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Оглавление1 Achard, F., Beuchle, R., Mayaux, P. et al. (2014). Determination of tropical deforestation rates related carbon loss from 1990 to 2010. Global Change Biology 20: 2540–2554. https://doi.org/10.1111/gcb.12605.
2 Agrawal, A., Nepstad, D., and Chhatre, A. (2011). Reducing emissions from deforestation and forest degradation. Annual Review of Environment and Resources 36: 373–396. https://doi.org/10.1146/annurev‐environ‐042009‐094508.
3 Agus, F., Gunarso, P., Sahardjo, B.H., Harris, N., Noordwijk, M. Van, Killeen, T.J. (2013a). Historical CO2emissions from land use and land use change from the oil palm industry in Indonesia, Malaysia and Papua New Guinea. Greenhouse Gas Working Group. Report from Tech. Panels RSPOs 2nd Greenh. Gr. 65–88.
4 Agus, F., Santosa, I., Dewi, S., Setyanto, P.,Thamrin, S., Wulan Y. C., Suryaningrum, F. (2013b) PedomanTeknisPenghitungan Baseline EmisidanSerapan Gas RumahKacaSektorBerbasisLahan: Buku I LandasanIlmiah (Technical Guidelines for Baseline Calculation of Greenhouse Gas Emissions and Removals in the Land‐Based Sector: Book I Scientific Basis). Jakarta: BAPPENAS. http://ranradgrk.bappenas.go.id/rangrk/admincms/downloads/publications/Pedoman_teknis_penghitungan_baseline_emisi_dan_serapan_GRK_sektor_berbasis_lahan1.pdf (accessed 1 October 2020)
5 Angelsen, A. (ed.) (2009). Realising REDD+: National Strategy and Policy Options. Bogor, Indonesia: CIFOR.
6 Arima, E.Y., Barreto, P., Araújo, E., and Soares‐Filho, B. (2014). Public policies can reduce tropical deforestation: lessons and challenges from brazil. Land Use Policy 41: 465–473. https://doi.org/10.1016/j.landusepol.2014.06.026.
7 Atmadja, S. and Verchot, L. (2012). A Review of the state of research, policies and strategies in addressing leakage from reducing emissions from deforestation and forest degradation (REDD+). Mitigation and Adaptation Strategies for Global Change 17: 311–336. https://doi.org/10.1007/s11027‐011‐9328‐4.
8 Austin, K.G., Sheppard, S., Stolle, F. (2012). Indonesia's Moratorium on New Forest Concessions: Key Findings and Next Steps, WRI Working Paper. https://files.wri.org/s3fs‐public/indonesia_moratorium:on_new_forest_concessions.pdf (accessed 1 December 2020)
9 Baccini, A., Goetz, S.J., Walker, W.S. et al. (2012). Estimated carbon dioxide emissions from tropical deforestation improved by carbon‐density maps. Nature Climate Change 2: 182–185. https://doi.org/10.1038/nclimate1354.
10 Bebber, D.P. and Butt, N. (2017). Tropical protected areas reduced deforestation carbon emissions by one third from 2000–2012. Scientific Reports 7: 1–7. https://doi.org/10.1038/s41598‐017‐14467‐w.
11 Bolliger, J. and Kienast, F. (2010). Landscape functions in a changing environment. Landscape Online 21: 1–5. https://doi.org/10.3097/LO.201021.
12 Brinck, K., Fischer, R., Groeneveld, J. et al. (2017). High resolution analysis of tropical forest fragmentation and its impact on the global carbon cycle. Nature Communications 8 (1): 1–6.
13 Brockhaus, M., Obidzinski, K., Dermawan, A. et al. (2012). An overview of forest and land allocation policies in indonesia: is the current framework sufficient to meet the needs of REDD+? Forest Policy and Economics 18: 30–37. https://doi.org/10.1016/j.forpol.2011.09.004.
14 Broich, M., Hansen, M.C., Stolle, F. et al. (2011). Remotely sensed forest cover loss shows high spatial and temporal variation across Sumatera and Kalimantan, Indonesia 2000–2008. Environmental Research Letters 6: 014010. https://doi.org/10.1088/1748‐9326/6/1/014010.
15 Brun, C., Cook, A.R., Lee, J.S.H. et al. (2015). Analysis of deforestation and protected area effectiveness in indonesia: a comparison of bayesian spatial models. Global Environmental Change 31: 285–295. https://doi.org/10.1016/j.gloenvcha.2015.02.004.
16 Carlson, K.M., Curran, L.M., Asner, G.P. et al. (2013). Carbon emissions from forest conversion by Kalimantan oil palm plantations. Nature Climate Change 3: 283–287. https://doi.org/10.1038/nclimate1702.
17 Casson, A., Muliastra, Y.I.K.D., and Obidzinski, K. (2015). Land‐based investment and green development in Indonesia: lessons from Berau District, East Kalimantan. Bogor, Indonesia: CIFOR https://doi.org/10.17528/cifor/005538 (accessed 1 October 2020).
18 Clark, M.R. and Kozar, J.S. (2011). Comparing sustainable forest management certifications standards: a meta‐analysis. Ecology and Society 16 (1): 3.
19 Corbin, J.D. and Holl, K.D. (2012). Applied nucleation as a forest restoration strategy. Forest Ecology and Management 265: 37–46. https://doi.org/10.1016/j.foreco.2011.10.013.
20 de Groot, R.S., Alkemade, R., Braat, L. et al. (2010). Challenges in integrating the concept of ecosystem services and values in landscape planning, management and decision making. Ecological Complexity 7: 260–272. https://doi.org/10.1016/j.ecocom.2009.10.006.
21 Dumroese, R.K., Palik, B.J., and Stanturf, J.A. (2015). Forest restoration is forward thinking. Journal of Forestry 113: 430–432. https://doi.org/10.5849/jof.15‐049.
22 East Kalimantan (2013). East Kalimantan Province Action Plan of Greenhouse Gas Emission Reduction 2010–2020, 2e. Samarinda, Indonesia: The Government of East Kalimantan https://jdih.kaltimprov.go.id/produk_hukum/unduh/b0ff0ff9‐d81e (Accessed 10 October 2020).
23 East Kalimantan (2012). The Provincial Strategy and Action Plan for Implementation of REDD+ in East Kalimantan, revisione. Samarinda, Indonesia: The Government of East Kalimantan.
24 East Kalimantan (2011a). Governors Climate & Forests Task Force (GCF) East Kalimantan Province, Indonesia. Samarinda, Indonesia: The Government of East Kalimantan.
25 Kalimantan, E. (2011b). Governor Regulation No. 22 of 2011 on implementation guidelines for East Kalimantan Green. Samarinda, Indonesia: The Government of East Kalimantan.
26 Kalimantan, E. (2011c). Governor Regulation No. 2 of 2011 on The Regional Climate Change Council. Samarinda, Indonesia: The Government of East Kalimantan.
27 Edwards, D.P., Fisher, B., and Boyd, E. (2010). Protecting degraded rainforests: enhancement of forest carbon stocks under REDD+. Conservation Letters 3: 313–316. https://doi.org/10.1111/j.1755‐263X.2010.00143.x.
28 Estavillo, C., Pardini, R., and da Rocha, P.L.B. (2013). Forest loss and the biodiversity threshold: an evaluation considering species habitat requirements and the use of matrix habitats. PLoS One 8 https://doi.org/10.1371/journal.pone.0082369.
29 FAO (2006). Food and Agriculture Organization of the United Nations Rome. Global Forest Resources Assessment 2005: Progress Towards Sustainable Forest Management. FAO Forestry Paper 147.
30 FAO (2010). Food and Agriculture Organization of the United Nations Rome. Global Forest Resources Assessment 2010: Main Report. FAO Forestry Paper 163.
31 FAO (2011). Food and Agriculture Organization of the United Nations Rome. Assessing forest degradation: towards the development of globally applicable guidelines. FRA Working Paper 177.
32 FAO (2015). Global forest resources assessment 2015: how are the world's forests changing? FAO Forestry Paper. Rome, Italy: Food and Agriculture Organization of the United Nations.
33 FCPF (2017). Forest carbon partnership facility 2017 annual report. New York, USA: Forest Carbon Partnership Facility.
34 Gaveau, D.L., Sheil, D., and Salim, M.A. (2016). Rapid conversions and avoided deforestation: examining four decades of industrial plantation expansion in Borneo. Scientific Reports 6 (1): 1–13.
35 Ghazoul, J. and Chazdon, R. (2017). Degradation and recovery in changing forest landscapes: a multiscale conceptual framework. Annual Review of Environment and Resources 42: 161–188.
36 Gullison, R.E., Frumhoff, P.C., Canadell, J.G. et al. (2007). Tropical forests and climate policy. Science 316 (5827): 985–986.
37 Hairiah, K., Dewi, S., Agus, F. et al. (2011). Measuring Carbon Stocks Across Land Use Systems: A Manual. Bogor, Indonesia: World Agroforestry Centre (ICRAF), Brawijaya University and ICALRRD (Indonesian Center for Agricultural Land Resources Research and Development).
38 Harris, N.L., Petrova, S., Stolle, F., and Brown, S. (2008). Identifying optimal areas for REDD intervention: East Kalimantan, Indonesia as a case study. Environmental Research Letters 3: 035006. https://doi:10.1088/1748‐9326/3/3/035006.
39 Houghton, R.A. (2012). Carbon emissions and the drivers of deforestation and forest degradation in the tropics. Current Opinion in Environmental Sustainability 4: 597–603. https://doi.org/10.1016/j.cosust.2012.06.006.
40 Hosonuma, N., Herold, M., and De Sy, V. (2012). An assessment of deforestation and forest degradation drivers in developing countries. Environmental Research Letters 7 (4): 044009.
41 Indonesia (2011a). The Presidential Instruction No. 10 of 2011 on The Moratorium of New Forest Concession Licenses and Management Improvement on Primary Forests and Peatlands.
42 Indonesia (2011b). The Presidential Regulation No. 61 of 2011 on The National Action Plan for Greenhouse Gas Emissions Reduction.
43 Indonesia (2011c). The Presidential Regulation No. 71 of 2011 on the Implementation of National GHG Inventory.
44 Indonesia (2013). Indonesia's Framework for Nationally Appropriate Mitigation Actions. Jakarta, Indonesia: Ministry of National Development Planning.
45 Indonesia (2016). First Nationally Determined Contribution, Republic of Indonesia. https://www4.unfccc.int/sites/ndcstaging/PublishedDocuments/Indonesia%20First/First%20NDC%20Indonesia_submitted%20to%20UNFCCC%20Set_November%20%202016.pdf (accessed 10 October 2020)
46 IPCC (2006). IPCC Guidelines for National Greenhouse Gas Inventories, vol. 4. Tokyo, Japan: The Institute for Global Environmental Strategies (IGES) for the IPCC.
47 Kamaruddin, A.F., Toriman, M.E., Juahir, H. et al. (2015). Spatial characterization and identification sources of pollution using multivariate analysis at Terengganu river basin, Malaysia. Jurnal Teknologi 77 (1): 269–273.
48 Kim, S.T., Cai, W., Jin, F.F. et al. (2014). Response of El Niño sea surface temperature variability to greenhouse warming. Nature Climate Change 4 (9): 786–790.
49 Kiswanto, Tsuyuki, S., and Sumaryono, M. (2018). Completing yearly land cover maps for accurately describing annual changes of tropical landscapes. Global Ecology and Conservation 13:e00384 https://doi.org/10.1016/j.gecco.2018.e00384.
50 Krisnawati, H., Adinugroho, W.C., Imanuddin, R., Hutabarat, S. (2014). Estimation of forest biomass for quantifying CO2 emissions in Central Kalimantan: a comprehensive approach in determining forest carbon emission factors. Research and Development Center for Conservation and Rehabilitation, Forestry Research and Development Agency of the Ministry of Environment and Forestry, Bogor, Indonesia
51 Kuenzer, C., Ottinger, M., Wegmann, M. et al. (2014). Earth observation satellite sensors for biodiversity monitoring: potentials and bottlenecks. International Journal of Remote Sensing 35 (18): 6599–6647.
52 Le Quéré, C., Moriarty, R., Andrew, R.M. et al. (2015). Global carbon budget 2015. Earth System Science Data 7 (2): 349–396.
53 Lehmann, J.O., Mogensen, L., and Kristensen, T. (2014). Extended lactations may improve cow health, productivity and reduce greenhouse gas emissions from organic dairy production. Organic Agriculture 4 (4): 295–299.
54 Lindenmayer, D.B., Margules, C.R., and Botkin, D.B. (2000). Indicators of biodiversity for ecologically sustainable forest management. Conservation Biology 14 (4): 941–950.
55 Logan‐Hines, E., Goers, L., Evidente, M., and Cashore, B. (2012). REDD+ policy options: including forests in an international climate change agreement. In: Managing Forest Carbon in a Changing Climate (eds. M.S. Ashton, M.L. Tyrrell, D. Spalding and B. Gentry), 357–376. Dordrecht: Springer.
56 Margono, B.A., Potapov, P.V., Turubanova, S. et al. (2014). Primary forest cover loss in Indonesia over 2000–2012. Nature Climate Change 4 (8): 730–735.
57 MoF (2008). IFCA 2007 consolidation report: reducing emissions from deforestation and forest degradation in Indonesia. Jakarta, Indonesia.
58 Numata, I., Cochrane, M.A., Souza, C.M. Jr., and Sales, M.H. (2011). Carbon emissions from deforestation and forest fragmentation in the Brazilian Amazon. Environmental Research Letters 6: 1–7. https://doi.org/10.1088/1748‐9326/6/4/044003.
59 Prasetyo, L.B., Saito, G. (2000). Spatial database development for estimation of emission of greenhouse gases using remote sensing and GIS in Sumatra Island, Indonesia. The 6th JIRCAS International Symposium. https://www.jircas.go.jp/sites/default/files/publication/intlsymp/intlsymp‐8_19‐28.pdf (accessed 3 February 2021)
60 Pearson, T.R.H., Brown, S., Murray, L., and Sidman, G. (2017). Greenhouse Gas Emissions from Tropical Forest Degradation: An Underestimated Source. Carbon Balance and Management 12: 3. https://doi.org/10.1186/s13021‐017‐0072‐2.
61 Potapov, P.V., Turubanova, S.A., Hansen, M.C. et al. (2012). Quantifying forest cover loss in Democratic Republic of the Congo, 2000‐2010, with Landsat ETM+ data. Remote Sensing of Environment 122: 106–116. https://doi.org/10.1016/j.rse.2011.08.027.
62 Rahayu, S., Van Noordwijk, M., Lusiana, B. (2005). Aboveground carbon stock assesment for various land use systems in Nunukan District, Kalimantan In: Lusiana B, van Noordwijk M and Rahayu S, eds. Carbon Stocks in Nunukan: a spatial monitoring and modelling approach. Report from Carbon Monitoring Team of Forest Resource Management and Carbon Sequestration (FORMACS) Project. . Bogor, Indonesia. World.
63 Rosa, I.M.D., Smith, M.J., Wearn, O.R. et al. (2016). The environmental legacy of modern tropical deforestation. Current Biology 26: 2161–2166. https://doi.org/10.1016/j.cub.2016.06.013.
64 Santosa, I., Sugardiman, R.A., Wibowo, A. et al. (2014). Technical Guidelines for the Baseline Calculation of Greenhouse Gas Emissions and Sequestration in the Land‐Based Sector: Book i Scientific Background. Jakarta, Indonesia: Indonesia Ministry of National Development Planning.
65 Sierra, C.A., del Valle, J.I., and Restrepo, H.I. (2012). Total carbon accumulation in a tropical forest landscape. Carbon Balance and Management 7 https://doi.org/10.1186/1750‐0680‐7‐12.
66 Stanturf, J.A., Palik, B.J., and Dumroese, R.K. (2014). Contemporary forest restoration: a review emphasizing function. Forest Ecology and Management 331: 292–323. https://doi.org/10.1016/j.foreco.2014.07.029.
67 TNC (2016). East Kalimantan Green Growth Compact: A Partnership for Prosperity and Conservation in the Tropical Forest, Global Agriculture Case Study. Samarinda, Indonesia: The Nature Conservancy (TNC).
68 Tsujino, R., Yumoto, T., Kitamura, S. et al. (2016). History of forest loss and degradation in Indonesia. Land Use Policy 57: 335–347. https://doi.org/10.1016/j.landusepol.2016.05.034.
69 Tyukavina, A., Baccini, A., Hansen, M.C. et al. (2015). Aboveground carbon loss in natural and managed tropical forests from 2000 to 2012. Environmental Research Letters 10: 074002. https://doi.org/10.1088/1748‐9326/10/7/074002.
70 UN Climate Summit (2014). The New York Declaration on Forest: Action Statements and Action Plans, Climate Summit 2014. New York, USA: United Nations.
71 van Noordwijk, M., Agus, F., Dewi, S., and Purnomo, H. (2014). Reducing emissions from land use in Indonesia: motivation, policy instruments and expected funding streams. Mitigation and Adaptation Strategies for Global Change 19: 677–692. https://doi.org/10.1007/s11027‐013‐9502‐y.
72 Venter, O. and Koh, L.P. (2012). Reducing emissions from deforestation and forest degradation (REDD+): game changer or just another quick fix? Annals of the New York Academy of Sciences 1249: 137–150. https://doi.org/10.1111/j.1749‐6632.2011.06306.x.
73 Verstegen, J.A., van der Laan, C., Dekker, S.C. et al. (2019). Recent and projected impacts of land use and land cover changes on carbon stocks and biodiversity in East Kalimantan, Indonesia. Ecological Indicators 103: 563–575. https://doi.org/10.1016/j.ecolind.2019.04.053.
74 Verchot, L.V., Petkova, E., Obidzinski, K. et al. (2010). Reducing Forestry Emissions in Indonesia. Bogor, Indonesia: Center for International Forestry Research (CIFOR).
75 Zarin, D.J. (2012). Carbon from tropical deforestation. Science 336: 1518–1519. https://doi.org/10.1126/science.1223251.
76 Zarin, D.J., Harris, N.L., Baccini, A. et al. (2016). Can carbon emissions from tropical deforestation drop by 50% in 5 years? Global Change Biology 22: 1336–1347. https://doi.org/10.1111/gcb.13153.
77 Zhuravleva, I., Turubanova, S.A., Potapov, P.V. et al. (2013). Satellite‐based primary forest degradation assessment in the Democratic Republic of the Congo, 2000–2010. Environmental Research Letters 8 https://doi.org/10.1088/1748‐9326/8/2/024034.