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Methodologies for the Sustainability Assessment of Agricultural Production Systems, with a Focus on Rice: A Review

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  • Olfa Gharsallah

    (Department of Agricultural and Environmental Sciences—Production, Landscape, Agroenergy, Università degli Studi di Milano, Via Celoria 2, 20133 Milan, Italy)

  • Claudio Gandolfi

    (Department of Agricultural and Environmental Sciences—Production, Landscape, Agroenergy, Università degli Studi di Milano, Via Celoria 2, 20133 Milan, Italy)

  • Arianna Facchi

    (Department of Agricultural and Environmental Sciences—Production, Landscape, Agroenergy, Università degli Studi di Milano, Via Celoria 2, 20133 Milan, Italy)

Abstract

The intensification of agricultural production is connected to the increased use of fertilizers, pesticides, irrigation water, and energy. Among all cropping systems, rice cultivation is considered to be one of the most significant sources of environmental harm due to the flooding conditions in which rice normally grows; at the same time, rice has important economic and social implications, especially in areas where it is a staple food. In the last 20 years, sustainable development of agricultural production has become a priority for scientific research and policy programs. Several studies proposed methodological frameworks to assess the impacts of different management practices adopted in agro-ecosystems and to identify strategies to mitigate the negative effects of agricultural intensification. Such methodologies are based on the use of particular indicators, which are increasingly seen as crucial tools in impact assessment studies and for decision making. This paper aims to review and analyze the most significant methodological frameworks developed to assess the sustainability of agricultural production systems, with a particular focus on rice cultivation. The analysis includes highlighting which dimensions of sustainability (economic, environmental, social, and governance) are covered by each method and identifying which indicators are used to describe the different dimensions. The spatial scale of the application of the indicators, their typology, the data needed for their implementation, and the criteria for formulating the overall sustainability judgment were then examined. The analysis highlighted the scarce availability of clear operational data for the calculation of the indicators and the often-limited involvement of stakeholders in the development and implementation of the methodologies. The exceptions to these limitations are represented by a few methodologies developed under the umbrella of important international organizations to promote sustainability and research efficiency in specific agricultural production systems, such as the SRP (sustainable rice platform) for rice. Finally, the analysis shows that there is a need to develop methodologies that are applicable not only to an individual farm or group of farms, but also at larger spatial scales (district, watershed, region), which are often those of greatest interest to decision makers.

Suggested Citation

  • Olfa Gharsallah & Claudio Gandolfi & Arianna Facchi, 2021. "Methodologies for the Sustainability Assessment of Agricultural Production Systems, with a Focus on Rice: A Review," Sustainability, MDPI, vol. 13(19), pages 1-16, October.
  • Handle: RePEc:gam:jsusta:v:13:y:2021:i:19:p:11123-:d:651916
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    References listed on IDEAS

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    1. Siavash Fallah-Alipour & Hossein Mehrabi Boshrabadi & Mohammad Reza Zare Mehrjerdi & Dariush Hayati, 2018. "A Framework for Empirical Assessment of Agricultural Sustainability: The Case of Iran," Sustainability, MDPI, vol. 10(12), pages 1-26, December.
    2. Alauddin, Mohammad & Quiggin, John, 2008. "Agricultural intensification, irrigation and the environment in South Asia: Issues and policy options," Ecological Economics, Elsevier, vol. 65(1), pages 111-124, March.
    3. Reed, Mark S. & Fraser, Evan D.G. & Dougill, Andrew J., 2006. "An adaptive learning process for developing and applying sustainability indicators with local communities," Ecological Economics, Elsevier, vol. 59(4), pages 406-418, October.
    4. Frédéric Zahm & Philippe Viaux & Lionel Vilain & Philippe Girardin & Christian Mouchet & Fritz J. Häni & Laszlo Pintér & Hans R. Herren & . International Institute For Sustainable Development, 2006. "Farm Sustainability Assessment using the IDEA Method. From the concept of farm sustainability to case studies on French farms," Post-Print hal-02278989, HAL.
    5. Ranjan Roy & Ngai Weng Chan, 2012. "An assessment of agricultural sustainability indicators in Bangladesh: review and synthesis," Environment Systems and Decisions, Springer, vol. 32(1), pages 99-110, March.
    6. C.J. Barrow & N.W. Chan & Tarmiji Bin Masron, 2008. "Evolving more sustainable agriculture in the Cameron Highlands, Malaysia," International Journal of Agricultural Resources, Governance and Ecology, Inderscience Enterprises Ltd, vol. 7(6), pages 450-468.
    7. Sauvenier, Xavier & Valckx, Jan & Van Cauwenbergh, Nora & Wauters, Erwin & Bachev, Hrabrin & Biala, K. & Bielders, Charles & Brouckaert, Veronique & Garcia-Cidad, V. & Goyens, S. & Hermy, Martin & Mat, 2005. "Framework for assessing sustainability levels in Belgium agricultural systems - SAFE," MPRA Paper 99616, University Library of Munich, Germany.
    8. Matty Demont & Pieter Rutsaert, 2017. "Restructuring the Vietnamese Rice Sector: Towards Increasing Sustainability," Sustainability, MDPI, vol. 9(2), pages 1-15, February.
    9. Rasul, Golam & Thapa, Gopal B., 2004. "Sustainability of ecological and conventional agricultural systems in Bangladesh: an assessment based on environmental, economic and social perspectives," Agricultural Systems, Elsevier, vol. 79(3), pages 327-351, March.
    10. A. Atiq Rahman, Mozaharul Alam, Sarder Shafiqul Alam, Md. Rabi Uzzaman, Mariam Rashid and Golam Rabbani, 2007. "Risks, Vulnerability and Adaptation in Bangladesh," Human Development Occasional Papers (1992-2007) HDOCPA-2007-13, Human Development Report Office (HDRO), United Nations Development Programme (UNDP).
    11. Wieck, Christine & Hausmann, Isabell, 2019. "Indicators everywhere: The new accountability of agricultural policy?," 172nd EAAE Seminar, May 28-29, 2019, Brussels, Belgium 289722, European Association of Agricultural Economists.
    12. Hani, Fritz & Braga, Francesco S. & Stampfli, Andreas & Keller, Thomas & Fischer, Matthew & Porsche, Hans, 2003. "RISE, a Tool for Holistic Sustainability Assessment at the Farm Level," International Food and Agribusiness Management Review, International Food and Agribusiness Management Association, vol. 6(4), pages 1-13.
    13. Haorui Chen & Zhanyi Gao & Wenzhi Zeng & Jing Liu & Xiao Tan & Songjun Han & Shaoli Wang & Yongqing Zhao & Chengkun Yu, 2017. "Scale Effects of Water Saving on Irrigation Efficiency: Case Study of a Rice-Based Groundwater Irrigation System on the Sanjiang Plain, Northeast China," Sustainability, MDPI, vol. 10(1), pages 1-18, December.
    14. van Ittersum, Martin K. & Ewert, Frank & Heckelei, Thomas & Wery, Jacques & Alkan Olsson, Johanna & Andersen, Erling & Bezlepkina, Irina & Brouwer, Floor & Donatelli, Marcello & Flichman, Guillermo & , 2008. "Integrated assessment of agricultural systems - A component-based framework for the European Union (SEAMLESS)," Agricultural Systems, Elsevier, vol. 96(1-3), pages 150-165, March.
    15. Paracchini, Maria Luisa & Bulgheroni, Claudia & Borreani, Giorgio & Tabacco, Ernesto & Banterle, Alessandro & Bertoni, Danilo & Rossi, Graziano & Parolo, Gilberto & Origgi, Roberto & De Paola, Claudio, 2015. "A diagnostic system to assess sustainability at a farm level: The SOSTARE model," Agricultural Systems, Elsevier, vol. 133(C), pages 35-53.
    16. Tzilivakis, J. & Warner, D.J. & May, M. & Lewis, K.A. & Jaggard, K., 2005. "An assessment of the energy inputs and greenhouse gas emissions in sugar beet (Beta vulgaris) production in the UK," Agricultural Systems, Elsevier, vol. 85(2), pages 101-119, August.
    17. Palis, Florencia G. & Singleton, Grant R. & Casimero, Madonna C. & Hardy, Bill (ed.), 2010. "Research to Impact: Case Studies for Natural Resource Management for Irrigated Rice in Asia," IRRI Books, International Rice Research Institute (IRRI), number 164479.
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