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Research Article

REDD+: The Opportunity for Sustainable Management in Zagros Forests

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References

  • Almeida, C. A. D., Coutinho, A. C., Esquerdo, J. C. D. M., Adami, M., Venturieri, A., Diniz, C. G., Dessay, N., Durieux, L., & Gomes, A. R. (2016). High spatial resolution land use and land cover mapping of the Brazilian Legal Amazon in 2008 using Landsat-5/TM and MODIS data. Acta Amazonica, 46(3), 291–302. https://doi.org/10.1590/1809-4392201505504
  • Arekhi, S., Jafarzadeh, A. A., & Yousefi, S. (2012). Modeling deforestation using logistic regression, GIS and RS case study: Northern forests of the Ilam province. Journal of Geography and Development, 10(29), 31–42. doi:10.22092/IJFRPR.2015.11136.
  • Armenteras, D., Murcia, U., González, T. M., Barón, O. J., & Arias, J. E. (2019). Scenarios of land use and land cover change for NW Amazonia: Impact on forest intactness. Global Ecology and Conservation, 17(2019), e00567. https://doi.org/10.1016/j.gecco.2019.e00567
  • Ayele, G., Hayicho, H., & Alemu, M. (2019). Land use land cover change detection and deforestation modeling: In Delomena district of Bale Zone, Ethiopia. Journal of Environmental Protection, 10(4), 532–561. https://doi.org/10.4236/jep.2019.104031
  • Azimfard, K., Abbasi, M., & Riahi Bakhtiari, H. R. (2016). Investigation of changes in forest cover using satellite imagery (Case study: Part of Chaharmahal and Bakhtiari province), National Geomatics Conference, Islamic Azad University, Tehran.
  • Bagheri, R., & Shataee, S. (2010). Modeling forest areas decreases, using logistic regression (case study: Chehl-Chay catchment, Golestan province). Iranian Journal of Forest, 2(3), 243–252. http://www.sid.ir/en/ViewPaper.asp?ID
  • Bazgir, A., Maleknia, R., Rahimian, M. (2018). The role of access to alternative fuel in changing the household energy consumption pattern of Zagros Forest villagers. Iran Forest and Spruce Research,27(4). 399–412. ( In Persian). http://doi.org/10.1007/s41324-019-00273-1.
  • Bununu, Y. A., Ludin, A. N. M., & Hosni, N. (2016). Modelling vegetation loss and greenhouse gas emissions in Kaduna, Nigeria. In 10th SEATUC Symposium. Shibaura Institute of Technology.
  • Daneshmandparsa, R., Mirzaei, R., & Bihamtaitoosi, N. (2018). Land cover change detection of Chahar Mahal Bakhtiari province using landscape metrics (1994-2015). Iranian Journal of Applied Ecology, 7(2), 17–27. https://doi.org/10.29252/ijae.7.2.17
  • Delpasand, S., Maleknia, R., & Naghavi, H. (2020). Modeling of forest cover change to identify suitable areas for project REDD (case study: Lordegan county). Journal of Forest Research and Development, 4(1400), 577–594. https://doi.org/10.30466/jfrd.2021.53301.1528
  • Dickson, R., Baker, M., Bonnin, N., Shoch, D., Rifkin, B., Stewart, F. A., & Piel, A. K. (2020). Combining deforestation and species distribution models to improve measures of chimpanzee conservation impacts of redd: A case study from ntakata mountains, western Tanzania. Forests, 11(11), 1195. https://doi.org/10.3390/f11111195
  • Eastman, J. R. (2015). TerrSet Manual. Accessed in TerrSet. M. A. Worcester. Clark University.
  • Ghorbannia, V., Mirsanjari, M. M., & Armin, M. (2017). Forecasting of forest land changes in the Chaloosrood watershed. Journal of RS and GIS for Natural Resources, 8(2), 79–91.
  • Godoy, F. D. O., & Rojas, E. H. M. (2013). Modeling deforestation to REDD+ Project: A case study in alto mayo protected forest, san martin region, Peru. In Proceeding of simposio brasileiro de sensoriamento remoto, foz do Iguacu (pp. 7233–7240).
  • Heidarlou, H. B., Shafiei, A. B., Erfanian, M., Tayyebi, A., & Alijanpour, A. (2019). Effects of preservation policy on land use changes in Iranian Northern Zagros forests. Land Use Policy, 81(2019), 76–90. https://doi.org/10.1016/j.landusepol.2018.10.036
  • Heidarlou, H. B., Shafiei, A. B., Erfanian, M., Tayyebi, A., & Alijanpour, A. (2021). Land Cover Changes in Northern Zagros Forests (New Iran) Before and during implementation of energy policies. Journal of Sustainable Forestry, 40(3), 234–248. https://doi.org/10.1080/10549811.2020.1747026
  • Imani Rasrabi.M., Jalilvand, H. and Zandbasiri, M. 2013, (. Examination of socio-economic local system Kalgchy Zagrosin Chaharmahal and Bakhtiari. Journal of Natural Ecosystems of Iran, 4(2): 59–70 ( In Persian).
  • Kapos, V., Ravilious, C., Campbell, A., Dickson, B., Gibbs, H., Hansen, M., Lysenko, I., Miles, L., Price, J., Scharlemann, J. P. W., & Trumper, K. (2008). Carbon and biodiversity. UNEP-WCMC.
  • Khedrizadeh, M., Maleknia, R., Adeli, K., & Hanareh Khalyani, J. (2017). Survey of barriers and potential field to involve local people in the forest management process (Case study: Local Communities in Nameshir, Baneh). Journal of Wood & Forest Science and Technology, 24(3), 35–47. https://doi.org/10.22069/jwfst.2017.12024.1634
  • Khoi, D. D., & Murayama, Y. (2011). Modeling deforestation using a neural network-Markov model. Spatial Analysis and Modeling in Geographical Transformation Process (pp. 169–190). Springer. https://doi.org/10.1007/978-94-007-0671-2_11
  • Khosravi, S., Maleknia, R., & Khedrizadeh, M. (2016). Economic role of forests in rural livelihoods in northern Zagros. Journal of Forest Sustainable Development, 1(3), 252–268.
  • Kim, O. S. (2010). An assessment of deforestation models for reducing emissions from deforestation and forest degradation (REDD). Transactions in GIS, 14(5), 631–654. https://doi.org/10.1111/j.1467-9671.2010.01227.x
  • Kissinger, G., Brockhaus, M., & Bush, S. R. (2021). Policy integration as a means to address policy fragmentation: Assessing the role of Vietnam’s national REDD+ action plan in the central highlands. Environmental Science & Policy, 119 (2021), 85–92. https://doi.org/10.1016/j.envsci.2021.02.011
  • Kumar, R., Nandy, S., Agarwal, R., & Kushwaha, S. P. S. (2014). Forest cover dynamics analysis and prediction modeling using logistic regression model. Ecological Indicators, 45(2014), 444–455. https://doi.org/10.1016/j.ecolind.2014.05.003
  • Leta, M. K., Demissie, T. A., & Tränckner, J. (2021). Modeling and prediction of land use land cover change dynamics based on Land Change Modeler (LCM) in Nashe Watershed, Upper Blue Nile Basin, Ethiopia. Sustainability, 13(7), 3740. https://doi.org/10.3390/su13073740
  • Lopez, R. D., & Frohn, R. C. (2017). Remote sensing for landscape ecology: New metric indicators. CRC Press.
  • Martinez, H. (2017). Deforestation in the Kayabi Indigenous Territory: Simulating and predicting land use and land cover change in the Brazilian Amazon. Revista Cartográfica, 94(2017), 149–163. https://doi.org/10.35424/rcarto.i94.346
  • Mas, J. F., Kolb, M., Paegelow, M., Olmedo, M. T. C., & Houet, T. (2014). Inductive pattern-based land use/cover change models: A comparison of four software packages. Environmental Modelling & Software, 51(2014), 94–111. https://doi.org/10.1016/j.envsoft.2013.09.010
  • Melillo, J. M., Frey, S. D., Deangelis, K. M., Werner, W. J., Bernard, M. J., Bowles, F. P., Pold, G., Knorr, M. A., & Grandy, A. S. (2017). Long-term pattern and magnitude of soil carbon feedback to the climate system in a warming world. Science, 358(6359), 101–105. https://doi.org/10.1126/science.aan2874
  • Mendoza-Ponce, A., Corona-Núñez, R. O., Nava, L. F., Estrada, F., Calderón-Bustamante, O., Martínez-Meyer, E., Pardo-Villegas, P. D., Larralde-Corona, A. H., Barrios, M., & Pardo-Villegas, P. D. (2021). Impacts of land management and climate change in a developing and socioenvironmental challenging transboundary region. Journal of Environmental Management, 300(113748), 1–10. https://doi.org/10.1016/j.jenvman.2021.113748
  • Mirzaeizadeh, V., Mahdavi, A., Karamshahi, A., & Jafarzadeh, A. (2015). Application of an Integrated CA-Markov Model in Simulating Spatiotemporal Changes in Forest Cover: A Case Study of Malekshahi County Forests, Ilam Province. Ecology of Iranian Forest. 3 (5), 42–52. http://ifej.sanru.ac.ir/article-1-186-fa.html.
  • Mirzaeizadeh, V., Mahdavi, A., Karamshahi, A., & Jafarzadeh, A. (2016). Investigation of the spatial pattern of forest cover changes using logistic regression in Malekshahi. Journal of Wood and Forest Science and Technology, 23(3), 45–68. https://doi.org/10.22069/JWFST.2016.3170
  • Nahib, I., & Suryanta, J. (2017). Forest cover dynamics analysis and prediction modelling using logistic regression model (case study: Forest cover at Indragiri Hulu Regency, Riau Province). In IOP conference series: Earth and environmental science (Vol. 54, p. 12044). IOP Publishing. https://doi.org/10.1088/1755-1315/54/1/012044.
  • Nahib, I., & Suwarno, Y. (2018). Modeling Deforestation and Green Houses Gas Emissions in Morowali Utara District, Central Sulawesi Province, Indonesia. In IOP Conference Series: Earth and Environmental Science (Vol. 165, p. 12030). IOP Publishing. https://doi.org/10.1088/1755-1315/165/1/012030.
  • Naseri, S., Naghavi, H., Soosani, J., & Nouredini, A. R. (2019). Modeling the spatial changes of Zagros forests using satellite imagery and LCM model (Case study: Bastam, Selseleh). Geography and Development Iranian Journal, 17(54), 107–120. https://doi.org/10.22111/GDIJ.2019.4350
  • Naserirad, S., Naghavi, H., Soosani, J., Nouredin, S.H, Vafaei, S, ., . (2017). Investigating the transmission potential of land use and land cover using Similarity Weighted Instance based Learning, Logistic regression and Geomod methods (Case study: Bastam basin, Selseleh city). Journal of Environmental Science and Technology (JEST),22(11). 121–133. doi:10.22034/JEST.2019.44248.4663. ( In Persian).
  • Parma, R., Maleknia, R., Shataee, S., & Naghavi, H. (2017). Land cover change modeling based on artificial neural networks and transmission potential method in LCM (Case Study: Forests Gilan-e Gharb, Kermanshah Province). Town and Country Planning, 9(1), 129–151. https://doi.org/10.22059/JTCP.2017.61410
  • Parsamehr, K., Gholamalifard, M., & Kooch, Y. (2019). Modeling of land-cover based on similarity weighted instance-based learning procedure and its implication in the REDD project design document. Journal of Geospatial Information Technology, 7(1), 121–144. https://doi.org/10.29252/jgit.7.1.121
  • Parsamehr, K., Gholamalifard, M., & Kooch, Y. (2020). Comparing three transition potential modeling for identifying suitable sites for REDD+ projects. Spatial Information Research, 28(2), 159–171. https://doi.org/10.1007/s41324-019-00273-1
  • Pedroni, L., Garcia, A., Schlamadinger, B. (2008). BioCF RED Mosaic Methodology-Version1 of the BioCarbon Fund’s proposed Methodology for Estimating Reductions of GHG Emissions from Mosaic Deforestation. http://wbcarbonfi.nance.org/Router.cfm?Page=Doclib&CatalogID=49189
  • Peterson, A. L., Gallagher, L. A., Huberman, D., & Mulder, I. (2012). Seeing REDD: Reducing emissions and conserving biodiversity by avoiding deforestation. Journal of Sustainable Forestry, 31(1–2), 29–58. https://doi.org/10.1080/10549811.2011.565710
  • Rafieian, A., Darvish Sefat, A., & Namiranian, M. (2006). Investigating the image capability of Landsat 7 satellite to prepare a forest area map (case study in the forests of Babol). Natural Resources of Iran, 59(4), 843–852 doi:JR_JWSS-10-3_023.
  • Roriz, P. A. C., Yanai, A. M., & Fearnside, P. M. (2017). Deforestation and carbon loss in Southwest Amazonia: Impact of Brazil’s revised forest code. Environmental Management, 60(3), 367–382. https://doi.org/10.1007/s00267-017-0879-3
  • Sangermano, F., Toledano, J., & Eastman, J. R. (2012). Land cover change in the Bolivian Amazon and its implications for REDD+ and endemic biodiversity. Landscape Ecology, 27(4), 571–584. doi:10.1007/s10980-012-9710-y.
  • Siles, N. S. (2009). Spatial Modelling and Prediction of Tropical Forest Conversion in the Isiboro Sécure National Park and Indigenous Territory TIPNIS, Bolivia. ITC.
  • Soliev, I., Theesfeld, I., Abert, E., & Schramm, W. (2021). Benefit sharing and conflict transformation: Insights for and from REDD+ forest governance in sub-Saharan Africa. Forest Policy and Economics, 133(102623). https://doi.org/10.1016/j.forpol.2021.102623
  • Spatial planning studies of Chaharmahal and Bakhtiari province, 2018. Planning and budget organization, chaharmahal and bakhtiari management and planning organization
  • Ty, S., Sasaki, N., Ahmad, A. H., & Zaina, A. Z. (2011). REDD development in Cambodia–potential carbon emission reductions in a REDD project. Formath, 10(2011), 1–23. https://doi.org/10.15684/formath.10.1
  • UNFCCC. 2008. CDM Executive Board: Annex 15 – A/R Methodological tool – Procedure to determine when accounting of the soil organic carbon pool may be conservatively neglected in CDM A/R project activities. EB33 Report, Annex 15, pp. 1–3.
  • VCS Project Database-Verra, https://verra.org/project/vcs-program/projects-and-jnr-programs. Date accessed

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