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شناسایی عوامل موثر بر سطوح تمایل به پذیرش الگوی کشت متناسب با منابع آبی در بین کشاورزان دشت جیرفت | ||
تحقیقات اقتصاد و توسعه کشاورزی ایران | ||
دوره 54، شماره 3، مهر 1402، صفحه 737-752 اصل مقاله (1.34 M) | ||
نوع مقاله: مقاله پژوهشی | ||
شناسه دیجیتال (DOI): 10.22059/ijaedr.2021.313636.668974 | ||
نویسندگان | ||
محسن عادلی ساردوئی1؛ علی اسدی* 1؛ خلیل کلانتری1؛ علی اکبر براتی1؛ حسن خسروی2 | ||
1گروه مدیریت و توسعه کشاورزی، دانشکده کشاورزی، دانشگاه تهران، تهران، ایران | ||
2گروه احیای مناطق خشک وکوهستانی، دانشکده منابع طبیعی، دانشگاه تهران، تهران، ایران | ||
چکیده | ||
تا کنون در مطالعات کمتر به عوامل موثر بر نیت کشاورزان در راستای توسعه الگوی کشت مبتنی بر منابع آبی پرداخته شده است. لذا، این مقاله ارتباط بین ویژگیهای 393 کشاورز فعال در دشت جیرفت و درجه تمایل به پذیرششان نسبت به الگوی کشت مبتنی بر منابع آبی را بررسی کرده است. این مطالعه اثر خصوصیات دموگرافی، فاکتورهای اقتصادی اجتماعی و ویژگیهای نهادی کشاورزان را با استفاده از پرسشنامه حاوی سوالهای باز و بسته در سال زراعی 1399 مورد بررسی و مطالعه قرار داده است. به منظور دستیابی به اهداف تحقیق مدل لاجیت طبقهای مورد استفاده قرار گرفت. متغیر وابسته (تمایل به پذیرش الگوی کشت متناسب با منابع آبی) به صورت رتبهای و در پنج طبقه مورد سنجش قرار گرفت. نتایج نشان داد که 62 درصد پاسخگویان تمایل به پذیرششان کمتر از متوسط بوده و تنها 9/7 درصد کشاورزان تمایل به پذیرش خیلی زیادی داشتند. همچنین، متغیرهای سن، سطح سواد، متوسط درآمد ماهیانه، مالکیت شخصی بر اراضی، دسترسی به اعتبارات و عضویت در نهادهای اجتماعی کشاورزان اثر مثبت و معنیدار بر تمایل به پذیرش کشاورزان داشته است و عدم پرداخت هزینه برای نهاده آب توسط کشاورزان اثر معکوس داشته است. | ||
کلیدواژهها | ||
الگوی کشت؛ مدل لاجیت ترتیبی؛ تمایل به پذیرش؛ حفاظت منابع آب؛ دشت جیرفت | ||
مراجع | ||
Afshar, A., Afsharmanesh, G. R., Adeli, M. & Malekian, A. (2014). Assessment of aquacrop model in the simulation of potato yield and water use efficiency under different water regimes. Journal of Biology Environment Science, 8, 79-86. Aghapour, M., Yazdani, S., Rafeei, H. (2013). Effective Factors on Pressurized Irrigation Acceptance in Shosh, Andymeshk and Dezful Provinc. Iranian Journal of Agricultural Economics and Development Research, 44(4), 603-612. (In Persian) Alauddin, M., Sarker, M. A. R., Islam, Z., & Tisdell, C. (2020). Adoption of alternate wetting and drying (AWD) irrigation as a water-saving technology in Bangladesh: Economic and environmental considerations. Land Use Policy, 91, 104430. Alizadeh, A.,Majidi, N., Ghorbani, M. and Mohammadian, F. (2012). Iranian Journal of lrrigation and drainage, No. 1, Vol. 6, 55-68. (In Persian) Amirtaimoori, S. (2017). Forecasting the exploitation of groundwater resources and the possibility of recharge them by the precipitation in jiroft. Journal of Irrigation Sciences and Engineering (JISE), Vol 40, 1-1, 39-48. (In Persian) Amsalu, A., & De Graaff, J. (2007). Determinants of adoption and continued use of stone terraces for soil and water conservation in an Ethiopian highland watershed. Ecological economics, 61(2-3), 294-302. Anley, Y., Bogale, A., & Haile‐Gabriel, A. (2007). Adoption decision and use intensity of soil and water conservation measures by smallholder subsistence farmers in Dedo district, Western Ethiopia. Land degradation & development, 18(3), 289-302 Bayard, B., & Jolly, C. (2007). Environmental behavior structure and socio-economic conditions of hillside farmers: A multiple-group structural equation modeling approach. Ecological Economics, 62(3-4), 433-440. Boazar, M., Abdeshahi, A., & Yazdanpanah, M. (2020). Changing rice cropping patterns among farmers as a preventive policy to protect water resources. Journal of Environmental Planning and Management, 1-17. (In Persian) Dai, X., Chen, J., Chen, D., & Han, Y. (2015). Factors affecting adoption of agricultural water-saving technologies in Heilongjiang Province, China. Water Policy, 17(4), 581-594. Darkwah, K. A., Kwawu, J. D., Agyire-Tettey, F., & Sarpong, D. B. (2019). Assessment of the determinants that influence the adoption of sustainable soil and water conservation practices in Techiman Municipality of Ghana. International soil and water conservation research, 7(3), 248-257 Drechsel, P., Olaleye, A., Adeoti, A., Thiombiano, L., Barry, B., & Vohland, K. (2005). Adoption driver and constraints of resource conservation technologies in sub-Saharan Africa. Berlin: FAO, IWMI, Humbold Universitaet, 1-21. Frija, A., Chebil, A., & Abdelkafi, B. (2012). Irrigation water use efficiency in collective irrigated schemes of Tunisia: determinants and potential irrigation cost reduction. Agricultural Economics Review, 13(389-2016-23486), 39-48. Greene, W.H. 2005. Econometric analysis, seven edition, New York University Press, New York , PP: 1-1075. He, X. F., Cao, H., & Li, F. M. (2007). Econometric analysis of the determinants of adoption of rainwater harvesting and supplementary irrigation technology (RHSIT) in the semiarid Loess Plateau of China. Agricultural water management, 89(3), 243-250. Hurlimann, A., Dolnicar, S., & Meyer, P. (2009). Understanding behaviour to inform water supply management in developed nations–A review of literature, conceptual model and research agenda. Journal of environmental management, 91(1), 47-56. Jara-Rojas, R., Bravo-Ureta, B. E., & Díaz, J. (2012). Adoption of water conservation practices: A socioeconomic analysis of small-scale farmers in Central Chile. Agricultural Systems, 110, 54-62. Jha, S., Kaechele, H., & Sieber, S. (2019). Factors Influencing the Adoption of Water Conservation Technologies by Smallholder Farmer Households in Tanzania. Water, 11(12), 2640. Karidjo, B. Y., Wang, Z., Boubacar, Y., & Wei, C. (2018). Factors influencing farmers’ Adoption of Soil and Water Control Technology (SWCT) in Keita valley, a semi-arid Area of Niger. Sustainability, 10(2), 288. Lapar, M. L. A., & Pandey, S. (1999). Adoption of soil conservation: the case of the Philippine uplands. Agricultural economics, 21(3), 241-256. Le Blanc, D. (2015). Towards integration at last? The sustainable development goals as a network of targets. Sustainable Development, 23(3), 176-187. Mozafari, M. M. (2016). Factors Influencing on Farmers' Participation in Using Soil and Water Conservation Practices (Case Study: Alamout Region). Agricultural Extension and Education Research, Vol 8, 31, 75- 89. (In Persian) Norris, P. E., & Batie, S. S. (1987). Virginia farmers' soil conservation decisions: An application of Tobit analysis. Journal of Agricultural and Applied Economics, 19(1), 79-90. Núñez, J. T., & McCann, L. (2008). Determinants of manure application by crop farmers. Journal of soil and water conservation, 63(5), 312-321. Panahi, D. M., Kalantari, Z., Ghajarnia, N., Seifollahi-Aghmiuni, S., & Destouni, G. (2020). Variability and change in the hydro-climate and water resources of iran over a recent 30-year period. Scientific Reports, 10(1), 1-9. Parhizkari, A., Mozaffari, M. M., Hosseini Khodadadi, M. & Parhizkari, P. (2016). Investigating the effective factors on the participation of farmers in Shahroud watershed (Qazvin province) in applying water and soil protection operations using a multiple choice logit model. Journal of Watershed Management, (13), 7, 253-241. (In Persian) Pino, G., Toma, P., Rizzo, C., Miglietta, P. P., Peluso, A. M., & Guido, G. (2017). Determinants of farmers’ intention to adopt water saving measures: Evidence from Italy. Sustainability, 9(1), 77. Sidibé, A. (2005). Farm-level adoption of soil and water conservation techniques in northern Burkina Faso. Agricultural water management, 71(3), 211-224. Tenge, A. J., De Graaff, J., & Hella, J. P. (2004). Social and economic factors affecting the adoption of soil and water conservation in West Usambara highlands, Tanzania. Land Degradation & Development, 15(2), 99-114. von Stechow, C., Minx, J. C., Riahi, K., Jewell, J., McCollum, D. L., Callaghan, M. W., ... & Baiocchi, G. (2016). 2° C and SDGs: united they stand, divided they fall?. Environmental Research Letters, 11(3), 034022 Yadegari, s, (2015). Cultivation of "water-based" crops is prohibited in low-water provinces. Iran Newspaper, Year 21, No. 5902. (In Persian) Zarifian, S., Khojasteh, H., Bayat, P. (2018). Factors Affecting the Adoption of Trickle Irrigation by Palm Cultivators of Dashtestan. Iranian Journal of Agricultural Economics and Development Research, 48(4), 647-655. (In Persian) Zhang, D., & Guo, P. (2016). Integrated agriculture water management optimization model for water saving potential analysis. Agricultural Water Management, 170, 5-19. Ma, W., Renwick, A., Yuan, P., & Ratna, N. (2018). Agricultural cooperative membership and technical efficiency of apple farmers in China: An analysis accounting for selectivity bias. Food policy, 81, 122-132. Sardoei, M. A., Khodaverdizadeh, M., & Hayati, B. (2017). Application of Ordered Logit model to determine factors affecting adoption of Integrated Pest Management practices among greenhouse owners in Jiroft County. Journal of Science and Technology of Greenhouse Culture, 8(3). Savari, M., & Gharechaee, H. (2020). Utilizing the theory of planned behavior to predict Iranian farmers’ intention for safe use of chemical fertilizers. Journal of Cleaner Production, 121512. Savari, M., & Gharechaee, H. (2020). Utilizing the theory of planned behavior to predict Iranian farmers’ intention for safe use of chemical fertilizers. Journal of Cleaner Production, 121512. Evenson, R. E., & Gollin, D. (2003). Assessing the impact of the Green Revolution, 1960 to 2000. Sience, 300(5620), 758-762. Mendola, M. (2007). Agricultural technology adoption and poverty reduction: A propensity-score matching analysis for rural Bangladesh. Food policy, 32(3), 372-393. De Janvry, A., & Sadoulet, E. (2002). World poverty and the role of agricultural technology: direct and indirect effects. Journal of development studies, 38(4), 1-26. Zhang, S., Sun, Z., Ma, W., & Valentinov, V. (2020). The effect of cooperative membership on agricultural technology adoption in Sichuan, China. China Economic Review, 62, 101334. Pamuk, H., Bulte, E., & Adekunle, A. A. (2014). Do decentralized innovation systems promote agricultural technology adoption? Experimental evidence from Africa. Food Policy, 44, 227-236. | ||
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