| 于法稳. 气候韧性农业: 内涵特征、理论阐释及推进策略全文替换[J]. 中国特色社会主义研究, 2024(6): 52-62. |
| 赵敏娟, 姚柳杨, 赵明恩, 等. 气候变化对中国粮食安全的影响: 理论逻辑和应对措施[J]. 农业经济问题, 2024(10): 34-43. |
| 刘东, 冯晓龙, 司伟. 中国粮食生产的气候变化适应水平及其机制研究[J]. 经济学(季刊), 2024, 24(5): 1516-1532. |
| HOLLING C S. Resilience and Stability of Ecological Systems [J]. Annual Review of Ecology and Systematics, 1973(4): 1-23. |
| REGGIANI A, DE GRAAFF T, NIJKAMP P. Resilience: An Evolutionary Approach to Spatial Economic Systems [J]. Networks and Spatial Economics, 2002, 2(2): 211-229. doi: 10.1023/A:1015377515690 |
| 刘晓星, 张旭, 李守伟. 中国宏观经济韧性测度——基于系统性风险的视角[J]. 中国社会科学, 2021(1): 12-32, 204. |
| YU T Z, MAHE L, LI Y, et al. Benefits of Crop Rotation on Climate Resilience and Its Prospects in China [J]. Agronomy, 2022, 12(2): 436. doi: 10.3390/agronomy12020436 |
| 陈卫洪, 于晴. 数字经济发展对农业气候韧性的影响机制研究——基于调节效应和空间溢出效应分析[J]. 中国生态农业学报(中英文), 2024, 32(6): 944-956. |
| FANG D, CHEN J Q, WANG S G, et al. Can Agricultural Mechanization Enhance the Climate Resilience of Food Production? Evidence from China [J]. Applied Energy, 2024, 373: 123928. doi: 10.1016/j.apenergy.2024.123928 |
| ISHTIAQUE A, KRUPNIK T J, KRISHNA V, et al. Overcoming Barriers to Climate-Smart Agriculture in South Asia [J]. Nature Climate Change, 2024, 14(2): 111-113. doi: 10.1038/s41558-023-01905-z |
| BERTILSSON L, WIKLUND K, DE MOURA TEBALDI I, et al. Urban Flood Resilience—A Multi-Criteria Index to Integrate Flood Resilience into Urban Planning [J]. Journal of Hydrology, 2019, 573: 970-982. doi: 10.1016/j.jhydrol.2018.06.052 |
| YANG Y Y, GUO H X, WANG D Y, et al. Flood Vulnerability and Resilience Assessment in China Based on Super-Efficiency DEA and SBM-DEA Methods [J]. Journal of Hydrology, 2021, 600: 126470. doi: 10.1016/j.jhydrol.2021.126470 |
| 孟延春, 郭红星, 王喆. 中国气候韧性城市的空间格局与治理路径探索[J]. 城市发展研究, 2025, 32(3): 9-17. |
| 师帅, 郭怡梦, 衣弘立. 中国农业气候韧性测度及其时空演变特征[J]. 统计与决策, 2025, 41(15): 57-61. |
| 罗慧, 刘杰, 徐军昶, 等. 基于熵权法的秦岭区域农村社区气候韧性评价研究[J]. 自然灾害学报, 2022, 31(2): 111-118. |
| CHEN S, GONG B L. Response and Adaptation of Agriculture to Climate Change: Evidence from China [J]. Journal of Development Economics, 2021, 148(C): 102557. |
| KEANE M, NEAL T. Climate Change and U. S. Agriculture: Accounting for Multidimensional Slope Heterogeneity in Panel Data [J]. Quantitative Economics, 2020, 11(4): 1391-1429. doi: 10.3982/QE1319 |
| 尹朝静, 杨坤, 孔锋. 气候变化下的中国粮食全要素生产率再测度[J]. 华中农业大学学报(社会科学版), 2025(3): 38-52. |
| MOSCONA J, SASTRY K A. Does Directed Innovation Mitigate Climate Damage? Evidence from U. S. Agriculture [J]. The Quarterly Journal of Economics, 2023, 138(2): 637-701. doi: 10.1093/qje/qjac039 |
| QIAO L, WANG X H, SMITH P, et al. Soil Quality Both Increases Crop Production and Improves Resilience to Climate Change [J]. Nature Climate Change, 2022, 12(6): 574-580. doi: 10.1038/s41558-022-01376-8 |
| 陈志钢, 胡霜. 气候变化对全球粮食安全的影响与应对策略[J]. 农业经济问题, 2024(10): 44-56. |
| 张帅, 于宏源. 气候极端化背景下的全球粮食体系韧性治理及对中国的启示[J]. 上海交通大学学报(哲学社会科学版), 2023, 31(7): 79-93. |
| PIEMONTESE L, TERZI S, DI BALDASSARRE G, et al. Over-Reliance on Water Infrastructure Can Hinder Climate Resilience in Pastoral Drylands [J]. Nature Climate Change, 2024, 14(3): 267-274. doi: 10.1038/s41558-024-01929-z |
| KAHILUOTO H, KASEVA J, BALEK J, et al. Decline in Climate Resilience of European Wheat [J]. Proceedings of the National Academy of Sciences of the United States of America, 2019, 116(1): 123-128. |
| FARRELL M J. The Measurement of Productive Efficiency [J]. Journal of the Royal Statistical Society Series A (General), 1957, 120(3): 253-290. doi: 10.2307/2343100 |
| 葛明, 谭旭煜. 中国农业新质生产力: 水平测度、时空分异与空间收敛性分析[J]. 西南大学学报(自然科学版), 2025, 47(5): 113-127. |
| 王凤娟, 肖琼琪, 肖国安. 粮食主产区的粮食安全贡献度与农技创新耦合协调特征及其影响因素[J]. 经济地理, 2025, 45(7): 178-187. |
| 黄国庆, 张苏梅, 时朋飞. 共同富裕背景下成渝地区双城经济圈旅游经济的区域差异及影响因素[J]. 西南大学学报(自然科学版), 2023, 45(12): 110-122. doi: 10.13718/j.cnki.xdzk.2023.12.012 |
| 冷浪平, 张利国. 农业社会化服务对农业绿色全要素生产率的影响及空间效应[J]. 经济地理, 2025, 45(6): 151-160, 191. |
| 陈明华, 刘文斐, 王山, 等. 黄河流域绿色发展绩效评价、差异分解及驱动因素[J]. 中国人口·资源与环境, 2022, 32(4): 126-133. |
| 卓乐, 曾福生. 农村基础设施对粮食全要素生产率的影响[J]. 农业技术经济, 2018(11): 92-101. |