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Modeling the Carbon Sequestration Potential of Multifunctional Agroforestry-Based Phytoremediation (MAP) Systems in Chinandega, Nicaragua
Stockholms universitet.ORCID iD: 0000-0003-3424-3847
Mid Sweden University, Faculty of Science, Technology and Media, Department of Ecotechnology and Suistainable Building Engineering. Stockholms universitet.
AB Hjortens Laboratorium, Östersund, Sweden.
Mid Sweden University, Faculty of Science, Technology and Media, Department of Ecotechnology and Suistainable Building Engineering.ORCID iD: 0000-0001-5796-6672
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2022 (English)In: Sustainability, E-ISSN 2071-1050, Vol. 14, no 9, article id 4932Article in journal (Refereed) Published
Sustainable development
Hållbar utveckling
Abstract [en]

Global sustainability challenges associated with increasing resource demands from a growing population call for resource-efficient land-use strategies that address multiple sustainability issues. Multifunctional agroforestry-based phytoremediation (MAP) is one such strategy that can simultaneously capture carbon, decontaminate soils, and provide diverse incomes for local farmers. Chinandega, Nicaragua, is a densely populated agricultural region with heavily polluted soils. Four different MAP systems scenarios relevant to Chinandega were created and carbon sequestration potentials were calculated using CO2FIX. All scenarios showed the potential to store significantly more carbon than conventional farming practices, ranging from 2.5 to 8.0 Mg CO2eq ha−1 yr−1. Overall, carbon sequestration in crops is relatively small, but results in increased soil organic carbon (SOC), especially in perennials, and the combination of crops and trees provide higher carbon sequestration rates than monoculture. Changes in SOC are crucial for long-term carbon sequestration, here ranging between 0.4 and 0.9 Mg C ha−1 yr−1, with the most given in scenario 4, an alley cropping system with pollarded trees with prunings used as green mulch. The adoption rate of multifunctional strategies providing both commodity and non-commodity outputs, such as carbon sequestration, would likely increase if phytoremediation is included. Well-designed MAP systems could help reduce land-use conflicts, provide healthier soil, act as climate change mitigation, and have positive impacts on local health and economies. 

Place, publisher, year, edition, pages
MDPI, 2022. Vol. 14, no 9, article id 4932
Keywords [en]
phytoremediation, carbon sequestration, multifunctional land use, nature-based solution, agroforestry, climate change mitigation
National Category
Environmental Sciences
Identifiers
URN: urn:nbn:se:miun:diva-44883DOI: 10.3390/su14094932ISI: 000795387500001Scopus ID: 2-s2.0-85129212297OAI: oai:DiVA.org:miun-44883DiVA, id: diva2:1653798
Available from: 2022-04-25 Created: 2022-04-25 Last updated: 2025-09-25Bibliographically approved

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Bergqvist, LisaHaller, HenrikJonsson, Anders

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Kåresdotter, ElisieBergqvist, LisaHaller, HenrikJonsson, Anders
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