2018- CSA Monitoring – Olopa Climate Smart-Village (Guatemala)

dc.creatorBonilla Findji, Osana
dc.creatorEitzinger, Anton
dc.creatorAndrieu, Nadine
dc.creatorJarvis, Andrew
dc.creatorMartínez Barón, Deissy
dc.date2019-12-18
dc.date2019-12-18T20:00:59Z
dc.date2019-12-18T20:00:59Z
dc.date.accessioned2026-06-27T14:36:28Z
dc.descriptionThis dataset contains the files produced in the implementation of the “Integrated Monitoring Framework for Climate-Smart Agriculture” in the Olopa Climate Smart Village (Guatemala) in April 2018. This monitoring framework developed by CCAFS is meant to be deployed annually across the global network of Climate-Smart Villages to gather field-based evidence by tracking the progress on:
dc.descriptionAdoption of CSA practices and technologies, as well as access to climate information services and Their related impacts at household level (and farm level, in selected sites)
dc.descriptionThis framework proposes standard Descriptive Indicators to track changes in: 5 enabling dimensions that might affect adoption patterns, a set of 5 CORE indicators at Household level to assess perceived effects of CSA practices on Food Security, Productivity, Income and Climate vulnerability and 4 CORE indicators on Gender aspects (Participation in decision-making, Participation in implementation, Access/control over Resources and work time). At farm level, 7 CORE indicators are suggested to determine farms CSA performance, as well as synergies and trade-offs among the three pillars.
dc.descriptionThis integrated framework is associated with a cost-effective data collection App (Geofarmer) that allowed capturing information in almost real-time. The survey questionnaire is structured around different thematic modules (Demographic, Livelihoods, Food Security, Climate events, Climate Services, CSA practices, Financial Services) connected to standard CSA metrics and the specific indicators.
dc.descriptionThe framework responds to three main research questions: Within each CSV community, who adopts which CSA technologies and practices and what are their motivations, enabling/constraining factors? What are the gender-disaggregated perceived effects of CSA options on farmers’ livelihood (agricultural production, income, food security, food diversity and adaptive capacity) and on key gender dimensions (participation in decision-making, participation in CSA implementation and dis-adoption, control and access over resources and labor)? How does CSA perform at farm level, and what synergies and trade-offs exist (whole farm model analysis)?
dc.identifierhttps://hdl.handle.net/10568/106234
dc.identifier.urihttp://hdl.handle.net/123456789/83043
dc.languageen
dc.rightsOpen Access
dc.sourceBonilla-Findji, Osana; Eitzinger, Anton; Andrieu, Nadine; Jarvis, Andy; Martínez, Deissy, 2019, "2018- CSA Monitoring – Olopa Climate Smart-Village (Guatemala)", https://doi.org/10.7910/DVN/3GICDI, Harvard Dataverse, V1, UNF:6:UbBFdgSoWxKkL9HlRyIPsA== [fileUNF]. CCAFS Dataset. CGIAR Research Program on Climate Change, Agriculture and Food Security (CCAFS).
dc.subjectagriculture
dc.subjectfood security
dc.subjectclimate change
dc.subjectmonitoring
dc.subjectclimate-smart agriculture
dc.subjecthouseholds
dc.subjectlivelihoods
dc.subjectadaptation
dc.title2018- CSA Monitoring – Olopa Climate Smart-Village (Guatemala)
dc.typeDataset

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