Search Results - "carbon emission"

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  1. Carbon emissions from agricultural expansion and intensification in the Chaco by Baumann, Matthias, Gasparri, Néstor Ignacio, Piquer Rodriguez, María, Gavier Pizarro, Gregorio Ignacio, Griffiths, Patrick, Hostert, Patrick, Kuemmerle, Tobias

    Published 2019
    “…Carbon emissions from land‐use changes in tropical dry forest systems are poorly understood, although they are likely globally significant. …”
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    Artículo
  2. Future carbon emissions from global mangrove forest loss by Adame, M.F., Connolly, R.M., Turschwell, M.P., Lovelock, C.E., Fatoyinbo, T., Lagomasino, D., Goldberg, L.A., Holdorf, J., Friess, D.A., Sasmito, S.D., Sanderman, J., Sievers, M., Buelow, C., Kauffman, J.B., Bryan-Brown, D., Brown, C.J.

    Published 2021
    “…We integrated comprehensive global datasets for carbon stocks, mangrove distribution, deforestation rates, and land‐use change drivers into a predictive model of mangrove carbon emissions. We project emissions and foregone soil carbon sequestration potential under ‘business as usual’ rates of mangrove loss. …”
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    Journal Article
  3. Climate anomalies, Indonesian vegetation fires and terrestrial carbon emissions by Murdiyarso, Daniel, Adiningsih, E.S.

    Published 2007
    “…In this study, the terrestrial carbon emissions from vegetation fires were estimated based on official statistical data on area burnt. …”
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    Journal Article
  4. Profitability and implications of cocoa intensification on carbon emissions in southern Cameroun by Magne, A.N., Nonga, N.E., Yemefack, Martin, Robiglio, Valentina

    Published 2014
    “…The present study evaluated profitability of some models of cocoa farms and analyzed the relationship between cocoa yield, income and carbon stored in traditional cocoa agroforests to discuss implications of cocoa intensification on carbon emissions in Cameroun. Surveys on establishment, management practices and marketing were conducted in 49 cocoa farms along a gradient of population density, forest cover and market access, and combined with data on carbon stock and trees species inventories. …”
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    Journal Article
  5. Carbon emissions from land cover change in Central Vietnam by Avitabile, Valerio, Schultz, M., Herold, N., Bruin, S. de, Pratihast, A.K., Cuong, P.M., Hien, V.Q., Herold, Martin

    Published 2016
    “…The carbon emissions and removals due to land cover changes between 2001 and 2010 in the Vu Gia Thu Bon River Basin, Central Vietnam, were estimated using Landsat satellite images and 3083 forest inventory plots. …”
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    Journal Article
  6. Sensitivity of carbon emission estimates from indirect land-use change by Dumortier, Jerome, Hayes, Dermot J., Carriquiry, Miguel, Dong, Fengxia, Du, Xiaodong, Elobeid, Amani, Fabiosa, Jacinto F., Tokgoz, Simla

    Published 2011
    “…The results indicate that the impact of cropland expansion on carbon emissions is extremely sensitive to model assumptions. …”
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    Journal Article
  7. Global cost estimates of reducing carbon emissions through avoided deforestation by Kindermann, Georg, Obersteiner, Michael, Sohngen, B., Sathaye, J, Andrasko, K., Rametsteiner, E., Schlamadinger, B., Wunder, Sven, Beach, Robert H.

    Published 2008
    “…Tropical deforestation is estimated to cause about one-quarter of anthropogenic carbon emissions, loss of biodiversity, and other environmental services. …”
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    Journal Article
  8. Marginal abatement cost of agricultural carbon emissions in China: 1993-2015 by Wu, Xianrong, Zhang, Junbiao, You, Liangzhi

    Published 2018
    “…There is a trade-off between reducing carbon emission and increasing crop yields. Originality/value This study calculates agricultural MAC by using the shadow price approach, taking agricultural carbon emissions as undesired environmental output. …”
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    Journal Article
  9. Estimating Global "Blue Carbon" Emissions from Conversion and Degradation of Vegetated Coastal Ecosystems by Pendleton, L, Donato, D.C., Murray, B.C, Crooks, S., Jenkins, W.A, Sifleet, S, Craft, C, Fourqurean, J.W., Kauffman, J.B., Marbà, N, Megonigal, P, Pidgeon, E., Herr, D, Gordon, D., Baldera, A.

    Published 2012
    “…Although the relevant science supporting these initial estimates will need to be refined in coming years, it is clear that policies encouraging the sustainable management of coastal ecosystems could significantly reduce carbon emissions from the land-use sector, in addition to sustaining the well-recognized ecosystem services of coastal habitats.…”
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    Journal Article

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