Ingeniería 30 (1): 59-74, enero-junio, 2020. ISSN: 2215-2652. San José, Costa Rica DOI 10.15517/ri.v30i1.38401
73
Derwent, R. G., Simmonds, P. G., O’Doherty, S. J., Manning, A. J. y Spain, T. G. (2019). A 24-Year Record of
High-Frequency, in situ, Observations of Hydrogen at the Atmospheric Research Station at Mace Head,
Ireland. Atmospheric Environment, 203, 28-34. https://doi.org/10.1016/j.atmosenv.2019.01.050
Djomo, A. N. y Chimi, C. D. (2017). Tree Allometric Equations for Estimation of Above, Below and Total Biomass
in a Tropical Moist Forest: Case Study with Application to Remote Sensing. Forest Ecology and Management,
391, 184-193. https://doi.org/10.1016/j.foreco.2017.02.022
Flagg, J. A. (2018). Carbon Neutral by 2021: The Past and Present of Costa Rica’s Unusual Political Tradition.
Sustainability, 10, 296. https://doi.org/10.3390/su10020296
Fournier, R. A. y Hall, R. J. (Eds.). (2017). Hemispherical Photography in Forest Science: Theory, Methods, Applications
(Vol. 28). Nueva York: Springer.
Glazyrina, I. P., Faleichik, L. M. y Yakovleva, K. A. (2015). Socioeconomic Effectiveness and “Green” Growth of Regional
Forest Use. Geography and Natural Resources, 36, 327-334. https://doi.org/10.1134/S1875372815040022
Hirose, Y., Kawata, S. y Matsumura, N. (2018). Forest Zoning Criteria in Conservation Forest: Case Study in Komono
Town, Mie Prefecture. Forest Resources and Mathematical Modeling, 17, 1-9. https://doi.org/10.15684/
formath.17.002
Houghton, R. A., Byers, B. y Nassikas, A. A. (2015). A Role for Tropical Forests in Stabilizing Atmospheric CO2.
Nature Climate Change, 5, 1022-1023. https://doi.org/10.1038/nclimate2869
Jucker, T., Caspersen, J., Chave, J., Antin, C., Barbier, N., Bongers, F., … y Coomes, D. A. (2017). Allometric Equations
for Integrating Remote Sensing Imagery into Forest Monitoring Programmes. Global Change Biology, 23, 177-
190. https://doi.org/1010.1111/gcb.13388
Kunert, N., El-Madany, T. S., Aparecido, L. M. T., Wolf, S. y Potvin, C. (2019). Understanding the Controls over Forest
Carbon Use Efciency on Small Spatial Scales: Effects of Forest Disturbance and Tree Diversity. Agricultural
and Forest Meteorology, 269-270, 136-144. https://doi.org/10.1016/j.agrformet.2019.02.007
Magnago, L. F. S., Rocha, M. F., Meyer, L., Martins, S. V. y Meira-Neto, J. A. A. (2015). Microclimatic Conditions at
Forest Edges Have Signicant Impacts on Vegetation Structure in Large Atlantic Forest Fragments. Biodiversity
and Conservation, 24, 2305-2318. https://doi.org/10.1007/s10531-015-0961-1
Muntean, M., Guizzardi, D., Schaff, E., Crippa, M., Solazzo, E., Olivier, J. G. J. y Vignatti, E. (2018). Fossil CO2
Emissions of all World Countries - 2018 Report. Bruselas, Bélgica: Publications Ofce of the European Union.
https://doi. org/10.2760/30158
Nguyen, H. H., Uria-Diez, J. y Wiegand, K. (2016). Spatial Distribution and Association Patterns in a Tropical
Evergreen Broad-Leaved Forest of North-Central Vietnam. Journal of Vegetation Science, 27, 318-327. https://
doi.org/10.1111/jvs.12361
Ojea, E., Loureiro, M. L., Alló, M. y Barrio, M. (2016). Ecosystem Services and REDD: Estimating the Benets
of Non-Carbon Services in Worldwide Forests. World Development, 78, 246-261. https://doi.org/10.1016/j.
worlddev.2015.10.002
Reiche, J., Lucas, R., Mitchell, A. L., Verbesselt, J., Hoekman, D. H., Haarpaintner, J., … y Herold, M. (2016).
Combining Satellite Data for Better Tropical Forest Monitoring. Nature Climate Change, 6, 120-122. https://
doi.org/10.1038/nclimate2919
Resolución R-27-2014. La Gaceta Universitaria, San Pedro de Montes de Oca, Costa Rica, 10 de febrero de 2014.
Rojas, C. y Calvo, E. (2014). Forest Biomass, Carbon Stocks and Macrofungal Dynamics: A Study Case in Costa Rica.
International Journal of Forestry Research, 607372. https://doi.org/10.1155/2014/607372.