[1] 张默,孙科.农业高质量发展理论内涵、水平测度及评价研究[J].农业经济,2021(5):6-8. [2] 高强. 农业高质量发展:内涵特征、障碍因素与路径选择[J].中州学刊,2022(4):29-35. [3] 肖艳,徐雪娇,孙庆峰.数字农业高质量发展评价指标体系构建及测度[J].农村经济,2022(11):19-26. [4] 杨念,王蔚宇.农业高质量发展评价指标体系构建与测度[J].统计与决策,2022,38(19):26-30. [5] 郭郡郡,刘玉萍.中国农业高质量发展的时空差异与动态演进[J].生态经济,2022,38(10):102-110. [6] 曾小春,李随成,史官清,等.“双碳”目标背景下基于熵权TOPSIS法的区域农业高质量发展水平综合评价:基于变化速度特征视角[J].浙江农业学报,2023,35(4):962-972. [7] 黄修杰. 农业高质量发展的空间分异与影响因素:以广东省为例[J].农业资源与环境学报,2021,38(4):699-708. [8] 刘益诚,时朋飞,张苏梅,等.中国农业高质量发展水平的测度、空间演化及影响因素研究:基于PROMETHEE法的分析[J/OL].资源开发与市场:1-14.(2023-04-11).https://kns.cnki.net/kcms/detail/51.1448.n.20230407.1717.006.html. [9] 张辉,吴尚.新发展理念引领高质量发展:成效、问题及推进方向[J].学习与探索,2021(12):93-102. [10] 李强,董安然.长江经济带经济增长质量提升的环境效应研究[J].东北农业大学学报(社会科学版),2021,19(4):47-57. [11] 李开宇,杨宁,冯良山.我国农业高质量发展过程中存在问题及发展对策[J].农业经济,2023(3):32-33. [12] 安淑新. 促进经济高质量发展的路径研究:一个文献综述[J].当代经济管理,2018,40(9):11-17. [13] 陈姗姗,张向前.新时代下的福建省农业绿色高质量发展[J].科技管理研究,2021,41(18):96-104. [14] 李欠男,李谷成,尹朝静.中国农业绿色发展水平的地区差异及收敛性:基于地级市面板数据的实证[J].中国农业大学学报,2022,27(2):230-242. [15] 杜思梦,刘涛.基于新发展理念的农业高质量发展:内涵、问题及举措[J].中国农业科技导报,2021,23(3):18-24. [16] 夏显力,陈哲,张慧利,等.农业高质量发展:数字赋能与实现路径[J].中国农村经济,2019(12):2-15. [17] 丁声俊. 站在新时代高度认识农业粮食高质量发展[J].价格理论与实践,2018(1):5-9. [18] 姬志恒. 中国农业农村高质量发展的空间差异及驱动机制[J].数量经济技术经济研究,2021,38(12):25-44. [19] 高雪,尹朝静.新发展理念下的中国农业高质量发展水平测度与评价研究[J].中国农业资源与区划,2023,44(1):75-83. [20] 刘涛,杜思梦.基于新发展理念的农业高质量发展评价指标体系构建[J].中国农业资源与区划,2021,42(4):1-9. [21] 于婷,于法稳.基于熵权TOPSIS法的农业高质量发展评价及障碍因子诊断[J].云南社会科学,2021(5):76-83. [22] 孙研,王钶茗.新发展理念下农业产业高质量发展的实证研究[J].西安财经大学学报,2021,34(5):52-61. [23] 张建伟,蒲柯竹,图登克珠.中国农业经济高质量发展指标体系构建与测度[J].统计与决策,2021,37(22):89-92. [24] 张建伟,曾志庆,李国栋.新时代农业经济高质量发展:理论阐释与逻辑机理[J].农业经济,2023(4):3-5. [25] 银西阳,余茜,李建强.四川省农业高质量发展水平测度及其时空演变分析[J].科技管理研究,2021,41(19):97-104. [26] 魏琦,张斌,金书秦.中国农业绿色发展指数构建及区域比较研究[J].农业经济问题,2018,39(11):11-20. [27] 辛岭,安晓宁.我国农业高质量发展评价体系构建与测度分析[J].经济纵横,2019(5):109-118. [28] 黄修杰,蔡勋,储霞玲,等.我国农业高质量发展评价指标体系构建与评估[J].中国农业资源与区划,2020,41(4):124-133. [29] 孙康,唐梦林,何泽军,等.冀鲁豫3省农业高质量发展影响因素实证分析[J].河南农业大学学报,2022,56(2):323-330. [30] 王静. 我国农业高质量发展测度及评价分析[J].江西财经大学学报,2021(2):93-106. [31] 董艳敏,严奉宪.中国农业高质量发展的时空特征与协调度[J].浙江农业学报,2021,33(1):170-182. [32] 黄修杰. 农业高质量发展的空间分异与影响因素:以广东省为例[J].农业资源与环境学报,2021,38(4):699-708. [33] 叶慧,陈君理,杨海晨.民族地区高质量发展水平测度与发展路径研究[J].北方民族大学学报,2022(5):146-152. [34] 徐孝新,孙自敏,刘戒骄.我国粮食主产区农业高质量发展的区域差异及收敛性分析[J].技术经济,2022,41(2):86-95. [35] 赵敏,夏同水,马宗国.黄河流域生态保护和农业产业高质量发展评价研究[J].长江流域资源与环境,2022,31(9):2096-2107. [36] 刘忠宇,热孜燕·瓦卡斯.中国农业高质量发展的地区差异及分布动态演进[J].数量经济技术经济研究,2021,38(6):28-44. [37] 向云,李芷萱,陆倩.中国农业经济高质量发展的空间非均衡及收敛性[J].中国农业大学学报,2022,27(11):305-316. [38] 王晓鸿,赵晓菲.农业高质量发展水平测度与空间耦合度分析[J].统计与决策,2021,37(24):106-110. [39] 祁迪,祁华清,樊琦.粮食产业高质量发展评价指标体系构建[J].统计与决策,2022,38(5):106-110. [40] 王瑞峰,王艳艳,曾海容.粮食产业高质量发展影响因素的实证检验[J].统计与决策,2021,37(18):103-107. [41] 华坚,潘雪晴.农业科技创新对粮食产业高质量发展的影响:基于30个省份面板数据分析[J].华东经济管理,2022,36(7):55-64. [42] 高维龙. 农业服务化对粮食产业高质量发展的影响效应及作用机制[J].广东财经大学学报,2021,36(3):61-76. [43] 李军,潘丽莎.乡村振兴背景下畜牧业高质量发展面临的主要矛盾与破解路径[J].经济纵横,2022(8):58-64. [44] 于法稳,黄鑫,王广梁.畜牧业高质量发展:理论阐释与实现路径[J].中国农村经济,2021(4):85-99. [45] 宋燕平,范祥祺,王欣.中国畜牧业高质量发展的技术优化[J].华中农业大学学报(自然科学版),2022,41(3):87-95. [46] 熊学振,熊慧,马晓萍,等.中国畜牧业高质量发展水平的空间差异与动态演进[J].中国农业资源与区划,2022,43(12):113-125. [47] 王明利,李鹏程,马晓萍.规模化选择对畜牧业高质量发展的影响及其路径优化:基于生猪养殖规模化视角[J].中国农村经济,2022(3):12-35. [48] 牛亚丽. 农业产业链高质量发展的治理生态研究:基于“互联网+农业产业链”的融合创新视角[J].经济与管理,2021,35(3):1-10. [49] 陈宇斌,王森.农业技术创新、同群效应与农业高质量发展:兼议农地规模经营的作用机制[J].兰州学刊,2022(9):148-160. [50] 杨军鸽,王琴梅.数字技术与农业高质量发展:基于数字生产力的视角[J].山西财经大学学报,2023,45(4):47-63. [51] 董志勇,赵晨晓.乡村振兴背景下我国农业农村高质量发展的路径选择[J].中共中央党校(国家行政学院)学报,2022,26(2):80-88. [52] 陈毅辉,洪碧云.数字经济对农业高质量发展的影响研究[J].技术经济与管理研究,2022(2):105-109. [53] DU L,WANG F W,TIAN M H,et al.Spatiotemporal differentiation and spatial correlation of agricultural total factor productivity in China:An estimation based on the data of prefecture-level cities[J].Cienciarural,2023,53(4):e20210877. [54] WANG Y F,XIE L,ZHANG Y.Does FDI promote or inhibit the high-quality development of agriculture in China?An agricultural GTFP perspective[J].Sustainability,2019,11(17):4620. [55] LIU D D,ZHU X Y,WANG Y F.China′s agricultural green total factor productivity based on carbon emission:An analysis of evolution trend and influencing factors[J].Journal of Cleaner Production,2021,278:123692. [56] CHEN Y L,FU W W,WANG J Y.Evaluation and influencing factors of China′s agricultural productivity from the perspective of environmental constraints[J].Sustainability,2022,14(5):2807. [57] WANG Y,ZUO L L,QIAN S J.Green-biased technical change and its influencing factors of agriculture industry:Empirical evidence at the provincial level in China[J].International Journal of Environmental Research and Public Health,2022,19(23):16369. [58] XING X W,ZHANG Q F,YE A Z,et al.Mechanism and Empirical test of the impact of consumption upgrading on agricultural green total factor productivity in China[J].Agriculture,2023,13(1):151. [59] YANG Y,MA H,WU G S.Agricultural green total factor productivity under the distortion of the factor market in China[J].Sustainability,2022,14(15):9309. [60] CHI M J,GUO Q Y,MI L C,et al.Spatial distribution of agricultural eco-efficiency and agriculture high-quality development in China[J].Land,2022,11(5):722. [61] DENG H Y,JING X N,SHEN Z Y.Internet technology and green productivity in agriculture[J].Environmental Science and Pollution Research International,2022,29(54):81441-84451. [62] JIANG Q,LI J Z,SI H Y,et al.The impact of the digital economy on agricultural green development:Evidence from China[J].Agriculture,2022,12(8):1107. [63] WU G Y,XIE Y,LI H X,et al.Agricultural ecological efficiency under the carbon emissions trading system in China:Aspatial difference-in-difference approach[J].Sustainability,2022,14(8):4707. [64] ZHONG R X,HE Q,QI Y B.Digital economy,agricultural technological progress,and agricultural carbon intensity:Evidence from China[J].International Journal of Environmental Research and Public Health,2022,19(11):6488. [65] LI S X,YU W C.The dual-driven impact of “internet +agricultural insurance” on the agricultural carbon welfare performance in China[J].Polish Journal of Environmental Studies,2022,31(3):2183-2196. [66] HUANG Y J,SU Y,LI R L,et al.Study of the spatio-temporal differentiation of factors influencing carbon emission of the planting industry in arid and vulnerable areas in northwest China[J].International Journal of Environmental Research and Public Health,2019,17(1):187. [67] HAO D Q,WANG R,GAO C J,et al.Spatial-temporal characteristics and influence factors of carbon emission from livestock industry in China[J].International Journal of Environmental Research and Public Health,2022,19(22):14837. [68] TANG Y,CHEN M H.The impact of agricultural digitization on the high-quality development of agriculture:An empirical test based on provincial panel data[J].Land,2022,11(12):2152. [69] WANG G F,MI L C,HU J M,et al.Spatial analysis of agricultural eco-efficiency and high-quality development in China[J].Frontiers in Environmental Science,2022,10:847719. [70] ZHU Y Y,ZHANG Y,PIAO H L.Does agricultural mechanization improve the green total factor productivity of China′s planting industry?[J].Energies,2022,15(3):940. [71] QIN S A,HAN Z Y,CHEN H,et al.High-quality development of Chinese agriculture under factor misallocation[J].International Journal of Environmental Research and Public Health,2022,19(16):9804. [72] DENG F M,JIA S Y,YE M,et al.Coordinated development of high-quality agricultural transformation and technological innovation:A case study of main grain-producing areas,China[J].Environmental Science and Pollution Research,2022,29(23):35150-35164. [73] CUI X F,CAI T,DENG W,et al.Indicators for evaluating high-quality agricultural development:Empirical study from Yangtze River economic belt,China[J].Social Indicators Research,2022,164(3):1101-1127. [74] LIU F,LUO M C,ZHANG Y Y,et al.Data-driven evaluation of regional agricultural production Efficiency for sustainable development[J].Journal of Intelligent & Fuzzy Systems,2022,43(6):7765-7778. |