2003American Journal of Agricultural EconomicsRequires access

An Optimal Control Model of Forest Carbon Sequestration

Brent Sohngen, Robert Mendelsohn

Open publisher page 426 citations

Abstract

This study develops an optimal control model of carbon sequestration and energy abatement to explore the potential role of forests in greenhouse gas mitigation. The article shows that if carbon accumulates in the atmosphere, the rental price for carbon sequestration should rise over time. From an empirical model, we find that carbon sequestration is costly, but that landowners can sequester substantial amounts of carbon in forests mainly by increasing forestland and lengthening rotations. Forest sequestration is predicted to account for about one‐third of total carbon abatement. Tropical forests store over two‐thirds of this added carbon.

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What this paper is about

This study develops an optimal control model of carbon sequestration and energy abatement to explore the potential role of forests in greenhouse gas mitigation. The article shows that if carbon accumulates in the atmosphere, the rental price for carbon sequestration should rise over time. From an empirical model, we find that carbon sequestration is costly, but that landowners can sequester substantial amounts of carbon in forests mainly by increasing forestland and lengthening rotations. Forest sequestration is predicted to account for about one‐third of total carbon abatement. Tropical forests store over two‐thirds of this added carbon.

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OpenAlex reports 426 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This study develops an optimal control model of carbon sequestration and energy abatement to explore the potential role of forests in greenhouse gas mitigation. The article shows that if carbon accumulates in the atmosphere, the rental price for carbon sequestration should rise over time. From an empirical model, we find that carbon sequestration is costly, but that landowners can sequester substantial amounts of carbon in forests mainly by increasing forestland and lengthening rotations. Forest sequestration is predicted to account for about one‐third of total carbon abatement. Tropical forests store over two‐thirds of this added carbon.

Key concepts: Carbon sequestration, Greenhouse gas, Carbon fibers, Environmental science, Atmospheric carbon cycle, Natural resource economics, Greenhouse gas removal, Climate change mitigation

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