• Sat. Apr 19th, 2025

Will land transfer improve grain farmers’ adoption of agricultural green production technology? Evidence from Jiangxi Province, China

Will land transfer improve grain farmers’ adoption of agricultural green production technology? Evidence from Jiangxi Province, China
  • Adnan N, Nordin SM, Bahruddin MA, Tareq AH (2019a) A state-of-the-art review on facilitating sustainable agriculture through green fertilizer technology adoption: assessing farmers behavior. Trends Food Sci Tech 86:439–452

    CAS 

    Google Scholar 

  • Adnan N, Nordin SM, Rahman I, Noor A (2017) Adoption of green fertilizer technology among paddy farmers: a possible solution for Malaysian food security. Land Use Policy 63:38–52

    Google Scholar 

  • Adnan N, Nordin SM, Rasli AM (2019b) A possible resolution of Malaysian sunset industry by green fertilizer technology: factors affecting the adoption among paddy farmers. Environ Sci Pollut Res 26:27198–27224

    Google Scholar 

  • Asiedu-Ayeh LO, Zheng X, Agbodah K, Dogbe BS, Darko AP (2022) Promoting the adoption of agricultural green production technologies for sustainable farming: a multi-attribute decision analysis. Sustainability 14:9977

  • Cao A, Guo L, Li H (2022) How does land renting-in affect chemical fertilizer use? The mediating role of land scale and land fragmentation. J Cleaner Prod 379:134791

    CAS 

    Google Scholar 

  • Cao H, Zhu XQ, Heijman W, Zhao K (2020) The impact of land transfer and farmers’ knowledge of farmland protection policy on pro-environmental agricultural practices: the case of straw return to fields in Ningxia, China. J Cleaner Prod 277:123701

  • Chen C, Liu B, Wang Z (2023) Can land transfer relax credit constraints? Evidence from China. Econ Model 122:106248

  • Chen Y, Fu X, Liu Y (2022) Effect of farmland scale on farmers’ application behavior with organic fertilizer. Int J Environ Res Public Health 19:4967

    CAS 
    PubMed 
    PubMed Central 
    MATH 

    Google Scholar 

  • Chen Y, Wang ZB (2023) The impact of land transfers on the adoption of new varieties: evidence from micro-survey data in Shaanxi Province, China. Land 12:23

    MATH 

    Google Scholar 

  • Cheng CM, Gao Q, Qiu YQ (2022) Assessing the ability of agricultural socialized services to promote the protection of cultivated land among farmers. Land 11:1338

  • Craswell E (2021) Fertilizers and nitrate pollution of surface and ground water: an increasingly pervasive global problem. SN Appl Sci 3:518

    MATH 

    Google Scholar 

  • Dai Q, Cheng K (2022) What drives the adoption of agricultural green production technologies? An extension of TAM in agriculture. Sustainability 14:14457

  • Ding Z, Zhang Q, Tang Y (2024) Nexus between farmland transfer, agricultural loans, and grain production: empirical evidence from China. Front Sustain Food Syst 8:1229381

    Google Scholar 

  • Fei R, Lin Z, Chunga J (2021) How land transfer affects agricultural land use efficiency: evidence from China’s agricultural sector. Land Use Policy 103:105300

    Google Scholar 

  • Gao R, Zhang H, Gong C, Wu Z (2022) The role of farmers’ green values in creation of green innovative intention and green technology adoption behavior: evidence from farmers grain green production. Front Psychol 13:980570

  • Gao Y, Wang Q N, Chen C et al. (2023) Promotion methods, social learning and environmentally friendly agricultural technology diffusion: a dynamic perspective. Ecol Indic. 154:110724

  • Guo Y, Wang X (2024) Can land fragmentation inhibit farmers’ green production behavior? Realistic background, theoretical logic and empirical tests. China Land Sci 38:43–5

    MATH 

    Google Scholar 

  • He P, Zhang J, Li W (2021) The role of agricultural green production technologies in improving low-carbon efficiency in China: necessary but not effective. J Environ Manage 293:112837

  • Hebsale Mallappa VK, Pathak TB (2023) Climate smart agriculture technologies adoption among small-scale farmers: a case study from Gujarat, India. Front Sustain Food Syst 7:1202485

    Google Scholar 

  • Huang JK, Huang ZR, Jia XP, Hu RF, Xiang C (2015) Long-term reduction of nitrogen fertilizer use through knowledge training in rice production in China. Agric Syst 135:105–111

    MATH 

    Google Scholar 

  • Hui C, Kai Z (2019) Farmland scale and farmers’ pro-environmental behavior:verification of the inverted U hypothesis. Resour Sci 41:740–752

  • Jin W, Fang F, Chen P (2023) Does land circulation help improve food security? – based on the analysis of change of land management mode. J China Univ Geosci 23:105–121

    MATH 

    Google Scholar 

  • Kuang F, Li J, Jin J, Qiu X (2023) Do green production technologies improve household income? Evidence from rice farmers in China. Land 12:1848

  • Kwon O (2015) The role of digital knowledge richness in green technology adoption: a digital option theory perspective. J Inf Syst 24:23–52

    MATH 

    Google Scholar 

  • Li B W, Shen YQ (2021) Effects of land transfer quality on the application of organic fertilizer by large-scale farmers in China. Land Use Policy 100:105124

  • Li D, Nanseki T (2023) Practice, promotion and perspective of smart agriculture in China. Agri Innov Asia 183-203

  • Li Q, Zeng F, Mei H, Li T, Li D (2019) Roles of motivation, opportunity, ability, andtrust in the willingness of farmers to adopt green fertilization techniques. Sustainability 11:6902

  • Li R S, Huang B, Liu SQ et al. (2024) Land transfer contract and farmers’ straw-returning behavior: evidence from rural China. Land 13:905

  • Liu L, Zhang J, Zhang C, Qiu H (2017) Does the expansion of business scale help farmers adopt environmentally friendly production practices? – A case study of straw returning to the field. J Agrotech Econ 5:17–26

    MATH 

    Google Scholar 

  • Lu H, Chen YJ, Huan HT, Duan N (2022) Analyzing cultivated land protection behavior from the perspective of land fragmentation and farmland transfer: evidence from farmers in rural China. Front Environ Sci 10:12

    Google Scholar 

  • Mao P, Xu J (2015) Land system, transfer of land management rights, and farmers’ income growth. J Manag World 63–74+88

  • Mpanga IK, Gaikpa DS, Koomson E, Dapaah HK (2023) Innovations in water management: agriculture. In: Brinkmann R (ed.) The Palgrave handbook of global sustainability. Palgrave Macmillan, Cham, p 381–403

  • Niu Z, Chen C, Gao Y, Wang Y, Chen Y, Zhao K (2022) Peer effects, attention allocation and farmers’ adoption of cleaner production technology: Taking green control techniques as an example. J Cleaner Prod 339:130700

  • Pan Y, Tian L, Zhao Q, Tao Z, Yang J, Zhou Y et al. (2022) Evaluation of the acute toxic effects of crude oil on intertidal mudskipper (Boleophthalmus pectinirostris) based on antioxidant enzyme activity and the integrated biomarker response. Environ Pollut 292:118341

    CAS 
    PubMed 

    Google Scholar 

  • Pannell DJ (2001) Explaining non-adoption of practices to prevent dryland salinity in western Australia: implications for policy. In: Conacher AJ (ed) Land degradation. Springer, Dordrecht, p 335–346

  • Pei SY, Zhao SD, Li X et al. (2024) Impacts of rural-urban labour transfer and land transfer on land efficiency in China: A analysis of mediating effects. Land, 13:702

  • Peng K, Yang C, Chen Y (2020) Land transfer in rural China: incentives, influencing factors and income effects. Appl Econ 52:5477–5490

    MATH 

    Google Scholar 

  • Qiao D, Xu S, Xu T, Hao Q, Zhong Z (2022) Gap between willingness and behaviors: understanding the consistency of farmers’ green production in Hainan, China. Int J Environ Res Public Health 19:11351

  • Qu M, Zhao K (2021) Impact of operation scale expansion on farmers’ investment behavior of agricultural socialized services under different land transfer scenarios. China Land Sci 35:37–45

    MATH 

    Google Scholar 

  • Qu X, Zhou W, He J et al. (2023) Land certification, adjustment experience, and green production technology acceptance of farmers: evidence from Sichuan Province, China. Land 12:848

  • Reganold JP, Wachter JM (2016) Organic agriculture in the twenty-first century. Nat Plants 2:15221

    PubMed 

    Google Scholar 

  • Ryan B, Gross NC (1943) The diffusion of hybrid seed corn in two Iowa communities. Rural Sociol 8:15–24

    MATH 

    Google Scholar 

  • Schultz TW (1966) Transforming traditional agriculture: reply. J Farm Econ 48:1015–1018

    MATH 

    Google Scholar 

  • Shi F, Cai BZ, Meseretchanie A et al. (2023) Agricultural socialized services to stimulate the green production behavior of smallholder farmers: the case of fertilization of rice production in south China. Front Environ Sci 11:1169753

    Google Scholar 

  • Stiglitz JE, Weiss A (1981) Credit rationing in markets with imperfect information. Am Econo Rev 71:393–410

    MATH 

    Google Scholar 

  • Sui Y, Gao Q (2023) Farmers’ endowments, technology perception and green production technology adoption behavior. Sustainability 15:7385

  • Tan S, Wang S, Ye Z, Zhu Y, Ni K (2023) Will land transfer aggravate “non-grain” of agricultural land? A heterogeneity analysis based on farmland scales. J Nat Resour 38:2841–2855

    Google Scholar 

  • Turner MD (2016) Rethinking land endowment and inequality in rural Africa: the importance of soil fertility. World Dev 87:258–273

    MATH 

    Google Scholar 

  • Velten S, Jager NW, Newig J (2021) Success of collaboration for sustainable agriculture: a case study meta-analysis. Environ Dev Sustain 23:14619–14641

  • Yang C, Zeng H, Zhang Y (2022) Are socialized services of agricultural green production conducive to the reduction in fertilizer input? empirical evidence from rural China. Int J Environ Res Public Health 19:14856

    CAS 
    PubMed 
    PubMed Central 

    Google Scholar 

  • Yu LL, Zhao DY, Xue ZH, Gao Y (2020) Research on the use of digital finance and the adoption of green control techniques by family farms in China. Technol Soc 62:101323

  • Zeng J (2023) The impact of different use of the Internet on the adoption of green pest control technology by professional farmers. J Hunan Agric Univ 24:35–44

    MATH 

    Google Scholar 

  • Zhang H, Luo J, Cheng M, Duan P (2020) How does rural household differentiation affect the availability of farmland management right mortgages in China? Emerg Mark Financ Trade 56:2509–2528

    MATH 

    Google Scholar 

  • Zhang M, Zhang Y, Xie F (2024a) Influence of land transfer contract on farmers’ green production behaviors: based on survey data from farmers in the main rice producing areas of Jiangxi Province. Areal Res Dev 43:119–124

    MATH 

    Google Scholar 

  • Zhang N, Zhang X, Xiu C (2024b) Does agricultural mechanization help farmers to strengthen sustainability and protect cultivated land? Evidence from 2118 households in 10 provinces of China. Sustainability 16:6136

  • Zhang Y, Wang K, Lu Y (2022) Zero rent transfer of land and loss of agricultural production efficiency. Econ Surv 39:35–45

    MATH 

    Google Scholar 

  • Zhang Z, Liu Y (2021) Impact of land transfer on the farmers’ adoption of green control technology: evidence from ESR model. J Stat Inf 36:89–97

    MATH 

    Google Scholar 

  • Zhou Y, Li X, Liu Y (2020) Rural land system reforms in China: history, issues, measures and prospects. Land Use policy, 91:104330

  • link

    By admin

    Leave a Reply

    Your email address will not be published. Required fields are marked *