| تعداد نشریات | 32 |
| تعداد شمارهها | 818 |
| تعداد مقالات | 7,918 |
| تعداد مشاهده مقاله | 38,796,694 |
| تعداد دریافت فایل اصل مقاله | 8,418,502 |
Evaluation of carbon sequestration service in the forest ecosystem (Case study: Hyrcanian Forests, North Iran) | ||
| Caspian Journal of Environmental Sciences | ||
| مقالات آماده انتشار، اصلاح شده برای چاپ، انتشار آنلاین از تاریخ 12 آبان 1404 اصل مقاله (1.46 M) | ||
| نوع مقاله: Research Paper | ||
| شناسه دیجیتال (DOI): 10.22124/cjes.2025.9175 | ||
| نویسندگان | ||
| Azim Hashem-Nejad Rahim-Abadi1؛ Amir Mohammadi-Nejad* 2؛ Hamid Amir-Nejad3؛ Reza Moghadasi2 | ||
| 1Department of Agricultural Economics, SR.C., Islamic Azad University, Tehran, Iran | ||
| 2Department of Agricultural Economics, SR.C., Islamic Azad University, Tehran, Iran | ||
| 3Department of Agricultural Economics, Sari University of Agricultural Sciences and Natural Resources, Iran | ||
| چکیده | ||
| The present study investigates the carbon sequestration service and its economic value in Hyrcanian forests. Eleven Hyrcanian forest communities with different spatial conditions (Guilan, Mazandaran, and Golestan basins) in Northern Iran were studied in 2022-2023. To examine the amount of carbon production, information from the Iranian Forestry and Watershed Management Organization, GIS 10.7, INVEST 3.9, and the replacement cost method were used. The results showed that the level of carbon sequestration varied depending on spatial conditions, species, and other factors. Different species followed distinct growth patterns. In addition, carbon sequestration varied from a minimum of 221 tons ha-1 in the mixed forest community of Asalem, Guilan, area 7, to a maximum of 314 tons ha-1 in the hornbeam Nur-Chamestan forest community, Mazandaran, area 51, with an average of 261 tons ha-1 in all the study areas. The cost of carbon sequestration was calculated based on the costs of carbon capture and storage, approximately $110 per ton. As a result, the average value per ha and the total forests studied were estimated at 12068 and 937451914 million IRR, respectively. By generalizing this figure to the total area of northern Iranian forests (2.3 million hectares), the value of northern forests for carbon sequestration was 27755614523 million IRR, equivalent to $67308 million. Policymakers at national and regional levels should incorporate carbon sequestration values into environmental planning, carbon offset mechanisms, and payment for ecosystem services (PES) schemes to incentivize forest conservation and climate mitigation. This integration should be accompanied by forest management strategies that are tailored to the ecological characteristics and carbon sequestration potential of different forest types, prioritizing high-biomass ecosystems such as beech forests for targeted conservation efforts. | ||
| کلیدواژهها | ||
| Ecosystem services؛ Carbon sequestration؛ Hyrcanian Forest؛ Non-market services | ||
| مراجع | ||
|
Adger, W N, Brown, K, Cervigni, R & Moran, D 1995, Total economic value of forests in Mexico. Ambio, 24 (5): 286-296.
Ameray, A, Bergeron, Y, Valeria, O, Montoro Girona, M & Cavard, X 2021, Forest carbon management: A review of silvicultural practices and management strategies across boreal, temperate and tropical forests. Current Forestry Reports, 7: 245–266.
Amirnejad, H 2005, The total economic value of the ecosystems of Northern Iran's forests with emphasis on environmental-ecological valuation and conservation values. PhD Dissertation, Tarbiat Modares University, 296 p.
Amirnejad, H, Ataei Sloot, K 2011, Economic valuation of biological resources. University of Agricultural Sciences and Natural Resources, Sari, Iran, Avaye Masiha, 432 p.
Amirnejad, H, Khalilian, S, Assareh, MH & Ahmadian, M 2006, Estimating the existence value of north forests of Iran by using a contingent valuation method. Ecological Economics, 58(4): 665-675, [In Persian].
Azari, M H Moradi, R, Saghafian, B & Faramarzi, M 2016, Climate change impacts on stream flow and sediment yield in the North of Iran. Hydrological Sciences Journal, 61(1): 123-133, [In Persian].
Bherwani, H, Banerji, T & Menon, R 2024, Role and value of urban forests in carbon sequestration: Review and assessment in Indian context. Environment, Development and Sustainability, 26(1): 603-626.
Bostan, Y, Fatahiardakani, A, Fehresti Sani, M & Sadeghinia, M 2018, A pricing model for value of gas regulation function of natural resources ecosystems (case study: Sheikh Musa Rangeland, Mazandaran Province, Iran). Journal of Rangeland Science, 8(2): 186-200.
Bostyn, P & Brunelle, T 2025, Economic assessment of increasing tree cover in Kenya: The cost of maintaining forest contiguity. Ecological Economics, 235: 108649.
Brown, S 1997, Estimating biomass and biomass change of tropical forests: A primer. Food & Agriculture Org. Press, 134 p.
Common, M 2003, Internet Encyclopedia of Ecological Economics, Monetary valuation. www.ecoceco.org.
Dajleri, H, Zahedi Amiri, G, Abdi, E, Javanmiri Pour, M & Asgari, M 2023, Appraisal of carbon sequestration capacity of soil and underground biomass in mixed stands of beech and hornbeam (A case study: Lirasar Forest- Tonekabon). Iranian Journal of Forest, 15(2): 141-154, [In Persian].
De Jong, BHJ, Tipper, R and Montoya-Gómez, G 2000, An economic analysis of the potential for carbon sequestration by forests: Evidence from Southern Mexico. Ecological Economics, 33(2).
Delaney, M, Brown, S, Lugo, A E,Torres‐Lezama, A & Quintero, NB 1998, The quantity and turnover of dead wood in permanent forest plots in six life zones of Venezuela. Biotropica, 30(1): 2-11.
Eggleston, HS, Buendia, L, Miwa, K, Ngara, T & Tanabe, K 2006, IPCC guidelines for national greenhouse gas inventories. Institute for Global Environmental Strategies, Hayama, Japan.
El-Baha, A, Omran, T, Regato, P, Saket, M, Braatz, S, Achouri, M & Rose, S 2010, Forests and climate change in the Near East region, 78 p.
Eskandari, H, Borji, M, Khosravi, H & Mesbahzadeh, T 2016, Desertification of forest, range and desert in Tehran Province, affected by climate change, Solid Earth, 7(3): 905-915, [In Persian].
Fadaei, E, Mirsanjari, MM & Amiri, MJ 2020, Modeling of ecosystem services based on land cover change and land use using InVEST software in Jahannama Conservation Area (Case: Carbon sequestration ecosystem service). Town and Country Planning, 12(1): 153-173, [In Persian].
FAO and UNEP 2020, The State of the World’s Forests 2020. Forests, biodiversity and people. Rome.
FAO 2022, The state of the world's forests 2022, Forest pathways for green recovery and building inclusive, resilient and sustainable economies. https://doi.org/10.4060/cb9360en.
Food and Agriculture Organization of the United Nations Rome 2020, The State of the World’s Forests: Forests, Biodiversity and People. ISBN 978-92-5-132419-6.
Ghanbari Motlagh, M, Babaie Kafaky, S, Mataji, A, Akhavan, R 2020, An introduction to estimating carbon stocks in beech forests in northern Iran. Quarterly Journal of Humanity and Environment, No. 57.
Grafton, RQ, Chu, HL, Nelson, H & Bonnis, G 2021, A global analysis of the cost-efficiency of forest carbon sequestration. https://www.oecd.org/en/publications/a-global-analysis-of-the-cost-efficiency-of-forest-carbon-sequestration_e4d45973-en.html.
Joshi, RK & Garkoti, SC 2025, Ecosystem carbon storage, allocation and carbon credit values of major forest types in the central Himalaya. Carbon Research, 4(1): 7.
Keith, DW, Holmes, G, Angelo, DS & Heidel, K 2018, A process for capturing CO2 from the atmosphere. Joule, 2(8): 1573-1594.
Knopf, B, Chen, YHH, De Cian, E, Förster, H, Kanudia, A, Karkatsouli, I & Van Vuuren, DP 2013, Beyond 2020—Strategies and costs for transforming the European energy system. Climate Change Economics, 4(supp1.): 1340001.
Losi, CJ, Siccama, TG, Condit, R & Morales, JE 2003, Analysis of alternative methods for estimating carbon stock in young tropical plantations. Forest ecology and Management, 184(1-3): 355-368.
Mahmoudi Taleghani, E, Zahedi Amiri, G, Adeli, E & Sagheb-Talebi, K 2007, Assessment of carbon sequestration in soil layers of managed forest. Iranian Journal of Forest and Poplar Research, 15(3): 252-241, [In Persian].
McKinley, DC, Ryan, M G, Birdsey, RA, Giardina, CP, Harmon, ME, Heath, LS & Skog, KE 2011, A synthesis of current knowledge on forests and carbon storage in the United States. Ecological Applications, 21(6): 1902-1924.
Metcalf, GE & Stock, JH 2017, Integrated assessment models and the social cost of carbon: a review and assessment of US experience. Review of Environmental Economics and Policy, 11(1): 80-99.
Minx, J, Fuss, S & Nemet, G 2018, Seven Key Things to Know About ‘Negative Emissions. Carbon Brief, https://www. carbonbrief. org/guest-post-seven-key-things-to-know-about-negative-emissions.
Mohammadi, Z, Mohammadi Limaei, S, Lohmander, P & Olsson, L 2017, Estimating the aboveground carbon sequestration and its economic value: case study: Iranian Caspian forests. Journal of Forest Research, 63(11): 511-518.
Mokany, K, Raison, RJ & Prokushkin, AS 2006, Critical analysis of root: shoot ratios in terrestrial biomes. Global Change Biology, 12(1): 84-96.
Natural Resources and Watershed Management Organization of Iran 2021, Semi-detailed studies of the sustainable natural resource management plan for northern forest areas. Watershed 7, 51, 91, https://en.frw.ir/.
Nielsen, ASE, Plantinga, AJ & Alig, RJ 2014, New cost estimates for carbon sequestration through afforestation in the United States, US Department of Agriculture, Forest Service, Pacific Northwest Research Station, General Technical Report, PNW-GTR-888, https://www.fs.fed.us/pnw/pubs/pnw_gtr888.pdf.
Ninan, K N & Perrings, C 2012, The economics of biodiversity conservation: valuation in tropical forest ecosystems. Routledge.
Pan, Y, Birdsey, RA, Fang, J, Houghton, R, Kauppi, PE, Kurz, WA & Hayes, D 2011, A large and persistent carbon sink in the world’s forests. Science, 333(6045): 988-993.
Panahi, M 2005, Economic valuation of Hyrcanian forests. PhD Dissertation, University of Tehran, Karaj, Iran, 294 p., [In Persian].
Pielke, RA 2009, An Idealized Assessment of the Economics of Air Capture of Carbon Dioxide in Mitigation Policy. Environmental Science & Policy, 12(3).
Raihan, A, Begum, RA & Said, MNM 2021, A meta-analysis of the economic value of forest carbon stock. Geografia, 17(4): 321-338.
Richards, KR & Stokes, C 2004, A review of forest carbon sequestration cost studies: A dozen years of research. Climatic Change, 63.
Sevillano, I, Antón-Fernández, C, Søgaard, G & Astrup, R 2025, Improved forest management for increased carbon sequestration: An assessment of the most prominent approaches in Norway. Journal of Environmental Management, 375: 124333.
Sharp, R 2014, InVEST 3.0. 1 user guide. The Natural Capital Project. Stanford, CA. Available from http://ncp-dev. Stanford. edu/~ dataportal/investreleases/documentation/current_release/(accessed August 2014).
Shooshtari, JS Hosseini, SM EsmailiSari, A & Gholamalifard, M 2012, Monitoring land cover change, degradation, and restoration of the Hyrcanian forests in Northern Iran 1977-2010, International Journal of Environmental Sciences, 3(3): 1038, [In Persian].
Shooshtari, S, Shayesteh, K Gholamalifard, M Azari, M & López Moreno, J 2018, Land cover change modelling in Hyrcanian forests, northern Iran: a landscape pattern and transformation analysis perspective. Cuadernos de Investigación Geográfica, 44(2): 743-761.
Stapleton, LM & Garrod, GD 2008, Do we ecologically model what we economically value? Ecological Economics, 65(3): 531-537.
Stavins, RN 1999, The costs of carbon sequestration: a revealed-preference approach. American Economic Review, 89(4): 994-1009.
Tallis, HT, Ricketts, T, Guerry, A, Wood, SA, Sharp, R, Nelson, E & Lacayo, M 2013, InVEST 2.5. 6 User’s Guide: Integrated valuation of ecosystem services and tradeoffs. Natural Capital Project Stanford, Palo Alto, CA, 155 p.
Tang, Y, Yang, R & Bian, X 2014, A review of CO2 sequestration projects and application in China. The Scientific World Journal, 2014(1): 381854.
Tol, R 2017, The private benefit of carbon and its social cost. (No. 0717).
Tol, R S 2009, The economic effects of climate change. The Journal of Economic Perspectives, 23(2): 29-51,
UNESCO 2019, https://whc.unesco.org/en/list/1584.
Valatin, G 2019, Comparing the cost-effectiveness of forestry options for climate change mitigation. Forest Research, Research Note, FCRN038, Surrey, United Kingdom, https://www.forestresearch.gov.uk/ documents/7126/FCRN038.pdf.
Van Kooten, GC & Sohngen, B 2007, Economics of forest ecosystem carbon sinks: A review. Resource and Environmental Economics and Policy Analysis (REPA) Research Group, University of Victoria, REPA Working Paper, 2007-02.
Verma, P, Siddiqui, AR, Mourya, NK & Devi, AR 2024, Forest carbon sequestration mapping and economic quantification infusing MLPnn-Markov chain and InVEST carbon model in Askot Wildlife Sanctuary, Western Himalaya. Ecological Informatics, 79: 102428.
Xu, L, Liu, X, Gatto, A, Vasa, L & Zhao, X 2025, Valuation of ecosystem services from forests in Chinese rural areas based on forest resource investment. Humanities and Social Sciences Communications, 12(1), 1-21.
Zarandian, A Baral, H Yavari, AR Jafari, HR Stork, NE Ling, MA & Amirnejad, H 2016, Anthropogenic decline of ecosystem services threatens the integrity of the unique Hyrcanian (Caspian) Forests in Northern Iran. Forests, 7(3): 51, [In Persian].
| ||
|
آمار تعداد مشاهده مقاله: 23 تعداد دریافت فایل اصل مقاله: 55 |
||