Rainfall Variability, Risk, and Resilience: A Comparative Study of Insured vs. Non-Insured Farmers in Maharashtra, India

Arvind Rite

Symbiosis School for Online and Digital Learning, Symbiosis International Deemed University, Pune, Maharashtra, 412115, India

Vikas Abnave

YouthAid Global Services Private Limited, Pune, 411001, India

DOI: https://doi.org/10.36956/rwae.v5i4.1138

Received: 20 June 2024 | Revised: 15 July 2024 | Accepted: 8 August 2024 | Published Online: 19 September 2024

Copyright © 2024 Arvind Rite, Vikas Abnave. Published by Nan Yang Academy of Sciences Pte. Ltd.

Creative Commons LicenseThis is an open access article under the Creative Commons Attribution-NonCommercial 4.0 International (CC BY-NC 4.0) License.


Abstract

This paper examines the risks involved in Maharashtra’s agriculture and investigates the mitigation strategies adopted by insured and non-insured farmers in Latur and Pune districts. By using a multi-stage sampling method, 400 sample households were selected from two districts. These households comprise 268 insured farmers and 134 non-insured farmers. The results reveal that both rainfall variability and reductions in crop prices significantly impact agricultural revenues. However, the specific risk that carries the most significant weight may vary depending on an individual’s insurance status. Insured farmers are most vulnerable to the unpredictable nature of rainfall, as insurance typically protects against yield losses but not necessarily against market fluctuations. Conversely, non-insured farmers face a constant threat from declining crop prices, even with a good harvest, as they lack the financial buffer provided by crop insurance. This study suggests that the government should integrate pricing risk with crop insurance to reduce risk in agricultural production. Additionally, the farmers should adopt an integrated approach to pest and disease management. The implementation of a comprehensive crop insurance program is needed to ensure equitable coverage for farmers, facilitating widespread benefits. Additionally, more efforts should focus on mitigation of identified risks such as input costs, market fluctuations, and production uncertainties.

Keywords: Risk in agriculture; Non- insured farmers; Crop insurance; Maharashtra


References

[1] Singh, A.K., Kumar, S., Ashraf, S.N., et al., 2022. Implications of farmer’s adaptation strategies to climate change in Agricultural Sector of Gujarat: Experience from Farm Level Data. Research on World Agricultural Economy. 3(1), 42–57. DOI: http://dx.doi.org/10.36956/rwae.v3i1.498

[2] Joshi1, G.R., Bhandari, R., 2022. Climate adaptation in rain-fed agriculture: Analyzing the determinants of supplemental irrigation practices in Nepal. Research on World Agricultural Economy. 3(4), 48–58. DOI: http://dx.doi.org/10.36956/rwae.v3i4.761

[3] Wang, R., Rejesus, R.M., Aglasan, S., 2021. Warming temperatures, yield risk and crop insurance participation. European Review of Agricultural Economics. 48, 1109–1131.

[4] Masroor, M., Rahaman, M.H., Sajjad, H., 2023. Assessing farmers’ perception based composite drought vulnerability in Godavari Middle Sub-basin, India. International Journal of Disaster Risk Reduction. 92, 103747. DOI: https://doi.org/10.1016/j.ijdrr.2023.103747

[5] Katalakute, G., Wagh, V., Panaskar, D., et al., 2016. Impact of drought on environmental, agricultural and socio-economic status in Maharashtra state, India. Natural Resources and Conservation. 4(3), 35–41. DOI: https://doi.org/10.13189/nrc.2016.040301

[6] D’Agostino, A.L., Schlenker, W., 2016. Recent weather fluctuations and agricultural yields: Implications for climate change. Agricultural Economics. 47(S1), 159–171.

[7] Bhende, M.J., 2005. Agricultural insurance in India: Problems and prospects. NABARD Occasional Paper no. 44.

[8] Udmale, P., Ichikawa, Y.S., Kiem, A.N., et al., 2014. Drought impacts and adaptation strategies for agriculture and rural livelihood in the Maharashtra State of India. The Open Agriculture Journal. 8(1), 41–47. DOI: https://doi.org/10.2174/1874331501408010041

[9] Nagaraj, K., Sainath, P., Rukmani, R., et al., 2014. Farmers’ suicides in India: Magnitudes, trends, and spatial patterns, 1997–2012. Journal, Review of Agrarian Studies. 4(2), 53–83.

[10] Merriott, D., 2017. Factors associated with the farmer suicide crisis in India, Journal of Epidemiology and Global Health. 6(4), 217–227. DOI: https://doi.org/10.1016/j.jegh.2016.03.003

[11] Mukherjee, S., 2009. Examining farmer suicides in India: A study of literature. MPRA Paper. University Library of Munich: Germany.

[12] Knight, F.H., 1921. Risk, uncertainty and profit. Hart, Schaffner and Marx, Houghton Mifflin Co.: Boston, MA. pp. 19–20.

[13] Ogundeji, A.A., Okolie, C.C., 2022. Perception and adaptation strategies of smallholder farmers to drought risk: A scientometric analysis. Agriculture. 12(8), 1129. DOI: https://doi.org/10.3390/agriculture12081129

[14] Cimpoies, L., Grubleac, M., 2023. Crop production subsidized risks insurance for enhancing agricultural resilience and climate change mitigation in Moldova. Scientific Papers. Series “Management, Economic Engineering in Agriculture and rural development”. 23(4), 195–202.

[15] Mukherjee, S., Pal, P., 2017. Impediments to the spread of crop insurance in India. Economic & Political Weekly. 52(35), 16–19.

[16] Varadan, J.R., Kumar, P., 2012. Impact of crop insurance on rice farming in Tamil Nadu. Agricultural Economics Research Review. 25(2), 291–298.

[17] Cole, S., Giné, X., Tobacman, J., et al., 2013. Barriers to Household Risk Management: Evidence from India. International Monetary Fund. WP/12/195. Available from: https://www.-imf.org/external/pubs/ft/wp/2012/wp12195.pdf [cited on 8 March 2023].

[18] Ministry of Agriculture and Farmer Welfare, 2010. Rastriya Krishi Vikas Yojana - Maharashtra. Government of India. Available from: https://-rkvy.nic.in/static/download/compendium/Mahar-ashtra.pdf [cited on 8 March 2023].

[19] Kelkar, K., 2014. Droughts in Maharashtra: Lack of management or vagaries of climate change?. India Water Portal. Available from: https://-www.indiawaterportal.org/articles/droughts-maharashtra-lack-management-or-vagaries-climate-change [cited on 8 March 2023].

[20] Swami, D., Dave, P., Parthasarathy, D., 2018. Agricultural susceptibility to monsoon variability: A district level analysis of Maharashtra, India. Science of The Total Environment. 619–620, 559–577. DOI: https://doi.org/10.1016/j.scitotenv.2017.10.328

[21] Venkateswarlu, B., Ahire, R.D., Kapse, P.S., 2019. Farmers suicides in Marathwada region of India: A causative analysis. International Journal of Current Microbiology and Applied Sciences. 8(4), 296–308.

[22] Swain, M., 2014. Crop insurance for adaptation to climate change in India. Asia Research Centre. London School of Economics and Political Science: London, UK. Working paper no. 61. Available from: https://sticerd.lse.ac.uk/textonly/india/publicati-ons/working_papers/ARCWP61-Swain.pdf [cited on 8 March 2023].

[23] Government of Maharashtra, 2023. Economic Survey of Maharashtra 2022–23- Highlights, Directorate of Economics and Statistics, Department of Planning, Mumbai.

[24] El Benni, N., Finger, R., Mann, S., 2012. Effects of agricultural policy reforms and farm characteristics on income risk in Swiss agriculture. Agricultural Finance Review. 72(3), 301–324. DOI: https://doi.org/10.1108/00021461211277204

[25] Bard, S.K., 2000. Developing a scale for assessing risk attitudes of agricultural decision makers. The International Food and Agribusiness Management Review. 3(1), 9–25. DOI: https://doi.org/10.1016/s1096-7508(00)00024-0

[26] Sulewski, P., Kłoczko-Gajewska, A., 2014. Farmers’ risk perception, risk aversion and strategies to cope with production risk: An empirical study from Poland. Studies in Agricultural Economics. 116(3), 140–147. DOI: https://doi.org/10.7896/j.1414

[27] Hazell, P.B., 1992. The appropriate role of agricultural insurance in developing countries. Journal of International Development. 4(6), 567–581. DOI: https://doi.org/10.1002/jid.3380040602

[28] Glauber, J.W., 2013. The growth of the Federal Crop Insurance Program, 1990–2011, American Journal of Agricultural Economics. 95(2), 482–488. DOI: https://doi.org/10.1093/ajae/aas091

[29] Falco, S.D., Adinolfi, F., Bozzola, M., et al., 2014. Crop insurance as a strategy for adapting to climate change. Journal of Agricultural Economics. 65(2), 485–504. DOI: https://doi.org/10.1111/1477-9552.12053

[30] Dick, W.J., Wang, W., 2010. Government interventions in agricultural insurance. Agriculture and Agricultural Science Procedia. 1, 4–12. DOI: https://doi.org/10.1016/j.aaspro.2010.09.002

[31] Poulton, C., Dorward, A., Kydd, J., 2010. The future of small farms: New directions for services, institutions, and intermediation. World Development. 38(10), 1413–1428. DOI: https://doi.org/10.1016/j.worlddev.2009.06.009

[32] Chuang, Y., 2019. Climate variavility, rainfall shocks and farmers’ income diversification in India. Economics Letters. 174, 55–61. DOI: https://doi.org/10.1016/j.econlet.2018.10.015

[33] Zachariaah, M., Mondal, A., Das, M., et al., 2020. On the role of rainfall deficits and cropping choices in loss of agricultural yield in Marathwada, India. Environmental Research Letters, 15, 094029. DOI: https://doi.org/10.1088/1748-9326/ab93fc

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