IDEAS home Printed from https://ideas.repec.org/a/spr/masfgc/v28y2023i4d10.1007_s11027-023-10054-9.html
   My bibliography  Save this article

An empirical exploration into the determinants of rice farmers’ decisions to adopt low-carbon agricultural technologies in Hubei Province, China

Author

Listed:
  • Linli Jiang

    (Wuyi University)

  • Yun Tian

    (Zhongnan University of Economics and Law)

  • Nan Chen

    (Shanxi Academy of Social Sciences)

  • Yun Luo

    (National Demonstration Center for Postdoctoral Innovation)

Abstract

Agricultural greenhouse gas emission is a well-known contributor to anthropogenic climate change. It is imperative to encourage farmers to adopt low-carbon agricultural technologies (LATs). In this paper, the Delphi method was used to select nine LATs with good carbon emission reduction effects among all possible technologies adopted in the agricultural production process. Moreover, based on the survey data of 1114 farmers in Hubei province of China, we identified the potential determinants of rice farmers’ decisions to adopt LATs and obtained the hierarchical structure of these determinants by employing the multivariate probit model, ordered probit model, and interpretative structural model. Results showed that there were strong complementary relationships between the nine LATs, and most rice farmers (83.48%) adopted three or fewer LATs simultaneously. It was also found that rice farmers’ decisions to adopt LATs were mainly influenced by four types of factors, namely individual characteristics, family resource endowments, production managerial factors, and external environmental factors, with production managerial factors exerting the most significant effect. Specifically, for rice farmers who joined agricultural cooperatives, who thought the agricultural machinery costs were acceptable, and who had paddy fields with a higher concentration degree, the probability of the adoption of three or more LATs would increase by 18.05%, 3.81%, and 0.11%, respectively (21.97% in total). In addition, the key determinants of rice farmers’ decisions to adopt three or more LATs were divided into three levels, i.e., surface factors, middle-level factors, and deep factors. To promote LATs, policymakers should offer targeted incentives, such as agricultural machinery purchase subsidies, technical guidance, and agricultural cooperative services.

Suggested Citation

  • Linli Jiang & Yun Tian & Nan Chen & Yun Luo, 2023. "An empirical exploration into the determinants of rice farmers’ decisions to adopt low-carbon agricultural technologies in Hubei Province, China," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 28(4), pages 1-25, April.
  • Handle: RePEc:spr:masfgc:v:28:y:2023:i:4:d:10.1007_s11027-023-10054-9
    DOI: 10.1007/s11027-023-10054-9
    as

    Download full text from publisher

    File URL: http://link.springer.com/10.1007/s11027-023-10054-9
    File Function: Abstract
    Download Restriction: Access to the full text of the articles in this series is restricted.

    File URL: https://libkey.io/10.1007/s11027-023-10054-9?utm_source=ideas
    LibKey link: if access is restricted and if your library uses this service, LibKey will redirect you to where you can use your library subscription to access this item
    ---><---

    As the access to this document is restricted, you may want to search for a different version of it.

    References listed on IDEAS

    as
    1. Mi, Qiao & Li, Xiandong & Li, Xianmei & Yu, Guoxin & Gao, Jianzhong, 2021. "Cotton farmers' adaptation to arid climates: Waiting times to adopt water-saving technology," Agricultural Water Management, Elsevier, vol. 244(C).
    2. Manu Goyal & Serguei Netessine, 2007. "Strategic Technology Choice and Capacity Investment Under Demand Uncertainty," Management Science, INFORMS, vol. 53(2), pages 192-207, February.
    3. Aijun Guo & Xiaoyun Wei & Fanglei Zhong & Penglong Wang & Xiaoyu Song, 2022. "Does Cognition of Resources and the Environment Affect Farmers’ Production Efficiency? Study of Oasis Agriculture in China," Agriculture, MDPI, vol. 12(5), pages 1-18, April.
    4. Yingchao Li & Zhiyuan Fan & Guanghui Jiang & Zhuo Quan, 2021. "Addressing the Differences in Farmers’ Willingness and Behavior Regarding Developing Green Agriculture—A Case Study in Xichuan County, China," Land, MDPI, vol. 10(3), pages 1-12, March.
    5. Ma, Wanglin & Renwick, Alan & Yuan, Peng & Ratna, Nazmun, 2018. "Agricultural cooperative membership and technical efficiency of apple farmers in China: An analysis accounting for selectivity bias," Food Policy, Elsevier, vol. 81(C), pages 122-132.
    6. Sun, Yufeng & Cai, Wenchao & Chen, Bo & Guo, Xueying & Hu, Jianjun & Jiao, Youzhou, 2017. "Economic analysis of fuel collection, storage, and transportation in straw power generation in China," Energy, Elsevier, vol. 132(C), pages 194-203.
    7. Hui Mao & Yujia Chai & Shaojian Chen, 2021. "Land Tenure and Green Production Behavior: Empirical Analysis Based on Fertilizer Use by Cotton Farmers in China," IJERPH, MDPI, vol. 18(9), pages 1-18, April.
    8. Zhang, Yuanxia & Halder, Pradipta & Zhang, Xiaoning & Qu, Mei, 2020. "Analyzing the deviation between farmers' Land transfer intention and behavior in China's impoverished mountainous Area: A Logistic-ISM model approach," Land Use Policy, Elsevier, vol. 94(C).
    9. Hailemariam Teklewold & Menale Kassie & Bekele Shiferaw, 2013. "Adoption of Multiple Sustainable Agricultural Practices in Rural Ethiopia," Journal of Agricultural Economics, Wiley Blackwell, vol. 64(3), pages 597-623, September.
    10. Trinh, Thoai Quang & Rañola, Roberto F. & Camacho, Leni D. & Simelton, Elisabeth, 2018. "Determinants of farmers’ adaptation to climate change in agricultural production in the central region of Vietnam," Land Use Policy, Elsevier, vol. 70(C), pages 224-231.
    11. Dandan Zhao & Hong Zhou, 2021. "Livelihoods, Technological Constraints, and Low-Carbon Agricultural Technology Preferences of Farmers: Analytical Frameworks of Technology Adoption and Farmer Livelihoods," IJERPH, MDPI, vol. 18(24), pages 1-19, December.
    12. Noltze, Martin & Schwarze, Stefan & Qaim, Matin, 2012. "Understanding the adoption of system technologies in smallholder agriculture: The system of rice intensification (SRI) in Timor Leste," Agricultural Systems, Elsevier, vol. 108(C), pages 64-73.
    13. Ezatollah Karami & Afsaneh Mansoorabadi, 2008. "Sustainable agricultural attitudes and behaviors: a gender analysis of Iranian farmers," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 10(6), pages 883-898, December.
    Full references (including those not matched with items on IDEAS)

    Most related items

    These are the items that most often cite the same works as this one and are cited by the same works as this one.
    1. Lipeng Li & Apurbo Sarkar & Xi Zhou & Xiuling Ding & Hua Li, 2022. "Influence and Action Mechanisms of Governmental Relations Embeddedness for Fostering Green Production Demonstration Household: Evidence from Shaanxi, Sichuan, and Anhui Province, China," IJERPH, MDPI, vol. 19(19), pages 1-25, September.
    2. Xuezhen Xu & Fang Wang & Tao Xu & Sufyan Ullah Khan, 2023. "How Does Capital Endowment Impact Farmers’ Green Production Behavior? Perspectives on Ecological Cognition and Environmental Regulation," Land, MDPI, vol. 12(8), pages 1-27, August.
    3. Nazziwa-Nviiri, Lydia & Van Campenhout, Bjorn & Amwonya, David, 2017. "Stimulating agricultural technology adoption: Lessons from fertilizer use among Ugandan potato farmers," IFPRI discussion papers 1608, International Food Policy Research Institute (IFPRI).
    4. Xufeng Cui & Ting Cai & Wei Deng & Rui Zheng & Yuehua Jiang & Hongjie Bao, 2022. "Indicators for Evaluating High-Quality Agricultural Development: Empirical Study from Yangtze River Economic Belt, China," Social Indicators Research: An International and Interdisciplinary Journal for Quality-of-Life Measurement, Springer, vol. 164(3), pages 1101-1127, December.
    5. Zejun He & Yunfei Jia & Yifan Ji, 2023. "Analysis of Influencing Factors and Mechanism of Farmers’ Green Production Behaviors in China," IJERPH, MDPI, vol. 20(2), pages 1-25, January.
    6. Varma, Poornima, 2016. "Agricultural Technology Adoption under Multiple Constraints: An Analysis of System of Rice Intensification (SRI) in India," 2016 Annual Meeting, July 31-August 2, Boston, Massachusetts 235806, Agricultural and Applied Economics Association.
    7. Varma, Poornima, 2017. "Adoption of System of Rice Intensification and its Impact on Rice Yields and Household Income: An Analysis for India," IIMA Working Papers WP2017-02-03, Indian Institute of Management Ahmedabad, Research and Publication Department.
    8. Varma, P., 2018. "Adoption and the Impact of System of Rice Intensification on Rice Yields and Household Income: A study for India," 2018 Conference, July 28-August 2, 2018, Vancouver, British Columbia 275986, International Association of Agricultural Economists.
    9. Chenle Xue & Dan Qiao & Noshaba Aziz, 2022. "Influence of Natural Disaster Shock and Collective Action on Farmland Transferees’ No-Tillage Technology Adoption in China," Land, MDPI, vol. 11(9), pages 1-23, September.
    10. Alice Joan G. Ferrer & Le Ha Thanh & Pham Hong Chuong & Nguyen Tuan Kiet & Vu Thu Trang & Trinh Cong Duc & Jinky C. Hopanda & Benedict Mark Carmelita & Eisen Bernard Bernardo, 2023. "Farming household adoption of climate-smart agricultural technologies: evidence from North-Central Vietnam," Asia-Pacific Journal of Regional Science, Springer, vol. 7(2), pages 641-663, June.
    11. Dan Qiao & Shuting Xu & Tao Xu & Qinchuan Hao & Zhen Zhong, 2022. "Gap between Willingness and Behaviors: Understanding the Consistency of Farmers’ Green Production in Hainan, China," IJERPH, MDPI, vol. 19(18), pages 1-18, September.
    12. Oyinlola Rafiat Ogunpaimo & Zainab Oyetunde-Usman & Jolaosho Surajudeen, 2021. "Impact of Climate Change Adaptation on Household Food Security in Nigeria—A Difference-in-Difference Approach," Sustainability, MDPI, vol. 13(3), pages 1-19, January.
    13. Dungang Zang & Sen Yang & Fanghua Li, 2022. "The Relationship between Land Transfer and Agricultural Green Production: A Collaborative Test Based on Theory and Data," Agriculture, MDPI, vol. 12(11), pages 1-19, November.
    14. Guoqiang Liu & Dakuan Qiao & Yuying Liu & Xinhong Fu, 2022. "Does Service Utilization Improve Members’ Welfare? Evidence from Citrus Cooperatives in China," Sustainability, MDPI, vol. 14(11), pages 1-20, May.
    15. Kangogo, Daniel & Dentoni, Domenico & Bijman, Jos, 2021. "Adoption of climate‐smart agriculture among smallholder farmers: Does farmer entrepreneurship matter?," Land Use Policy, Elsevier, vol. 109(C).
    16. Junxia Zeng & Dengwang Li & Cuiping Ma & Bin Wang & Liangliang Gao, 2022. "The Impact of Different Uses of the Internet on Farmers′ Adoption of Soil Testing and Formulated Fertilization Technology in Rural China," IJERPH, MDPI, vol. 20(1), pages 1-14, December.
    17. Giuseppe Maggio & Marina Mastrorillo & Nicholas J. Sitko, 2022. "Adapting to High Temperatures: Effect of Farm Practices and Their Adoption Duration on Total Value of Crop Production in Uganda," American Journal of Agricultural Economics, John Wiley & Sons, vol. 104(1), pages 385-403, January.
    18. Wenjun Guo & Wei Zhao & Min Min, 2022. "Operation Scale, Transfer Experience, and Farmers’ Willingness toward Farmland Transfer-In: A Case Study of Rice–Crayfish Cultivating Regions in China," Sustainability, MDPI, vol. 14(7), pages 1-16, March.
    19. Momanyi, Denis & Lagat, Prof. Job K. & Ayuya, Dr. Oscar I., 2016. "Analysis of the Marketing Behaviour of African Indigenous Leafy Vegetables among Smallholder Farmers in Nyamira County, Kenya," MPRA Paper 69202, University Library of Munich, Germany, revised 27 Jan 2016.
    20. Chao Zhang & Ruifa Hu, 2022. "Adoption of Direct Seeding, Yield and Fertilizer Use in Rice Production: Empirical Evidence from China," Agriculture, MDPI, vol. 12(9), pages 1-15, September.

    Corrections

    All material on this site has been provided by the respective publishers and authors. You can help correct errors and omissions. When requesting a correction, please mention this item's handle: RePEc:spr:masfgc:v:28:y:2023:i:4:d:10.1007_s11027-023-10054-9. See general information about how to correct material in RePEc.

    If you have authored this item and are not yet registered with RePEc, we encourage you to do it here. This allows to link your profile to this item. It also allows you to accept potential citations to this item that we are uncertain about.

    If CitEc recognized a bibliographic reference but did not link an item in RePEc to it, you can help with this form .

    If you know of missing items citing this one, you can help us creating those links by adding the relevant references in the same way as above, for each refering item. If you are a registered author of this item, you may also want to check the "citations" tab in your RePEc Author Service profile, as there may be some citations waiting for confirmation.

    For technical questions regarding this item, or to correct its authors, title, abstract, bibliographic or download information, contact: Sonal Shukla or Springer Nature Abstracting and Indexing (email available below). General contact details of provider: http://www.springer.com .

    Please note that corrections may take a couple of weeks to filter through the various RePEc services.

    IDEAS is a RePEc service. RePEc uses bibliographic data supplied by the respective publishers.