TROPICAL PEATLAND FOREST RESTORATION AS A CARBON EMISSION MITIGATION STRATEGY IN INDONESIA
Abstract
Tropical peatland forests in Indonesia have been significantly impacted by deforestation, draining, and conversion to agricultural land, leading to large-scale carbon emissions. As one of the world’s largest peatland areas, Indonesia’s tropical peatlands are crucial in regulating global carbon cycles. Restoration of these ecosystems presents a significant opportunity to mitigate carbon emissions, which are exacerbating climate change. This research aims to evaluate the effectiveness of tropical peatland forest restoration as a strategy for carbon emission reduction in Indonesia. The study employs a mixed-methods approach, combining field observations, remote sensing data, and carbon modeling to assess the carbon sequestration potential of restored peatland forests. Findings show that successful restoration of peatlands can result in the sequestration of up to 15 million tons of CO2 annually, with significant increases in both above-ground and below-ground biomass. Additionally, the research identifies key factors influencing restoration success, including water table management and native species replanting. The study concludes that tropical peatland forest restoration is a viable and effective strategy for carbon emission mitigation in Indonesia. The research emphasizes the need for policy support and long-term monitoring to ensure the sustainability of restoration efforts and their contribution to global climate change mitigation.
Full text article
References
Aryapratama, R., Schulte, S., & Pauliuk, S. (2026). Climate change mitigation potential of producing wood-based materials and energy from restoring degraded land in Indonesia – A nation-wide scenario analysis. Biomass and Bioenergy, 211, 109191. https://doi.org/10.1016/j.biombioe.2026.109191
Bahruddin, Macdonald, K., Diprose, R., & Delgado Pugley, D. (2024). Scaling-up sustainable commodity governance through jurisdictional initiatives: Political pathways to sector transformation in the Indonesian palm oil sector? World Development, 176, 106504. https://doi.org/10.1016/j.worlddev.2023.106504
Behboudian, M., Emami-Skardi, M. J., Anamaghi, S., Santos Ferreira, C. S., Wang-Erlandsson, L., Halbac-Cotoar?-Zamfir, R., & Kalantari, Z. (2025). Social resilience of tropical forest ecosystems: A systematic review of core principles and their application. Journal of Environmental Management, 394, 127319. https://doi.org/10.1016/j.jenvman.2025.127319
Budiharta, S., & Holl, K. D. (2025). Harnessing opportunities to upscale forest landscape restoration in Indonesia. Trees, Forests and People, 21, 100917. https://doi.org/10.1016/j.tfp.2025.100917
Cahyana, D., Karolinoerita, V., Widyatmanti, W., Fiantis, D., Setiawati, A. R., Widyastuti, M. T., Sukarman, S., Gani, R. A., Muslim, R. Q., Manurung, E. D., Qadaryani, L., & Setiadi, B. (2025). Advancing soil security through international scientific collaboration in Indonesia. Soil Advances, 4, 100076. https://doi.org/10.1016/j.soilad.2025.100076
Chervier, C., Nofyanza, S., West, T. A. P., & Sills, E. O. (2026). Who gets credit for reduced deforestation? Evaluating additionality in subnational jurisdictional REDD+ under national policy reforms in Indonesia. Ecological Economics, 247, 109033. https://doi.org/10.1016/j.ecolecon.2026.109033
Chiriacò, M. V., Galli, N., Santini, M., & Rulli, M. C. (2024). Deforestation and greenhouse gas emissions could arise when replacing palm oil with other vegetable oils. Science of The Total Environment, 914, 169486. https://doi.org/10.1016/j.scitotenv.2023.169486
Choudhary, B., Dhar, V., & Pawase, A. S. (2024). Blue carbon and the role of mangroves in carbon sequestration: Its mechanisms, estimation, human impacts and conservation strategies for economic incentives. Journal of Sea Research, 199, 102504. https://doi.org/10.1016/j.seares.2024.102504
Dhiaulhaq, A., Sambodo, M. T., Hidayat, S., Stacher, N., Sari, D., Haryadi, T., McDonald-Madden, E., Gero, A., Megaw, T., Maharani, C., & Rumfabe, M. (2026). Joined-up governance and sustainable finance for inclusive ridge-to-reef conservation in Southwest Papua, Indonesia. Environmental Development, 57, 101360. https://doi.org/10.1016/j.envdev.2025.101360
Fawzi, N. I., Sumawinata, B., Suwardi, Rahmasary, A. N., Qurani, I. Z., Naufaldary, R. G., Nabillah, R., Palunggono, H. B., & Mulyanto, B. (2024). Integrated water management practice in tropical peatland agriculture has low carbon emissions and subsidence rates. Heliyon, 10(5), e26661. https://doi.org/10.1016/j.heliyon.2024.e26661
Friess, D. A., Adams, J., Andradi-Brown, D. A., Bhargava, R., Carrasco, G., Dahdouh-Guebas, F., Heck, N., Herr, D., Kodikara, K. A. S., Michie, L., Shribman, Z. I., Slobodian, L., Su, J., Taira, D., Uddin, M. M., & Wodehouse, D. (2024). 6.17—Mangrove forests: Their status, threats, conservation and restoration. In D. Baird & M. Elliott (Eds.), Treatise on Estuarine and Coastal Science (Second Edition) (pp. 596–625). Academic Press. https://doi.org/10.1016/B978-0-323-90798-9.00031-7
Gong, M., Teller, N., Golebie, E. J., Aczel, M., Jiang, Z., Van Zeghbroeck, J., & Liu, J. (2024). Unveiling complementarities between mangrove restoration and global sustainable development goals. Journal of Cleaner Production, 474, 143524. https://doi.org/10.1016/j.jclepro.2024.143524
Gunawan, H., Setyawati, T., Atmoko, T., Subarudi, Kwatrina, R. T., Yeny, I., Yuwati, T. W., Effendy, R., Abdullah, L., Mukhlisi, Lastini, T., Arini, D. I. D., Sari, U. K., Sitepu, B. S., Pattiselanno, F., & Kuswanda, W. (2024). A review of forest fragmentation in Indonesia under the DPSIR framework for biodiversity conservation strategies. Global Ecology and Conservation, 51, e02918. https://doi.org/10.1016/j.gecco.2024.e02918
Harahap, S. S. H., Basyuni, M., Slamet, B., Sulistiyono, N., Sasmito, S. D., Amelia, R., Bimantara, Y., Harahap, M., Al Mustaniroh, S. S., Elfiati, D., Arifanti, V. B., Sidik, F., & Ali, H. M. (2024). Assessing sediment CO2 effluxes in the coastal ecosystem of North Sumatra, Indonesia. Regional Studies in Marine Science, 79, 103823. https://doi.org/10.1016/j.rsma.2024.103823
Izumi, Y., Takeuchi, W., Sulaiman, A., Widodo, J., Awaluddin, A., Kozan, O., & Zahro, Q. (2025). Sentinel-1 time-series SAR interferometry for understanding tropical peat surface oscillation. Remote Sensing Applications: Society and Environment, 38, 101541. https://doi.org/10.1016/j.rsase.2025.101541
Jalilov, S.-M., Rochmayanto, Y., Hidayat, D. C., Raharjo, J. T., Mendham, D., & Langston, J. D. (2025). Unveiling economic dimensions of peatland restoration in Indonesia: A systematic literature review. Ecosystem Services, 71, 101693. https://doi.org/10.1016/j.ecoser.2024.101693
Kaewlom, P., Udomkun, P., Rupngam, T., Masso, C., Messiga, A. J., Müller, J., & Boonupara, T. (2025). Degradation mapping in Southeast Asia using a partial soil health index based on physicochemical indicators. Applied Soil Ecology, 215, 106480. https://doi.org/10.1016/j.apsoil.2025.106480
Kurnianto, S., Jabbar, A., Fitriyah, N. A., Asyhari, A., Balamurugan, M., Ghimire, C. P., Pertiwi, N., Susanto, A. P., Nurwanda, A., Gunawan, S., Nurholis, Nardi, Suardiwerianto, Y., Simamora, N., Salam, Y. W., Haldar, A. K., Evans, C. D., Page, S. E., Agus, F., … Deshmukh, C. S. (2026). Hydrological dynamics in a tropical peatland mosaic at Pulau Padang, Indonesia: Influence of land-cover changes and rainfall variability. Journal of Hydrology: Regional Studies, 64, 103185. https://doi.org/10.1016/j.ejrh.2026.103185
Kuwata, M. (2024). Atmospheric emissions, processes, and impacts of tropical peatland fire haze in Equatorial Asia: A review. Atmospheric Environment, 331, 120575. https://doi.org/10.1016/j.atmosenv.2024.120575
Langhammer, J., Hordiienko, O., & Sheshadrivasan, V. K. (2025). Assessing thermal and hydrological responses to montane peatland rewetting using UAV monitoring. Science of The Total Environment, 1001, 180510. https://doi.org/10.1016/j.scitotenv.2025.180510
Mahdiyasa, A. W., Melly, M., Pasaribu, U. S., Taufik, M., & Muljadi, B. P. (2025). Peatfr: An R package to forecast tropical peatland fire risk with stochastic, machine learning, and optimisation methods. Ecological Informatics, 92, 103532. https://doi.org/10.1016/j.ecoinf.2025.103532
Meena, M., Dheebakaran, J., Rangasamy, A., Kaliappan, S. B., Kovilpillai, B., Alagarswamy, S., & Ramanathan, R. (2025). Microbial carbon dynamics in tropical forests: Linking soil processes to atmospheric impacts under climate stress. Science of The Total Environment, 991, 179918. https://doi.org/10.1016/j.scitotenv.2025.179918
Nesha, K., Herold, M., Reiche, J., Swails, E., & Hergoualc’h, K. (2026). GHG emissions from recent peat forest disturbances: A driver-specific analysis across Indonesia, Peru, and DRC. Journal of Environmental Management, 404, 129290. https://doi.org/10.1016/j.jenvman.2026.129290
Novita, N., Asyhari, A., Ritonga, R. P., Gangga, A., Anshari, G. Z., Jupesta, J., Bowen, J. C., Lestari, N. S., Kauffman, J. B., Hoyt, A. M., Perryman, C. R., Albar, I., Putra, C. A. S., Adinugroho, W. C., Winarno, B., Castro, M., Yeo, S., Budiarna, T., Yuono, E., & Sianipar, V. C. (2024). Strong climate mitigation potential of rewetting oil palm plantations on tropical peatlands. Science of The Total Environment, 952, 175829. https://doi.org/10.1016/j.scitotenv.2024.175829
Oropeza Abregú, Y., & Sheikh, H. A. (2026). A dual-workflow framework for evaluating pulp and paper industry impacts on nature. Environmental Impact Assessment Review, 118, 108307. https://doi.org/10.1016/j.eiar.2025.108307
Pratama, A. A., Maryudi, A., & Kleinschmit, D. (2026). Climate change in Indonesian forest governance: A frame analysis of the scientific discourse. Forest Policy and Economics, 186, 103766. https://doi.org/10.1016/j.forpol.2026.103766
Purnata, S., Suha, S. J., & Shampa, Mosa. T. A. (2026). Impact of climate change on natural blue carbon resources of Bangladesh. Ecohydrology & Hydrobiology, 26(2), 100747. https://doi.org/10.1016/j.ecohyd.2026.100747
Saleh, N. L., Sali, A., Jiun Terng, L., Syed Ahmad Abdul Rahman, S. M., Mohd Ali, A., Mohd Ali, B., Mohd Razali, S., Nuruddin, A. A., & Ramli, N. (2025). Peatland forest monitoring and management solution in Peninsular Malaysia: Optimal parameters for LoRa data. Ain Shams Engineering Journal, 16(6), 103374. https://doi.org/10.1016/j.asej.2025.103374
Shivaprasad, K. M., Sowmya, M. S., Danakumara, T., Gowda, M. M., Kumar, R., Kumar, S. D., & Kumar, B. S. (2025). Chapter 4—Forest fire and its impact on forest biodiversity. In P. Saikia, A. Kumar, M. L. Khan, & X. Lei (Eds.), Forests for Inclusive and Sustainable Economic Growth (pp. 37–53). Elsevier. https://doi.org/10.1016/B978-0-443-31406-3.00004-7
Sillanpää, M., Friess, D. A., Heatubun, C. D., Cragg, S. M., Alei, F., Bhargava, R., Wahyudi, Hendri, Kalor, J. D., Purwanto, Marlessy, C., Yudha, R. P., Sidik, F., Murdiyarso, D., & Lupascu, M. (2024). Mangrove management practices, policies, and impacts in New Guinea. Biological Conservation, 296, 110697. https://doi.org/10.1016/j.biocon.2024.110697
Siregar, C. A., Alhamd, L., Pratiwi, Narendra, B. H., Dharmawan, I. W. S., Hadi, E. E. W., Tendi, & Yusup, A. A. (2026). The stand structure, species diversity, and carbon of Mendawak Protected Forest, West Kalimantan-Indonesia. Trees, Forests and People, 25, 101244. https://doi.org/10.1016/j.tfp.2026.101244
Song, C., Choi, H.-A., Choi, E., Yang, A.-R., Lee, W.-K., & Lim, C.-H. (2024). Setting the direction of sustainable restoration projects in peatlands considering ecosystem services: Case of Jambi and Sumatra Selatan, Indonesia. Ecological Indicators, 160, 111784. https://doi.org/10.1016/j.ecolind.2024.111784
Ulya, N. A., Nurlia, A., Premono, B. T., Waluyo, E. A., Yunardy, S., & Martin, E. (2025). Understanding peat swamp forest transitions: Sustainability strategies and livelihood adaptation in Ogan Komering Ilir Regency, South Sumatra, Indonesia. Trees, Forests and People, 20, 100869. https://doi.org/10.1016/j.tfp.2025.100869
Vicarelli, M., Georgescu, A., & Sudmeier-Rieux, K. (2024). Cost-benefit and equity analysis of nature-based solutions in Haiti, India, Indonesia and Uganda. Nature-Based Solutions, 6, 100196. https://doi.org/10.1016/j.nbsj.2024.100196
Wibisono, M. G., Asdak, C., Wawan, & Dwiratna, S. (2025). Unlocking the sustainability potential of Liberica coffee (Coffea liberica) in Riau’s tropical peatlands: Strategic insights from Rangsang Island, Indonesia. Sustainable Futures, 10, 101187. https://doi.org/10.1016/j.sftr.2025.101187
Authors
Copyright (c) 2026 Cedric Butler, Veronica Smith, Wayne Miller

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.