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Research Article

Region selection and efficiency improvement for apple production using an indicator system based on cost-effective factors

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Article: 2222615 | Received 25 Dec 2022, Accepted 05 Jun 2023, Published online: 25 Aug 2023

References

  • Apple Advantage Area Layout Plan. (2008–2015). Ministry of Agriculture and Rural Affairs of the People’s Republic of China. 2008. https://www.moa.gov.cn.
  • Apple Advantage Regional Development Plan. (2003–2007). Ministry of Agriculture and Rural Affairs of the People’s Republic of China. 2003. https://www.moa.gov.cn.
  • Bai, X. G., Li, J. S., & Huo, X. X. (2015). Empirical studies on the climate change and variation of regional apple production structure in China. Economic Geography, 35(6), 130–137. https://doi.org/10.15957/j.cnki.jjdl.2015.06.018
  • Chemeris, A., Liu, Y., & Ker, A. (2022). Insurance subsidies, climate change, and innovation: Implications for crop yield resiliency. Food Policy, 108, 102232. https://doi.org/10.1016/j.foodpol.2022.102232
  • China Rural Statistical Yearbook. (1979–2020). China Economic and Social Big Data Research Platform. https://data.cnki.net/.
  • Cláudia, M. V., Dulce, F., Patrícia, A., Jorge, R., & Paulo, P. (2022). Agricultural land systems importance for supporting food security and sustainable development goals: A systematic review. Science of the Total Environment, 806(3), 150718. https://doi.org/10.1016/j.scitotenv.2021.150718
  • Congedo, L., & Macchi, S. (2015). The demographic dimension of climate change vulnerability: Exploring the relation between population growth and urban sprawl in Dar es Salaam. Current Opinion in Environmental Sustainability, 13, 1–10. https://doi.org/10.1016/j.cosust.2014.12.002
  • Estrada-Carmona, N., Attwood, S., Cole, S. M., Remans, R., & DeClerck, F. (2020). A gendered ecosystem services approach to identify novel and locally-relevant strategies for jointly improving food security, nutrition, and conservation in the Barotse Floodplain. International Journal of Agricultural Sustainability, 18(4), 351–375. https://doi.org/10.1080/14735903.2020.1787618
  • Feng, X. L., Liu, M. Y., & Huo, X. X. (2016). Influence of adaptive behavior to climate change and its spatial effects on farmers’ income: Based on the survey data of apple farmers from 4 provinces. Journal of Agro-Forestry Economics and Management, 15(5), 570–578. https://xuebao.jxau.edu.cn.
  • Gao, X. D., Zhao, X. N., Wu, P. T., Yang, M., Ye, M. T., Tian, L., Zou, Y. F., Wu, Y., Zhang, F. S., & Siddique, K. H. M. (2021). The economic–environmental trade-off of growing apple trees in the drylands of China: A conceptual framework for sustainable intensification. Journal of Cleaner Production, 296, 126497. https://doi.org/10.1016/j.jclepro.2021.126497
  • Granero, M. A. S., Segovia, J. E. T., & Pérez, J. G. (2008). Some comments on Hurst exponent and the long memory processes on capital markets. Physica A: Statistical Mechanics and its Applications, 387(22), 5543–5551. https://doi.org/10.1016/j.physa.2008.05.053
  • Gu, H., & Wang, A. M. (2007). Evaluation of apple production efficiency in Henan based on Malmquist index. Journal of Agrotechnical Economics, 02, 99–104. https://kns.cnki.net/kcms/detail/detail.aspx?FileName=NYJS200702017&DbName=CJFQ2007.
  • Hall, C., Dawson, T. P., Macdiarmid, J. I., Mattews, R. B., & Smith, P. (2017). The impact of population growth and climate change on food security in Africa: Looking ahead to 2050. International Journal of Agricultural Sustainability, 15(2), 124–135. https://doi.org/10.1080/14735903.2017.1293929
  • He, L., Shen, J., & Zhang, Y. (2018). Ecological vulnerability assessment for ecological conservation and environmental management. Journal of Environmental Management, 206(1), 1115–1125. https://doi.org/10.1016/j.jenvman.2017.11.059
  • He, X., Lin, Z. S., Liu, H. Y., & Qi, X. Z. (2016). Analysis of the driving factors of PM2.5 in Jiangsu province based on grey correlation model. Acta Geographica Sinica, 71(7), 1119–1129. https://doi.org/10.11821/dlxb201607003
  • Hu, X. J., Ma, C. M., Huang, P., & Guo, X. (2021). Ecological vulnerability assessment based on AHP-PSR method and analysis of its single parameter sensitivity and spatial autocorrelation for ecological protection – A case of Weifang city, China. Ecological Indicators, 125, 107464. https://doi.org/10.1016/j.ecolind.2021.107464
  • Huo, G. P., Gosme, M., Gao, X. D., Dupraz, C., Yang, J. L., & Zhao, X. N. (2021). Dynamics of interspecific water relationship in vertical and horizontal dimensions under a dryland apple–Brassica intercropping system: Quantifying by experiments and the 3D Hi–sAFe model. Agricultural and Forest Meteorology, 310, 108620. https://doi.org/10.1016/j.agrformet.2021.108620
  • Hurst, H. E. (1951). Long term storage capacity of reservoirs. Transactions of the American Society of Civil Engineers, 116(12), 776–808.
  • Implementation Opinions of the People's Government of Shandong Province on Accelerating the Transformation and Upgrading of Agricultural Mechanization and Agricultural Machinery Equipment Industry. (2013). Shaanxi Provincial People's Government. [2012–03–30]. https://nync.shandong.gov.cn/zwgk/tfwj/njhglc/201912/t20191223_2492311.html.
  • Kendziorski, C. M., Bassingthwaighte, J. B., & Tonellato, P. J. (1999). Evaluating maximum likelihood estimation methods to determine the Hurst coefficient. Physica A: Statistical Mechanics and its Applications, 273(3–4), 439–451. https://doi.org/10.1016/S0378-4371(99)00268-X
  • Kharanagh, S. G., Banihabib, M. E., & Javadi, S. (2020). An MCDM–based social network analysis of water governance to determine actors’ power in water–food–energy nexus. Journal of Hydrology, 581, 124382. https://doi.org/10.1016/j.jhydrol.2019.124382
  • Krupnik, T. J., Timsina, J., Devkota, K. P., Tripathi, B. P., Karki, T. B., Urfels, A., Gaihre, Y. K., Choudhary, D., Beshir, A. R., Pandey, V. P., Brown, B., Gartaula, H., Shahrin, S., & Ghimire, Y. N. (2021). Chapter four-agronomic, socio-economic, and environmental challenges and opportunities in Nepal’s cereal-based farming systems. Advances in Agronomy, 170, 155–287. https://doi.org/10.1016/bs.agron.2021.06.004
  • Li, J. T., & Li, Y. X. (2019). Influence measurement of rapid urbanization on agricultural production factors based on provincial panel data. Socio-Economic Planning Sciences, 67, 69–77. https://doi.org/10.1016/j.seps.2018.09.004
  • Li, Y., Xiong, S., Tang, X. Y., Wu, H., Han, C., Yi, M., & Wang, Y. (2021). Loose nanofiltration membrane with highly-branched SPEI/PEI assembly for dye/salt textile wastewater treatment. Journal of Environmental Chemical Engineering, 9(6), 106371. https://doi.org/10.1016/j.jece.2021.106371
  • Liao, Y., Cao, H. X., Liu, X., Li, H. T., Hu, Q. Y., & Xue, W. K. (2021). By increasing infiltration and reducing evaporation, mulching can improve the soil water environment and apple yield of orchards in semiarid areas. Agricultural Water Management, 253, 106936. https://doi.org/10.1016/j.agwat.2021.106936
  • Liu, D., Qi, X. C., Fu, Q., Li, M., Zhu, W. F., Zhang, L. L., Faiz, M. A., Khan, M. I., Li, T. X., & Cui, S. (2019). A resilience evaluation method for a combined regional agricultural water and soil resource system based on Weighted Mahalanobis distance and a Gray–TOPSIS model. Journal of Cleaner Production, 229, 667–679. https://doi.org/10.1016/j.jclepro.2019.04.406
  • Liu, T. J., & Fan, Y. (2012). Analysis on the changes and influencing factors of the production layout of China's apple main production areas. Issues in Agricultural Economy, 33(10), 36–42, 111. https://doi.org/10.13246/j.cnki.iae.2012.10.007
  • Lv, X. D., Wang, T., Ma, Z. M., Zhao, C. Y., Siddique Kadambot, H. M., & Ju, X. T. (2019). Enhanced efficiency nitrogen fertilizers maintain yields and mitigate global warming potential in an intensified spring wheat system. Field Crops Research, 244, 107624. https://doi.org/10.1016/j.fcr.2019.107624
  • Ma, B., Zhang, B., Jia, L. G., & Huang, H. (2020). Conditional distribution selection for SPEI-daily and its revealed meteorological drought characteristics in China from 1961 to 2017. Atmospheric Research, 246, 105108. https://doi.org/10.1016/j.atmosres.2020.105108
  • Mafi-Gholami, D., Pirasteh, S., Ellison, J. C., & Jaafari, A. (2021). Fuzzy–based vulnerability assessment of coupled social–ecological systems to multiple environmental hazards and climate change. Journal of Environmental Management, 299, 113573. https://doi.org/10.1016/j.jenvman.2021.113573
  • Malmir, M., Javadi, S., Moridi, A., Neshat, A., & Razdar, B. (2021). A new combined framework for sustainable development using the DPSIR approach and numerical modeling. Geoscience Frontiers, 12(4), 101169. https://doi.org/10.1016/j.gsf.2021.101169
  • Mousavi-Avval, S. H., Rafiee, S., & Mohammadi, A. (2011). Optimization of energy consumption and input costs for apple production in Iran using data envelopment analysis. Energy, 36(2), 909–916. https://doi.org/10.1016/j.energy.2010.12.020
  • National Development and Reform Commission. 2023. China Economic and Social Big Data Research Platform. https://data.cnki.net/.
  • Ni, N., Li, X. N., Yao, S., Shi, R. Y., Kong, D. Y., Bian, Y. R., Jiang, X., & Song, Y. (2021). Biochar applications combined with paddy-upland rotation cropping systems benefit the safe use of PAH–contaminated soils: From risk assessment to microbial ecology. Journal of Hazardous Materials, 404, 124123. https://doi.org/10.1016/j.jhazmat.2020.124123
  • Notice on Printing and Distributing Apple Industrialization Development Plan. (1998–2010). Shandong Modern Agriculture and Rural Development Research Center. [1998–05–20]. https://www.shaanxi.gov.cn/gk/zfwj/47884.htm.
  • Sandile, T., Hadebe, T.M., & Albert, T.M. (2020). Sorghum best practice management recommendations based on AquaCrop modeling scenario analysis in various agro–ecologies of KwaZulu Natal, South Africa. Physics and Chemistry of the Earth, Parts A/B/C, 117, 102866. https://doi.org/10.1016/j.pce.2020.102866
  • Shi, C. N., Gao, J., Su, B., & Yao, S. B. (2017). Region selection of returning farmland to forest based on cost-benefit analysis: A case study on the loess plateau. Issues of Forestry Economics, 37((04|4)), 18–22+99. https://doi.org/10.16832/j.cnki.1005–9709.2017.04.004
  • Shi, H. J., Wang, J. Q., & Wang, Y. D. (2011). Empirical research on the production efficiency of the apple industry in Hebei province based on DEA. Journal of Agrotechnical Economics, 10, 86–91. https://doi.org/10.13246/j.cnki.jae.2011.10.011
  • Silva, D. S., Arima, E. Y., dos Reis, T. N. P., & Rattis, L. (2023). Temperature effect on Brazilian soybean yields, and farmers’ responses. International Journal of Agricultural Sustainability, 21(1), 2173370. https://doi.org/10.1080/14735903.2023.2173370
  • Souza, G. d. S., & Gomes, E. G. (2023). Assessing the influence of external factors on agricultural production in Brazil. Socio-Economic Planning Sciences, (in press). 101440. https://doi.org/10.1016/j.seps.2022.101440
  • State Council Guofa. (1993). No. 38 Notice of the State Council Approving and Transmitting the Ministry of Civil Affairs Report on Adjusting the Standards for CityEstablishment. https://www.gov.cn/xxgk/pub/govpublic/mrlm/201208/t20120820_65479.html.
  • Sun, M., Gao, X. R., Zhang, Y. L., Song, X. L., & Zhao, X. N. (2022). A new solution of high–efficiency rainwater irrigation mode for water management in apple plantation: Design and application. Agricultural Water Management, 259, 107243. https://doi.org/10.1016/j.agwat.2021.107243
  • Tautges, N., Borrelli, K., Goldberger, J., Machado, S., Fuerst, E. P., Roberts, D., & Burke, I. (2022). Chapter three-growing small grains organically in the semiarid west: A review of markets and management practices to optimize productivity and sustainability. Advances in Agronomy, 171, 111–141. https://doi.org/10.1016/bs.agron.2021.10.005
  • Tong, S. Q., Lai, Q., Zhang, J. Q., Bao, Y. H., Lusi, A., Ma, Q. Y., Li, X. Q., & Zhang, F. (2018). Spatiotemporal drought variability on the Mongolian plateau from 1980–2014 based on the SPEI-PM, intensity analysis and hurst exponent. Science of The Total Environment, 615, 1557–1565. https://doi.org/10.1016/j.scitotenv.2017.09.121
  • United Nations (Department of Economic and Social Affairs). (2021). Population, food security, nutrition and sustainable development. Apr. https://digitallibrary.un.org/record/3924543.
  • Wan, H. L., & Wang, J. (2018). Study of dynamic pattern evolution of drought and its correlation with vegetation cover in Baoji area on multi–scale. Acta Ecologica Sinica, 38(19), 6941–6952. https://doi.org/10.5846/stxb201708201496
  • Wang, C. F., & Shi, J. M. (2017). Study of spatio-temporal evolution characteristics of apple planting area in Shandong province. Chinese Journal of Agricultural Resources and Regional Planning, 38(12), 170–177. https://doi.org/10.7621/cjarrp.1005-9121.20171225
  • Wang, J., & Liu, T. J. (2022). Spatiotemporal evolution and suitability of apple production in China from climate change and land use transfer perspectives. Food and Energy Security, 11, 15. https://doi.org/10.1002/fes3.386
  • Yuan, B., Zhang, Y. Y., & Chen, C. (2017). Spatial pattern evolution and its driving factors for apple industry in China. Journal of Arid Land Resources and Environment, 6, 32–37. https://doi.org/10.13448/j.cnki.jalre.2017.175
  • Zhang, C. Y., Chang, Q., & Huo, X. X. (2018). Analysis on the layout of China’s apple production transition—Based on the application of GIS technology and barycenter theory. Economic Geography, 38(8), 141–151. https://doi.org/10.15957/j.cnki.jjdl.2018.08.018
  • Zhang, D. W., Wu, L. L., Huang, S. Q., Zhang, Z. Y., Ahmad, F., Zhang, G. L., Shi, N., & Xu, H. (2021a). Ecology and environment of the Belt and Road under global climate change: A systematic review of spatial patterns, cost efficiency, and ecological footprints. Ecological Indicators, 131, 108237. https://doi.org/10.1016/j.ecolind.2021.108237
  • Zhang, Y. H., Wang, R., Peng, X. X., Zhang, Y. J., Ning, F., Xu, Z. G., Wang, Q., Dong, Z. Y., Jia, G. C., Wei, L., & Li, J. (2021b). Changes in soil organic carbon and total nitrogen in apple orchards in different climate regions on the loess plateau. Catena, 197, 104989. https://doi.org/10.1016/j.catena.2020.104989
  • Zhou, Y. X., Li, Y. X., Sun, Y. Y., & Jiang, H. L. (2016). Evaluation of land eco–security based on different evaluation model: A case in shandong peninsula blue economic zone. China Population, Resources and Environment, 26(S2), 207–210. https://kns.cnki.net/kcms2/article/abstract?v=Qe77F90WpyEwp_BWeyXyiqYHZ1onadB60dy5sirCGf0Usd-DOdNLv7vlKX6IgXD7g0sPQqplFWCbi4UPYntkdRRYBMIUv_0KvtaWRDgQKC43dTRQXzMvd5KQmHqch0pKCmtgOiEPvM=&uniplatform=NZKPT&language=CHS.