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    The LCA4CSA framework: Using life cycle assessment to strengthen environmental sustainability analysis of climate smart agriculture options at farm and crop system levels

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    Authors
    Acosta-Alba, Ivonne
    Chia, Eduardo
    Andrieu, Nadine
    Date Issued
    2019-05
    Language
    en
    Type
    Journal Article
    ISI journal
    Accessibility
    Open Access
    Usage rights
    CC-BY-NC-ND-4.0
    Metadata
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    Citation
    Acosta-Alba I, Chia E, Andrieu N. 2019. The LCA4CSA framework: Using life cycle assessment to strengthen environmental sustainability analysis of climate smart agriculture options at farm and crop system levels. Agricultural Systems 171: 155-170.
    Permanent link to cite or share this item: https://hdl.handle.net/10568/99480
    DOI: https://doi.org/10.1016/j.agsy.2019.02.001
    Abstract/Description
    Climate Smart Agriculture (CSA) seeks to meet three challenges: improve the adaptation capacity of agricultural systems to climate change, reduce the greenhouse gas emissions of these systems, and ensure local and global food security. Many CSA assessment methods that consider these three challenges have emerged, but to better assess the environmental resilience of farming systems, other categories of environmental impacts beyond climate change need to be considered. To meet this need, we propose the LCA4CSA method, which was tested in southern Colombia for family farming systems including coffee, cane and small livestock production. This methodological framework is based on Life Cycle Assessment (LCA) and multi-criteria assessment methods. It integrates CSA-related issues through the definition of Principles, Criteria and Indicators, and involves farmers in the assessment of the effects of CSA practices. To reflect the complexity of farming systems, the method proposes a dual level of analysis: the farm and the main cash crop/livestock production system. After creating a typology of the farming systems, the initial situation is compared to the situation after the introduction of a CSA practice. In this case, the practice was the use of compost made from coffee processing residues. The assessment at the crop system level made it possible to quantify the mitigation potential related to the use of compost (between 22 and 41%) by taking into account operations that occur on and upstream of the farm. However, it showed that pollution transfers exist between impact categories, especially between climate change, acidification and terrestrial eutrophication indicators. The assessment made at the farming system level showed that farms with livestock units could further limit their emissions by modifying the feeding of animals due to the large quantities of imported cereals. The mitigation potential of compost was only 3% for these farms. This article demonstrates the merits of using life cycle thinking that can be used to inform stakeholder discussions concerning the implementation of CSA practices and more sustainable agriculture.
    CGIAR Author ORCID iDs
    Nadine Andrieuhttps://orcid.org/0000-0001-9558-9302
    Ivonne Acosta Albahttps://orcid.org/0000-0001-9693-5094
    Other CGIAR Affiliations
    Climate Change, Agriculture and Food Security
    AGROVOC Keywords
    climate change; food security; agriculture; climate smart agriculture
    Subjects
    CLIMATE-SMART TECHNOLOGIES AND PRACTICES;
    Countries
    Colombia
    Regions
    Latin America; South America
    Organizations Affiliated to the Authors
    Centre de Coopération Internationale en Recherche Agronomique pour le Développement; International Center for Tropical Agriculture; Université de Montpellier; Institut National de la Recherche Agronomique, France
    Collections
    • CCAFS Journal Articles [1251]
    • CIAT Articles in Journals [2636]
    • CIAT Decision and Policy Analysis - DAPA [620]

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