity change and its determinants in China[J]. Economic Geography, 2014,34(3):121-126.] [Pan D. The spatial-temporal difference of driving effects for fertilizer use intensity change and its determinants in China[J]. Economic Geography, 2014, 34(3): 121-126.]

    [30] EbensteinA. The consequences of industrialization: Evidence from water pollution and digestive cancers in China[J]. Review of Economics and Statistics, 94, 186-201(2012).

    Tools

    Get Citation

    Copy Citation Text

    Pingping WANG, Yijun HAN, Yi ZHANG. Characteristics of change and influencing factors of the technical efficiency of chemical fertilizer use for agricultural production in China[J]. Resources Science, 2020, 42(9): 1764

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Received: Oct. 15, 2019

    Accepted: --

    Published Online: Apr. 23, 2021

    The Author Email: ZHANG Yi (zhangyihainan@163.com)

    DOI:10.18402/resci.2020.09.11

    Topics