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    Impact of agricultural land conversion on climate change

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    Journal Article (1.057Mb)
    Authors
    Azadi, Hossein
    Taheri, Fatemeh
    Burkart, Stefan
    Mahmoudi, Hossein
    Maeyer, Philippe de
    Witlox, Frank
    Date Issued
    2021-03
    Date Online
    2020-04
    Language
    en
    Type
    Journal Article
    Review status
    Peer Review
    ISI journal
    Accessibility
    Open Access
    Usage rights
    Copyrighted; all rights reserved
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    Citation
    Azadi, H.; Taheri, F.; Burkart, S.; Mahmoudi, H.; De Maeyer, P.; Witlox, F. 2020. Impact of agricultural land conversion on climate change. Environment, Development and Sustainability 22:4. ISSN: 1387-585X 26 p.
    Permanent link to cite or share this item: https://hdl.handle.net/10568/108107
    DOI: https://doi.org/10.1007/s10668-020-00712-2
    Abstract/Description
    Climate change and land use conversion are two major global environmental issues. A claim is made that climate change has brought new challenges for global land use, while land use conversion is hardly realized as a major driver for climate change. Using mapping techniques, this study aims to investigate the relationship between climate change and agricultural land conversion (ALC), by which land is converted from agricultural to other uses (e.g., urban areas, national and natural parks, roads, industrial areas, and afforestation projects). CO2 emission is considered as the main impact of climate change, and agricultural land conversion is regarded as the most important global land use. In this study, data are obtained from two databases: the World Bank and the Food and Agriculture Organization (FAO) for the period of 1962–2011. Considering the FAO (2015) classification, the countries are categorized into five different groups (high-income non-OECD, high-income OECD, upper-middle-, lower-middle-, and low-income countries). Economies were divided into several income groups according to 2014 gross national income per capita. The results show that agricultural areas in high-income countries have decreased, while in low- to middle-income countries, they have increased. The highest CO2 emissions can be observed, especially in high-income countries, whereas the lowest CO2 emissions happen in the low- and lower-middle-income countries. The results further show that there is a positive relationship between CO2 emissions and ALC across the world. It can be observed that CO2 emission is increasing where agricultural area is declining. On the contrary, CO2 emission is declining where agricultural area is increasing.
    CGIAR Author ORCID iDs
    Stefan Burkarthttps://orcid.org/0000-0001-5297-2184
    AGROVOC Keywords
    global warming; calentamiento global; agriculture; agricultura; land; tierras; greenhouse gases; gases de efecto invernadero; land use change; cambio de uso de la tierra; land cover; cobertura de suelos
    Subjects
    TROPICAL FORAGES;
    Organizations Affiliated to the Authors
    Alliance of Bioversity International and CIAT; Ghent University; Czech University of Life Sciences; Shahid Beheshti University; Chinese Academy of Sciences; University of Tartu; Nanjing University of Aeronautics and Astronautics
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    • Alliance Bioversity CIAT Journal Articles [1099]

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