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Climate change impacts on rainfed cropping production systems in the tropics and the case of smallholder farms in North-west Cambodia

Author

Listed:
  • Van Touch

    (University of New England)

  • Robert John Martin

    (Agricultural Systems Research Co. Ltd.)

  • Fiona Scott

    (Tamworth Agricultural Institute)

  • Annette Cowie

    (Beef Industry Centre)

  • De Li Liu

    (Wagga Wagga Agricultural Institute)

Abstract

The consequences of climate change on smallholder farms are locally specific and difficult to quantify because of variations in farming systems, complexity of agricultural and non-agricultural livelihood activities and climate-related vulnerability. One way to better understand the issues is to learn from the experiences of farmers themselves. Thus, this study aimed to better understand rainfed upland cropping systems in NW Cambodia and to identify practical, social and economic constraints to adoption of known climate adaptation options applicable to local agro-ecosystems. The study also sought to document the climate change perceptions and adaptation options employed by farmers to mitigate the climate risks. A household survey was conducted in the districts of Sala Krau and Samlout in North-west Cambodia in 2013 where 390 representatives of households were randomly selected for interviews, group discussions and field observations. The majority of respondents perceived that changes had occurred in the rainfall pattern such as a later start to the monsoon season, decreasing annual rainfall, increasing frequencies of drought and dry spells, and warmer temperatures. Farmers reported reductions in crop yields of 16–27 % over the five-year period of 2008–2012. However, these reductions were not evident in provincial data for the same period. Farmers claimed climate impacts resulted in significant yield reductions, but they appear not to have an effective strategy to adapt to the changes in climate. Further regional research is required to refine climate change adaptation strategies for rainfed upland cropping systems in Cambodia.

Suggested Citation

  • Van Touch & Robert John Martin & Fiona Scott & Annette Cowie & De Li Liu, 2017. "Climate change impacts on rainfed cropping production systems in the tropics and the case of smallholder farms in North-west Cambodia," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 19(5), pages 1631-1647, October.
  • Handle: RePEc:spr:endesu:v:19:y:2017:i:5:d:10.1007_s10668-016-9818-3
    DOI: 10.1007/s10668-016-9818-3
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    References listed on IDEAS

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    1. Kurukulasuriya, Pradeep & Mendelsohn, Robert, 2008. "A Ricardian analysis of the impact of climate change on African cropland," African Journal of Agricultural and Resource Economics, African Association of Agricultural Economists, vol. 2(1), pages 1-23, March.
    2. Ekasingh, Benchaphun & Gypmantasiri, Phrek & Thong-Ngam, Kuson & Grudloyma, Pichet, 2004. "Maize in Thailand: Production Systems, Constraints, and Research Priorities," Maize Production Systems Papers 7649, CIMMYT: International Maize and Wheat Improvement Center.
    3. Belay Kassie & Senthold Asseng & Reimund Rotter & Huib Hengsdijk & Alex Ruane & Martin Ittersum, 2015. "Exploring climate change impacts and adaptation options for maize production in the Central Rift Valley of Ethiopia using different climate change scenarios and crop models," Climatic Change, Springer, vol. 129(1), pages 145-158, March.
    4. De Liu & Heping Zuo, 2012. "Statistical downscaling of daily climate variables for climate change impact assessment over New South Wales, Australia," Climatic Change, Springer, vol. 115(3), pages 629-666, December.
    5. Esteve, Paloma & Varela-Ortega, Consuelo & Blanco-Gutiérrez, Irene & Downing, Thomas E., 2015. "A hydro-economic model for the assessment of climate change impacts and adaptation in irrigated agriculture," Ecological Economics, Elsevier, vol. 120(C), pages 49-58.
    6. Arief Anshory Yusuf & Herminia Francisco, 2009. "Climate Change Vulnerability Mapping for Southeast Asia," EEPSEA Special and Technical Paper tp200901s1, Economy and Environment Program for Southeast Asia (EEPSEA), revised Jan 2009.
    7. Deepak K. Ray & James S. Gerber & Graham K. MacDonald & Paul C. West, 2015. "Climate variation explains a third of global crop yield variability," Nature Communications, Nature, vol. 6(1), pages 1-9, May.
    8. Sawon Anik & Mohammed Khan, 2012. "Climate change adaptation through local knowledge in the north eastern region of Bangladesh," Mitigation and Adaptation Strategies for Global Change, Springer, vol. 17(8), pages 879-896, December.
    9. Seo, Niggol & Mendelsohn, Robert, 2007. "A Ricardian analysis of the impact of climate change on Latin American farms," Policy Research Working Paper Series 4163, The World Bank.
    10. Julius Kotir, 2011. "Climate change and variability in Sub-Saharan Africa: a review of current and future trends and impacts on agriculture and food security," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 13(3), pages 587-605, June.
    11. Younes Ben Zaied & Nidhaleddine Ben Cheikh, 2015. "Long-Run Versus Short-Run Analysis of Climate Change Impacts on Agricultural Crops," Post-Print halshs-01183089, HAL.
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    Cited by:

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    2. Qingxia Wang & Yim Soksophors & Angelica Barlis & Shahbaz Mushtaq & Khieng Phanna & Cornelis Swaans & Danny Rodulfo, 2022. "Willingness to Pay for Weather-Indexed Insurance: Evidence from Cambodian Rice Farmers," Sustainability, MDPI, vol. 14(21), pages 1-17, November.
    3. Archana Raghavan Sathyan & Christoph Funk & Thomas Aenis & Lutz Breuer, 2018. "Climate Vulnerability in Rainfed Farming: Analysis from Indian Watersheds," Sustainability, MDPI, vol. 10(9), pages 1-27, September.
    4. Atiek Widayati & Bastiaan Louman & Elok Mulyoutami & Edi Purwanto & Koen Kusters & Roderick Zagt, 2021. "Communities’ Adaptation and Vulnerability to Climate Change: Implications for Achieving a Climate-Smart Landscape," Land, MDPI, vol. 10(8), pages 1-20, August.

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