Open Access
| Issue |
BIO Web Conf.
Volume 222, 2026
2026 2nd International Conference on Agriculture and Resource Economy (ICARE 2026)
|
|
|---|---|---|
| Article Number | 01001 | |
| Number of page(s) | 12 | |
| Section | Sustainable Agriculture and Resource Economy | |
| DOI | https://doi.org/10.1051/bioconf/202622201001 | |
| Published online | 16 February 2026 | |
- National Food and Strategic Reserves Administration. (2019). White Paper: China’s food security. http://www.gov.cn/zhengce/2019-10/14/content_5438636.htm [Google Scholar]
- Central People’s Government. (2014). National food security strategy plan (2014–2020). http://www.gov.cn/ [Google Scholar]
- National Bureau of Statistics of China. (2024, December 13). Bulletin on the National Grain Production in 2024. http://www.stats.gov.cn/english/PressRelease/202412/t20241219_1957784.html [Google Scholar]
- National Development and Reform Commission, Ministry of Agriculture and Rural Affairs, & National Food and Strategic Reserves Administration. (2022). The 14th Five-Year Plan for National Food Security. http://www.ndrc.gov.cn/ [Google Scholar]
- Ministry of Agriculture and Rural Affairs. (2023). Interpretation of the “No. 1 Central Document”: Key tasks for comprehensively promoting rural revitalization in 2023. http://www.moa.gov.cn/ [Google Scholar]
- Du, M., Lei, J., & Li, S. (2025). Navigating the path to food security in China: Challenges, policies, and future directions. Foods, 14(4), 644. https://doi.org/10.3390/foods14040644 [Google Scholar]
- Deng, Y., & Zeng, F. (2023). Sustainable path of food security in China under the background of green agricultural development. Sustainability, 15(3), 2538. [Google Scholar]
- Wen, T., Lau, K. C., Cheng, C., He, H., & Qiu, J. (2012). Ecological civilization, indigenous culture, and rural reconstruction in China. Monthly Review, 63(9), 29–35. https://doi.org/10.14452/MR-063-09-2012-02_2 [Google Scholar]
- Chen, Y.-f., & Wang, J.-y. (2021). China’s food security situation and strategy under the background of opening-up. Journal of Natural Resources, 36(6), 1616–1630. https://doi.org/10.31497/zrzyxb.20210620 [Google Scholar]
- Liu, X., & Huo, X. (2024). Green finance, land transfer and China’s agricultural green total factor productivity. Land, 13(12), 2213. https://doi.org/10.3390/land13122213 [Google Scholar]
- Wen, T. (2007). Deconstructing modernization. Chinese Sociology & Anthropology, 39(4), 10–25. https://doi.org/10.2753/CSA0009-4625390401 [Google Scholar]
- Wang, J., Li, S., Zhang, C., & others. (2020). Spatial-temporal dynamics of grain yield and the potential driving factors at the county level in China. Journal of Cleaner Production, 255, 120312 [Google Scholar]
- Zou, B., Chen, Y., Mishra, A. K., & Hirsch, S. (2024). Agricultural mechanization and the performance of the local Chinese economy. Food Policy, 125, 102648. https://doi.org/10.1016/j.foodpol.2024.102648 [Google Scholar]
- Tian, G., Duan, J., & Yang, L. (2021). Spatio-temporal pattern and driving mechanisms of cropland circulation in China. Land Use Policy, 100, 105118. https://doi.org/10.1016/j.landusepol.2020.105118 [Google Scholar]
- Liang, X., Jin, X., Han, B., Sun, R., Xu, W., Li, H., He, J., & Li, J. (2022). China’s food security situation and key questions in the new era: A perspective of farmland protection. Journal of Geographical Sciences, 32(6), 1001–1019. https://doi.org/10.1007/s11442-022-1982-9 [Google Scholar]
- China Meteorological Administration. (2023). 2022 China climate bulletin. Beijing: China Meteorological Press. [Google Scholar]
- Wang, C., Harrison, M. T., Liu, D., Yang, R., Zhou, M., Zhang, Y., & Liu, K. (2025). Dire need for quantification of environmental impacts associated with breeding climate-resilient crops. Agricultural Systems. Advance online publication. https://doi.org/10.1016/j.agsy.2025.103748 [Google Scholar]
- Halytsia, O., Vrachioli, M., Nivievskyi, O., & Sauer, J. (2025). Assessing the environmental performance of agricultural production using a parametric approach: An application for crop producers in Ukraine. Eastern European Economics, 63(4), 684–706. https://doi.org/10.1080/00128775.2024.2368042 [Google Scholar]
- Will, M., Jager, F., & Müller, B. (2025). Farmer decision-making on agri-environmental schemes: An agent-based modelling approach to evaluate different policy designs in Saxony, Germany. Agricultural Systems. Advance online publication. https://doi.org/10.1016/j.agsy.2025.103812 [Google Scholar]
- Wang, N., Gao, Y., Li, X., & Wang, Y. (2018). Efficiency analysis of grain production inputs: Utilization in China from an agricultural sustainability perspective. Agricultural Research, 7(1), 37–50. https://doi.org/10.1007/s40003-018-0293-y [Google Scholar]
- Anselin, L. (1988). Spatial econometrics: Methods and models. Dordrecht: Kluwer Academic Publishers. [Google Scholar]
- LeSage, J., & Pace, R. K. (2009). Introduction to spatial econometrics. CRC Press. [Google Scholar]
- Wooldridge, J. M. (2010). Econometric analysis of cross section and panel data (2nd ed.). MIT Press. [Google Scholar]
- Elhorst, J. P. (2014). Spatial econometrics: From cross-sectional data to spatial panels. Springer. [Google Scholar]
- Berger, T., Troost, C., Wossen, T., Latynskiy, E., Tesfaye, K., & Gbegbelegbe, S. (2017). Can smallholder farmers adapt to climate variability, and how effective are policy interventions? Agent-based simulation results for Ethiopia. Agricultural Economics, 48(6), 693–706. https://doi.org/10.1111/agec.12367 [Google Scholar]
- Lamichhane, J. R., Dachbrodt-Saaydeh, S., Kudsk, P., & Messéan, A. (2021). Toward a reduced reliance on conventional pesticides in European agriculture. Plant Disease, 105(1), 10–24. [Google Scholar]
- Aigner, D., Lovell, C. A. K., & Schmidt, P. (1977). Formulation and estimation of stochastic frontier production function models. Journal of Econometrics, 6(1), 21–37. [CrossRef] [Google Scholar]
- Huang, P. C. C. (2019). In search of a long-term development path for China: Starting from differences between assigning responsibility and contracting. Rural China, 16(2), 157–183. https://doi.org/10.1163/22136746-01602001 [Google Scholar]
- Li, X., Zhang, Q., & Wang, Y. (2019). Spring drought trends and their impact on agriculture in northern China. Journal of Climate, 32(4), 1321–1336. https://doi.org/10.1175/JCLI-D-18-0524.1 [Google Scholar]
- Huang, J., Wang, X., & Rozelle, S. (2013). The subsidization of farming households in China’s agriculture. Food Policy, 41, 124–132. [Google Scholar]
- Wen, T., Lau, K. C., Cheng, C., He, H., & Qiu, J. (2012). Ecological civilization, indigenous culture, and rural reconstruction in China. Monthly Review, 63(9), 29–35. Retrieved from https://monthlyreview.org/2012/02/01/ecological-civilization-indigenous-culture-and-rural-reconstruction-in-china/ [Google Scholar]
- Taylor, J. R. N., & Emmambux, M. N. (2008). Gluten-free foods and beverages from millets. Cereal Foods World, 53(2), 52–55. [Google Scholar]
- Zhang, C., & Hu, R. (2020).Does fertilizer use intensity respond to the urban-rural income gap? Evidence from a dynamic panel-data analysis in China. Sustainability, 12(1), Article 430. https://doi.org/10.3390/su12010430 [Google Scholar]
- Dong, X., Cui, F., & Wen, T. (2020). Resolving the “triple paradox”: National security governance and rural revitalization strategy. In Environment, Land and Regulatory Policy: Fudan Development and Policy Review (Vol. 12). Shanghai: Shanghai People’s Publishing House. [Google Scholar]
- Zhang, F., Cui, Z., Chen, X., et al. (2013). Integrated soil–crop system management. Journal of Environmental Quality, 42(2), 377–391. [Google Scholar]
- Wang, X., Ledgard, S., Luo, J., Guo, Y., Zhao, Z., Guo, L., Liu, S., Zhang, N., Duan, X., & Ma, L. (2018). Environmental impacts and resource use of milk production on the North China Plain, based on life cycle assessment. Science of the Total Environment, 625, 486–495. https://doi.org/10.1016/j.scitotenv.2017.12.259 [Google Scholar]
- Pingali, P. (2007). Agricultural mechanization: Adoption patterns and economic impact. In R. Evenson & P. Pingali (Eds.), Handbook of Agricultural Economics (Vol. 3, pp. 2779–2805). Elsevier. [Google Scholar]
- Diao, X., Hazell, P., & Thurlow, J. (2010). The role of agriculture in African development. World Development, 38(10), 1375–1383. https://doi.org/10.1016/j.worlddev.2009.06.011 [Google Scholar]
- Lü, Y.-Q., Zhang, Z.,-Y., & Zhang, M. (2021). The contribution rate of agricultural mechanization to China’s crop industry. Research of Agricultural Modernization, 42(4), 675–683. [Google Scholar]
- Wen, T. (2021). Retain industries in counties so that farmers can gain more income. Southern Rural News, February 27. [Google Scholar]
- Wang, N., Cheng, C., & Lin, G. (2022). Evolving agricultural trade structure and its impact on food security in China. Acta Geographica Sinica, 77(10), 2599–2615. https://doi.org/10.11821/dlxb202210012 [Google Scholar]
- Wen, T. (2003). Reflections at the turn of the century on “rural issues in three dimensions”. Asian Exchange: ARENA Bulletin, 18/19, 58–71. [Google Scholar]
- Zhao, Y. (2025). Growth of agricultural cooperation to enhance food security. China Daily, May 9, 2025(07). https://www.chinadaily.com.cn [Google Scholar]
- Qiao, F.,-b., Huang, J.,-k., Wang, S.,-k., & Li, Q. (2017). The impact of Bt cotton adoption on the stability of pesticide use. Journal of Integrative Agriculture, 16(10), 2346–2356. https://doi.org/10.1016/S2095-3119(17)61699-X [Google Scholar]
- Yang, Y., & Wei, X. (2023). The development logic, influencing factors and realization path for low-carbon agricultural mechanization. Smart Agriculture, 5(4), 150–159. https://doi.org/10.12133/j.smartag.SA202304008 [Google Scholar]
- Tsui, S., Qiu, J., Yan, X., Wong, E., & Wen, T. (2018). Rural communities and economic crises in modern China. Monthly Review, 70(4), 35–51. https://doi.org/10.14452/MR-070-04-2018-08_ [Google Scholar]
- Shi, Y., Zhao, L., Zhao, X., Lan, H., & Teng, H. (2022). The integrated impact of drought on crop yield and farmers’ livelihood in semi-arid rural areas in China. Land, 11(12), 2260. https://doi.org/10.3390/land11122260 [Google Scholar]
- Bogati, H., Liu, Y., & Paudel, S. (2023). Impact of drought on agricultural production efficiency: Evidence from panel data analysis. Agricultural Economics, 54(2), 123–135. https://doi.org/10.1111/agec.12849 [Google Scholar]
- Li, H., Wang, Y., Jia, Q., Wang, W., Zhang, J., Xing, P., Wan, H., & Li, Y. (2025). Impacts of drought on the spring phenology of temperate vegetation along a climate gradient: A case study in Inner Mongolia. Journal of Environmental Management, 394, 127568. https://doi.org/10.1016/j.jenvman.2025.127568 [Google Scholar]
- Wang, C., Linderholm, H. W., Song, Y., Wang, F., Liu, Y., & Tian, J. (2020). Impacts of drought on maize and soybean production in northeast China during the past five decades. International Journal of Environmental Research and Public Health, 17(7), 2459. [Google Scholar]
- Chen, D., Liu, B., Lei, T., Yang, X., Liu, Y., Bai, W., Han, R., Bai, H., & Chang, N. (2023). Monitoring and mapping winter wheat spring frost damage with MODIS data and statistical data. Plants, 12(23), 3954. https://doi.org/10.3390/plants12233954 [Google Scholar]
- Zhang, X., Yang, J., & Wang, S. (2011). China has reached the Lewis turning point. China Economic Review, 22(4), 542–554. [Google Scholar]
- Wu, Y., et al. (2020). Land finance dependence and urban land marketization in China: The perspective of strategic choice of local governments on land transfer. Land Use Policy, [Google Scholar]
- Tan, S., Heerink, N., & Qu, F. (2018). Land fragmentation and its driving forces in China. Land Use Policy, 76, 1–10. [Google Scholar]
- Zhang, L., Yin, X., Xu, Z., Zhi, Y., & Yang, Z. (2016). Crop planting structure optimization for water scarcity alleviation in China. Journal of Industrial Ecology, 20(3), 435–445. https://doi.org/10.1111/jiec.12447 [Google Scholar]
- Quan, X., Guo, Q., Ma, J., Shen, J., Xu, S., & others. (2023). The economic effects of unmanned aerial vehicles in pesticide application: evidence from Chinese grain farmers. Precision Agriculture, 24, 1965–1981. https://doi.org/10.1007/s11119-023-10025-9 [Google Scholar]
- Wang, L. (2024). Impact of agricultural mechanization on grain production in China. Lecture Notes in Education Psychology and Public Media, 46(1), 12–17. https://doi.org/10.54254/2753-7048/46/20230575 [Google Scholar]
- Dong, K., Prytherch, M., McElwee, L., Kim, P., Blanchette, J., & Hass, R. (2024, March 15). China’s food security: Key challenges and emerging policy responses. Center for Strategic and International Studies (CSIS). https://www.csis.org/analysis/chinas-food-security-key-challenges-and-emerging-policy-responses [Google Scholar]
- Zhang, F., Wang, F., Wu, L., & Hao, R. (2022). Agricultural science and technology innovation, spatial spillover and agricultural green development—Taking 30 provinces in China as the research object. Applied Sciences, 12(2), 845. https://doi.org/10.3390/app12020845 [Google Scholar]
- Pomeranz, K. (2000). The great divergence: China, Europe, and the making of the modern world economy. Princeton: Princeton University Press. [Google Scholar]
- Huang, Z., Hu, W., Song, W., & Li, X. (2025). The development of new rural financial institutions and agricultural total factor productivity. China Agricultural Economic Review. Advance online publication. [Google Scholar]
- Battese, G. E., & Coelli, T. J. (1992). Frontier production functions, technical efficiency and panel data: With application to paddy farmers in India. Journal of Productivity Analysis, 3(1), 153–169. https://doi.org/10.1007/BF00158774 [Google Scholar]
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