Folio
Sign inStart free

Folio Search · free preview

Papers on “deforestation land use carbon emissions”

Live results from Semantic Scholar, CrossRef and OpenAlex — no account needed to look.

  1. Dynamic impacts of energy use, agricultural land expansion, and deforestation on CO2 emissions in Malaysia

    A. Raihan, R. Begum, M. Nizam, et al. · 2022 · Environmental and Ecological Statistics · 153 cites

    This study empirically investigates the nexus among energy use, agricultural land expansion, deforestation, and carbon dioxide (CO2) emissions in Malaysia. Time series data from 1990 to 2019 were utilized using the bounds testing (ARDL) approach followed by the Dynamic Ordinary Least Squares (DOLS) method. The DOLS estimate findings show that the energy usage coefficient is positive and significant with CO2 emissions, indicating a 1% increase in energy consumption is related to a 0.91% rise in CO2 emissions. In addition, the coefficient of agricultural land is positive, which indicates that agricultural land expansion by 1% is associated with an increase in CO2 emissions by 0.84% in the long

  2. Carbon dynamics and land use carbon footprints in mangrove-converted aquaculture: The case of the Mahakam Delta, Indonesia

    Virni Budi Arifantia, J. Kau, Mana, et al. · 2019 · Forest Ecology and Management · 120 cites

    Abstract Mangroves provide a number of important ecosystem services to humanity but their persistence is threatened from deforestation, conversion, and climate change. The Mahakam Delta was once among the largest mangrove forests in Southeast Asia comprising 2% of Indonesia’s total mangroves. Currently, about 62% of this extensive mangrove in the Mahakam Delta has been lost mainly due to conversion into aquaculture. To understand the impacts of mangrove conversion on carbon losses and therefore their values in climate change mitigation, we sampled 10 intact mangroves and 10 abandoned shrimp ponds to quantify: (1) the total ecosystem carbon stocks; (2) potential CO2 emissions arising from man

  3. A new estimation of carbon emissions from land use and land cover change in China over the past 300 years.

    Fan Yang, Fanneng He, Shi-Cheng Li, et al. · 2022 · The Science of the total environment · 83 cites

    Scientific estimation of carbon emissions induced by historical land use and land cover change (LUCC) can improve the accuracy of terrestrial ecosystem carbon budget estimates and deepen understanding of the future carbon-sink potential of terrestrial ecosystems. The present study, using historical-document-based data for provincial cropland, forest, and grassland area in China, and experimental-data-based information for provincial vegetation and soil organic carbon density, re-estimates China's LUCC-induced carbon emissions for 1700-1980 using a bookkeeping model in which we updated tabulated functions for carbon losses and gains. The past 300 years have witnessed a dramatic LUCC in China.

  4. Annual emissions of carbon from land use, land-use change, and forestry from 1850 to 2020

    R. Houghton, A. Castanho · 2023 · Earth System Science Data · 72 cites

    Abstract. Estimates of the annual emissions of carbon from land use, land-use change, and forestry (LULUCF) are important for constructing global, regional, and national carbon budgets, which in turn help predict future rates of climate change and define potential strategies for mitigation. Here, we update a long-term (1850–2020) series of annual national carbon emissions resulting from LULUCF (https://doi.org/10.7910/DVN/U7GHRH, Houghton and Castanho, 2023), based largely, after 1960, on statistics of land use from the Food and Agriculture Organization (FAO) of the United Nations (http://www.fao.org/faostat/en/#data/, FAO, 2021). Those data suggest that rates of deforestation in the tropics

These are the first 8. There are millions more.

A free account opens every result across all sources — plus saving to your library, one-click citations, and AI synthesis of what you found. The search itself stays free.

See all results free →

Already have an account? Sign in