CIFOR-ICRAF aborda retos y oportunidades locales y, al mismo tiempo, ofrece soluciones a los problemas globales relacionados con los bosques, los paisajes, las personas y el planeta.

Aportamos evidencia empírica y soluciones prácticas para transformar el uso de la tierra y la producción de alimentos: conservando y restaurando ecosistemas, respondiendo a las crisis globales del clima, la malnutrición, la pérdida de biodiversidad y la desertificación. En resumen, mejorando la vida de las personas.

CIFOR-ICRAF produce cada año más de 750 publicaciones sobre agroforestería, bosques y cambio climático, restauración de paisajes, derechos, políticas forestales y mucho más, y en varios idiomas. .

CIFOR-ICRAF aborda retos y oportunidades locales y, al mismo tiempo, ofrece soluciones a los problemas globales relacionados con los bosques, los paisajes, las personas y el planeta.

Aportamos evidencia empírica y soluciones prácticas para transformar el uso de la tierra y la producción de alimentos: conservando y restaurando ecosistemas, respondiendo a las crisis globales del clima, la malnutrición, la pérdida de biodiversidad y la desertificación. En resumen, mejorando la vida de las personas.

CIFOR–ICRAF publishes over 750 publications every year on agroforestry, forests and climate change, landscape restoration, rights, forest policy and much more – in multiple languages.

CIFOR–ICRAF addresses local challenges and opportunities while providing solutions to global problems for forests, landscapes, people and the planet.

We deliver actionable evidence and solutions to transform how land is used and how food is produced: conserving and restoring ecosystems, responding to the global climate, malnutrition, biodiversity and desertification crises. In short, improving people’s lives.

A Review of Models for Simulating Carbon Dynamics in Forests and Agroforestry System

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Forests store large amounts of carbon (C) and significantly influence global C cycles. However, forest ecosystems are highly vulnerable to anthropogenic disturbances such as deforestation and agricultural expansion. Changes in forest cover affect the C stocks stored in forest biomass and soil. Modelling approaches can help to accurately estimate C emissions and give some insights to aid decision processes related to C management strategies and interventions. In this study, a scoping review was carried out to find a suitable model that can simulate C dynamics in five major pools defined by the Intergovernmental Panel on Climate Change (IPCC). Based on the findings, there are at least seven existing C models that fulfill the IPCC criteria, including CAMFor, CBM-CFS3, CENTURY, CLM, CO2Fix, EX-ACT, and FullCAM. A comparative review is conducted for each of these models based on the model structure, required parameters, produced output, performance, and applicability, including for forestry and agroforestry assessments. Furthermore, a decision tree is also given to help potential users in choosing available models for C monitoring. EX-ACT can provide C estimation based on mitigation project scenarios, which can be useful for project planning activities. CAMFor, CBM-CFS3, and FullCAM are applicable to forest C accounting, while CO2Fix can be used for C assessment in both forests and agroforestry systems. CENTURY might perform better for soil C assessment compared with other models. On the other hand, CLM is more commonly used for regional to global C assessment than for smaller scale applications. Except for EX-ACT, all models can provide C estimation in finer detail than the five C pools used by IPCC.
    Año de publicación

    2018

    Autores

    Seta, G.A.

    Idioma

    English

    Palabras clave

    agroforestry, carbon sequestration, climate change, carbon cycle, biomass

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