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.

Carbon footprints and carbon stocks reveal climate-friendly coffee production

Domaine:

agricultureclimateenvironment and energy

Type de record:

paper
Créateur:
RikSchLädRod
Éditeur:
CCSDSpr
Hôte:avatar
International audience Coffee production is impacting the climate by emitting greenhouse gasses. Coffee production is also vulnerable to climate change. As a consequence, the coffee sector is interested in climate-friendly forms of coffee production, but there is no consensus of what exactly this implies. Therefore, we studied two aspects of the climate impact of coffee production: the standing carbon stocks in the production systems and the product carbon footprint, which measures the greenhouse gas emissions per unit weight of coffee produced. We collected data from 116 coffee farms in five Latin American countries, Mexico, Guatemala, Nicaragua, El Salvador, and Colombia, for four coffee production systems: (1) traditional polycultures, (2) commercial polycultures, (3) shaded monocultures, and (4) unshaded monocultures. We found that polycultures have a lower mean carbon footprint, of 6.2–7.3 kg CO2-equivalent kg−1 of parchment coffee, than monocultures, of 9.0–10.8 kg. We also found that traditional polycultures have much higher carbon stocks in the vegetation, of 42.5 Mg per ha, than unshaded monocultures, of 10.5 Mg. We designed a graphic system to classify production systems according to their climate friendliness. We identified several strategies to increase positive and reduce negative climate impacts of coffee production. Strategies include diversification of coffee farms with trees, the use of their wood to substitute for fossil fuel and energy-intensive building materials, the targeted use of fertilizer, and the use of dry or ecological processing methods for coffee instead of the traditional fully washed process.

Visit

hal.science

Tags

Climate changeCoffee agroforestryCoffee ecosystem conservationCool Farm Tool softwareProduct carbon footprintSystem carbon stocksCarbon sequestration[SDV.SA]Life Sciences [q-bio]/Agricultural sciences[SDV.EE]Life Sciences [q-bio]/Ecology, environment

Licenses

info:eu-repo/semantics/OpenAccess

Similaires

Uncertainties of climate and CO2 impacts on carbon stocks and biome distribution in Africawangechi01-a/Carbon-Footprints-For-Industries-in-KenyaRegional Adjustment of iSDA Carbon for Estimation of Current and Potential Soil Carbon StocksBiomass and Carbon Stocks of Sofala Bay Mangrove ForestsSoil Organic Carbon and Nitrogen Stocks Following Land Use Changes in a Sub-Humid ClimateMapping soil organic carbon stocks in Tunisian topsoils

Uncertainties of climate and CO2 impacts on carbon stocks and biome distribution in Africa

<p>Climate change is expected to cause vegetation change in Africa, with profound impa

wangechi01-a/Carbon-Footprints-For-Industries-in-Kenya

# Industrial Carbon Calculator for Kenya ## Overview The **Industrial Carbon Calculator** is a Str

Regional Adjustment of iSDA Carbon for Estimation of Current and Potential Soil Carbon Stocks

Workflow and results accompanying Ewing et al., 2023. Smallholder farms have and can store

Biomass and Carbon Stocks of Sofala Bay Mangrove Forests

Mangroves could be key ecosystems in strategies addressing the mitigation of climate changes through

Soil Organic Carbon and Nitrogen Stocks Following Land Use Changes in a Sub-Humid Climate

There has been an incessant conversion of natural forests to agricultural land uses such as farmland

Mapping soil organic carbon stocks in Tunisian topsoils

International audience Better knowledge of the amount and spatial distribution of soi