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Resilience to hazards: rice farmers in the Mahanadi Delta, India

John M. Duncan, UWA School of Agriculture and Environment, University of Western Australia
Emma L. Tompkins, Geography and Environment, University of Southampton, UK
Jadunandan Dash, Geography and Environment, University of Southampton, UK.
Basundhara Tripathy, Wageningen School of Social Sciences (WASS), Wageningen University and Research

DOI: http://dx.doi.org/10.5751/ES-09559-220403

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Abstract

Developing country deltas are important food producing areas and are home to large numbers of subsistence farmers. In particular, rice farmers dominate the populous deltas of South and Southeast Asia and face frequent climate hazards that have short- and long-term impacts on rice production and livelihoods. The aim of this study is to identify and explain proximal and ultimate factors (land access, cultural practices, and institutional support) that affect rice farmer resilience, that is, to explain why some farmers are more sensitive to climate shocks, why some farmers suffer long-term impacts from climate shocks, and what underlying “ultimate” factors reproduce this vulnerability over time. We undertake this analysis using qualitative interviews and household survey data from two districts in the Mahanadi Delta, Odisha, India. We show that climate hazards cause rice production shocks that are problematic for farmers because rice is predominantly used for household consumption in a context of unreliable off-farm income sources and a lack of insurance and credit. Our research emphasizes that “ultimate” drivers interact with the current mode of rice cultivation to reproduce a low resilience farming state. We argue that agricultural development interventions seeking to make rice farming more resilient to climate hazards should focus on boosting productivity and shock-resistance, but also be cognizant of the system within which rice farming is practiced and the contextual “ultimate” factors that reproduce vulnerability.

Key words

climate shocks; deltas; resilience; rice farming

Copyright © 2017 by the author(s). Published here under license by The Resilience Alliance. This article  is under a Creative Commons Attribution-NonCommercial 4.0 International License.  You may share and adapt the work for noncommercial purposes provided the original author and source are credited, you indicate whether any changes were made, and you include a link to the license.

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