Search Results - "GAVEAU, D. L. A"

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  1. 1

    Fire carbon emissions over maritime southeast Asia in 2015 largest since 1997 by Huijnen, V., Wooster, M. J., Kaiser, J. W., Gaveau, D. L. A., Flemming, J., Parrington, M., Inness, A., Murdiyarso, D., Main, B., van Weele, M.

    Published in Scientific reports (31-05-2016)
    “…In September and October 2015 widespread forest and peatland fires burned over large parts of maritime southeast Asia, most notably Indonesia, releasing large…”
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    Journal Article
  2. 2

    Industrial concessions, fires and air pollution in Equatorial Asia by Spracklen, D V, Reddington, C L, Gaveau, D L A

    Published in Environmental research letters (01-09-2015)
    “…Forest and peatland fires in Indonesia emit large quantities of smoke leading to poor air quality across Equatorial Asia. Marlier et al (2015 Environ. Res…”
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  3. 3

    Role of the Madden‐Julian Oscillation in the Transport of Smoke From Sumatra to the Malay Peninsula During Severe Non‐El Niño Haze Events by Koplitz, S. N., Mickley, L. J., Jacob, D. J., Marlier, M. E., DeFries, R. S., Gaveau, D. L. A., Locatelli, B., Reid, J. S., Xian, P., Myers, S. S.

    “…In June 2013, the Malay Peninsula experienced severe smoke pollution, with daily surface particulate matter (PM) concentrations in Singapore greater than…”
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  4. 4

    Quantifying Woodland Structure and Habitat Quality for Birds Using Airborne Laser Scanning by Hinsley, S. A., Hill, R. A., Gaveau, D. L. A., Bellamy, P. E.

    Published in Functional ecology (01-12-2002)
    “…1. Vegetation height across a 157-ha deciduous woodland was estimated using an airborne remote-sensing technique, airborne laser scanning (ALS), and the data…”
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  5. 5

    Examining protected area effectiveness in Sumatra: importance of regulations governing unprotected lands by Gaveau, D. L. A, Curran, L. M, Paoli, G. D, Carlson, K. M, Wells, P, Besse‐Rimba, A, Ratnasari, D, Leader‐Williams, N

    Published in Conservation letters (01-04-2012)
    “…Several studies suggest that protected areas conserve forests because deforestation rates are lower inside than outside protected area boundaries. Such…”
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  6. 6

    Quantifying forest above ground carbon content using LiDAR remote sensing by Patenaude, G., Hill, R.A, Milne, R., Gaveau, D.L.A., Briggs, B.B.J., Dawson, T.P.

    Published in Remote sensing of environment (01-11-2004)
    “…The UNFCCC and interest in the source of the missing terrestrial carbon sink are prompting research and development into methods for carbon accounting in…”
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  7. 7

    Modelling the dynamics of ERS-1/2 coherence with increasing woody biomass over boreal forests by Gaveau, D. L. A.

    Published in International journal of remote sensing (01-01-2002)
    “…In this study, changes in the temporal and volume contributions (| n | temporal, | n | volume ) to the observed ERS-1/2 coherence are modelled in response to…”
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  8. 8
  9. 9

    High-resolution global map of smallholder and industrial closed-canopy oil palm plantations by Descals, AdriÃ, Wich, Serge, Meijaard, Erik, Gaveau, David L. A, Peedell, Stephen, Szantoi, Zoltan

    Published in Earth system science data (24-03-2021)
    “…Oil seed crops, especially oil palm, are among the most rapidly expanding agricultural land uses, and their expansion is known to cause significant…”
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  10. 10

    Refined burned-area mapping protocol using Sentinel-2 data increases estimate of 2019 Indonesian burning by Gaveau, David L. A, Descals, AdriÃ, Salim, Mohammad A, Sheil, Douglas, Sloan, Sean

    Published in Earth system science data (18-11-2021)
    “…Many nations are challenged by landscape fires. A confident knowledge of the area and distribution of burning is crucial to monitor these fires and to assess…”
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  11. 11

    Global mapping of oil palm planting year from 1990 to 2021 by Descals, AdriÃ, Gaveau, David L. A, Wich, Serge, Szantoi, Zoltan, Meijaard, Erik

    Published in Earth system science data (06-11-2024)
    “…Oil palm is a controversial crop, primarily because it is associated with negative environmental impacts such as tropical deforestation. Mapping the crop and…”
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  12. 12

    High-resolution global map of closed-canopy coconut palm by Descals, AdriÃ, Wich, Serge, Szantoi, Zoltan, Struebig, Matthew J, Dennis, Rona, Hatton, Zoe, Ariffin, Thina, Unus, Nabillah, Gaveau, David L. A, Meijaard, Erik

    Published in Earth system science data (08-09-2023)
    “…Demand for coconut is expected to rise, but the global distribution of coconut palm has been studied little, which hinders the discussion of its impacts. Here,…”
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