Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Quantification of biophysical adaptation benefits from Climate-Smart Agriculture using a Bayesian Belief Network

Domaine:

agricultureclimate
Créateur:
PatNicGeoDav
Éditeur:
Spr
Hôte:
Abstract The need for smallholder farmers to adapt their practices to a changing climate is well recognised, particularly in Africa. The cost of adapting to climate change in Africa is estimated to be $20 to $30 billion per year, but the total amount pledged to finance adaptation falls significantly short of this requirement. The difficulty of assessing and monitoring when adaptation is achieved is one of the key barriers to the disbursement of performance-based adaptation finance. To demonstrate the potential of Bayesian Belief Networks for describing the impacts of specific activities on climate change resilience, we developed a simple model that incorporates climate projections, local environmental data, information from peer-reviewed literature and expert opinion to account for the adaptation benefits derived from Climate-Smart Agriculture activities in Malawi. This novel approach allows assessment of vulnerability to climate change under different land use activities and can be used to identify appropriate adaptation strategies and to quantify biophysical adaptation benefits from activities that are implemented. We suggest that multiple-indicator Bayesian Belief Network approaches can provide insights into adaptation planning for a wide range of applications and, if further explored, could be part of a set of important catalysts for the expansion of adaptation finance.

Visit

doi.org

Licenses

https://creativecommons.org/licenses/by/4.0https://creativecommons.org/licenses/by/4.0

Similaires

The value and benefits of using seasonal climate forecasts in agriculture: evidence from cowpea and sesame sectors in climate-smart villages of Burkina FasoInfluences of religious belief and cultural values and norms on climate-smart agriculture (CSA) adoption: Insights from Northern Ghana.Making climate-smart agriculture “plan-able”: Evidence from district-level adaptation planning in TanzaniaConservation agriculture and drought-tolerant germplasm: Reaping the benefits of climate-smart agriculture technologies in central MozambiqueClimate smart agriculture for Africa: the potential role of conservation agriculture in climate smart agriculture.Bayesian belief network modelling of household food security in rural South Africa

The value and benefits of using seasonal climate forecasts in agriculture: evidence from cowpea and sesame sectors in climate-smart villages of Burkina Faso

Influences of religious belief and cultural values and norms on climate-smart agriculture (CSA) adoption: Insights from Northern Ghana.

How do cultural and traditional norms, values, beliefs, and religious legacies serve as a barrier an

Making climate-smart agriculture “plan-able”: Evidence from district-level adaptation planning in Tanzania

Climate-smart agriculture (CSA) has emerged as a central policy response to the impacts of climate c

Conservation agriculture and drought-tolerant germplasm: Reaping the benefits of climate-smart agriculture technologies in central Mozambique

Abstract Conservation agriculture (CA) based on minimum soil disturbance, crop residue retention an

Climate smart agriculture for Africa: the potential role of conservation agriculture in climate smart agriculture.

Abstract To achieve the challenges raised in Agenda 2063 and the Malabo Declaration, new a

Bayesian belief network modelling of household food security in rural South Africa

Abstract Background Achieving food security remains a key challenge for public policy throughout the