The Intersection of Education and Local Environmental Issues: Secondary Students' Views and Actions on Peatland Ecosystems in Global Warming Phenomenon
(1) Physics Education Study Program, Universitas Sriwijaya
(2) Physics Education Study Program, Universitas Sriwijaya
(3) Primary Teacher Education Study Program, Universitas Sriwijaya
(*) Corresponding Author
Abstract
The escalating degradation of peatland ecosystems, coupled with the urgent global warming crisis, has raised concerns about the role of education in fostering environmental awareness and actionable solutions among younger generations. This study explores secondary students' views and actions regarding peatland ecosystems within the context of global warming. The purpose is to examine how education influences students' understanding of peatlands' role in climate change and the actions they take to mitigate environmental impacts. Using a mixed-methods design, semi-structured interviews and surveys were conducted with 105 students from grades 10 to 12 in Indonesia. Findings reveal that while students possess a strong awareness of peatlands' importance, their actions toward conservation remain limited. Many students express concern about global warming and peatland degradation but face barriers such as insufficient local initiatives and a lack of actionable knowledge. The study concludes that while education fosters awareness, there is a need for more practical, community-based learning opportunities to bridge the gap between knowledge and action. Implications suggest that integrating environmental education with hands-on conservation projects, as well as promoting stronger governmental and community involvement, could enhance student engagement in peatland conservation and other local environmental issues.
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Adriani, D., Yazid, M., Riswani, Damayanthy, D., Choi, E., & Yang, H. (2024). Livelihood Alternatives in Restored Peatland Areas in South Sumatra Province, Indonesia. Land, 13(5). https://doi.org/10.3390/land13050643
Anshari, G. Z., Gusmayanti, E., Afifudin, M., Ruwaimana, M., Hendricks, L., & Gavin, D. G. (2022). Carbon loss from a deforested and drained tropical peatland over four years as assessed from peat stratigraphy. Catena, 208(August 2021), 105719. https://doi.org/10.1016/j.catena.2021.105719
Anshari, G. Z., Gusmayanti, E., Novita, N., & West, L. (2021). The Use of Subsidence to Estimate Carbon Loss from Deforested and Drained Tropical Peatlands in Indonesia from. Forest, 12732. https://doi.org/https://doi.org/10.3390/f12060732
Ardoin, N. M., Bowers, A. W., & Gaillard, E. (2020). Environmental education outcomes for conservation: A systematic review. Biological Conservation, 241(August 2019), 108224. https://doi.org/10.1016/j.biocon.2019.108224
Ariffin, N., Sundram, V. P. K., & Zulfakar, M. H. (2024). Halal purchasing strategies of MSEs in the Malaysian food industry: An exploratory study on the potential sse of CAQDAS in the qualitative evaluation of multiple case studies. Information Management and Business Review, 16(3), 164–174. https://doi.org/https://doi.org/10.22610/imbr.v16i3S(I)a
Awdziej, M., Jaciow, M., Lipowski, M., Tkaczyk, J., & Wolny, R. (2023). Students Digital Maturity and Its Implications for Sustainable Behavior. Sustainability (Switzerland), 15(9). https://doi.org/10.3390/su15097269
Babalola, F. I., Oriji, O., Gbolahan Olaoluwa Oladayo, Abitoye, O., & Chibuike Daraojimba. (2023). Integrating Ethics and Professionalism in Accounting Education for Secondary School Students. International Journal of Management & Entrepreneurship Research, 5(12), 863–878. https://doi.org/10.51594/ijmer.v5i12.622
Barros, B., Oliveira, M., & Morais, S. (2023). Continent-based systematic review of the short-term health impacts of wildfire emissions. Journal of Toxicology and Environmental Health - Part B: Critical Reviews, 26(7), 387–415. https://doi.org/10.1080/10937404.2023.2236548
Basuki, I., Boone Kauffman, J., Peterson, J. T., Anshari, G. Z., & Murdiyarso, D. (2021). Land cover and land use change decreases net ecosystem production in tropical peatlands of West Kalimantan, Indonesia. Forests, 12(11), 1–15. https://doi.org/10.3390/f12111587
Bhattacharya, D., Carroll Steward, K., & Forbes, C. T. (2021). Empirical research on K-16 climate education: A systematic review of the literature. Journal of Geoscience Education, 69(3), 223–247. https://doi.org/10.1080/10899995.2020.1838848
Bott, L.-M. (2020). Living with sea level change and coastal flooding – Collective responses of households and communities in Indonesia. Universität zu Köln.
Burgos-ayala, A., Jim, A., & Rozas-v, D. (2022). Lessons learned and challenges for environmental management in Colombia : The role of communication , education and participation strategies. Journal for Nature Conservation, 70(September), 126281. https://doi.org/10.1016/j.jnc.2022.126281
Calculli, C., D’Uggento, A. M., Labarile, A., & Ribecco, N. (2021). Evaluating people’s awareness about climate changes and environmental issues: A case study. Journal of Cleaner Production, 324(June), 129244. https://doi.org/10.1016/j.jclepro.2021.129244
Chung, S., & Yu, E.-J. (2021). Assessing Middle School Students’ Understanding of Radiative Equilibrium, the Greenhouse Effect, and Global Warming Through Their Interpretation of Heat Balance Data. Journal of the Korean Earth Science Society, 42(6), 770–788. https://doi.org/10.5467/jkess.2021.42.6.770
Cvetkovi?, V. M., Sudar, S., Ivanov, A., Luki?, T., & Grozdani?, G. (2024). Exploring environmental awareness , knowledge , and safety : A comparative study among students in Montenegro and North Macedonia. Open Geosciences, 16(1), 1–44. https://doi.org/https://doi.org/10.1515/geo-2022-0669
Darvishmotevali, M., & Altinay, L. (2022). Green HRM , environmental awareness and green behaviors : The moderating role of servant leadership. Tourism Management, 88(March 2021), 104401.
Dattalo, P. (2008). Determining Sample Size: Balancing Power, Precision, and Practicality. Oxford University Press. https://doi.org/https://doi.org/10.1093/acprof:oso/9780195315493.001.0001
Davis, L. F., Tainatongo, M., Meza, L. A., Breen, B. Y. T., Martinez, K. K., Sacoman, K., Kaufmann, M., Tainatongo, M., Meza, L. A., Breen, B. Y. T., & Martinez, K. K. (2024). Natural leaders : Strategies and barriers for environmental leadership development in diverse young adults. The Journal of Environmental Education, 1–22. https://doi.org/https://doi.org/10.1080/00958964.2024.2427069
Day, G., Fuller, R. A., Nichols, C., Dean, A. J., & Dean, A. J. (2022). Characteristics of immersive citizen science experiences that drive conservation engagement. People and Nature, 4(4), 983–995. https://doi.org/10.1002/pan3.10332
Debrah, J. K., Vidal, D. G., & Dinis, M. A. P. (2021). Raising awareness on solid waste management through formal education for sustainability: A developing countries evidence review. Recycling, 6(1), 1–21. https://doi.org/10.3390/recycling6010006
Djuwita, R., & Benyamin, A. (2019). Teaching Pro-Environmental Behavior: A Challenge in Indonesian Schools. Psychological Research on Urban Society, 2(1), 26–35. https://doi.org/10.7454/proust.v2i1.48
Du, J., Shen, Z., Song, M., & Vardanyan, M. (2023). The role of green financing in facilitating renewable energy transition in China : Perspectives from energy governance , environmental regulation , and market reforms. Energy Economics, 120(September 2022), 106595. https://doi.org/10.1016/j.eneco.2023.106595
Fachrie, M. (2020). Indonesia’s Forest Fire and Haze Pollution: An Analysis of Human Security. MJIR | The Malaysian Journal of International Relations, 8(1), 104–117.
Graham, L. L. B., Applegate, G. B., Thomas, A., Ryan, K. C., Saharjo, B. H., & Cochrane, M. A. (2022). A Field Study of Tropical Peat Fire Behaviour and Associated Carbon Emissions. Fire, 5(3), 1–20. https://doi.org/10.3390/fire5030062
Grose, M. R., Boschat, G., Trewin, B., Round, V., Ashcroft, L., King, A. D., Narsey, S., & Hawkins, E. (2023). Australian climate warming: observed change from 1850 and global temperature targets. Journal of Southern Hemisphere Earth Systems Science, 73(1), 30–43. https://doi.org/10.1071/es22018
Hailemariam, M., Gebru, A., & Skjerdal, T. (2022). Empowering rural society through non-formal environmental education : An empirical study of environment and forest development community projects in Ethiopia. Heliyon, 8(August 2021), e09127. https://doi.org/10.1016/j.heliyon.2022.e09127
Han, P., Tong, Z., Sun, Y., & Chen, X. (2022). Impact of Climate Change Beliefs on Youths’ Engagement in Energy-Conservation Behavior: The Mediating Mechanism of Environmental Concerns. International Journal of Environmental Research and Public Health, 19(12). https://doi.org/10.3390/ijerph19127222
Hansen, J. E., Sato, M., Simons, L., Nazarenko, L. S., Sangha, I., Kharecha, P., Zachos, J. C., von Schuckmann, K., Loeb, N. G., Osman, M. B., Jin, Q., Tselioudis, G., Jeong, E., Lacis, A., Ruedy, R., Russell, G., Cao, J., & Li, J. (2023). Global warming in the pipeline. Oxford Open Climate Change, 3(1). https://doi.org/10.1093/oxfclm/kgad008
Hapsari, K. A., Jennerjahn, T., Nugroho, S. H., Yulianto, E., & Behling, H. (2022). Sea level rise and climate change acting as interactive stressors on development and dynamics of tropical peatlands in coastal Sumatra and South Borneo since the Last Glacial Maximum. Global Change Biology, 28(10), 3459–3479. https://doi.org/10.1111/gcb.16131
Harrison, M. E., Bramansa, J., Laura, O., Gallego, A., & Adib, S. (2020). Tropical forest and peatland conservation in Indonesia : Challenges and directions. People Nature, 2(1), 4–28. https://doi.org/10.1002/pan3.10060
Hassan, Q., Algburi, S., & Zuhair, A. (2023). Green hydrogen : A pathway to a sustainable energy future. International Journal of Hydrogen Energy, 50, 310–333. https://doi.org/10.1016/j.ijhydene.2023.08.321
Hein, L., Sumarga, E., Quiñones, M., & Suwarno, A. (2022). Effects of soil subsidence on plantation agriculture in Indonesian peatlands. Regional Environmental Change, 22(4), 1–13. https://doi.org/10.1007/s10113-022-01979-z
Irfan, M., Koriyanti, E., Saleh, K., Hadi, Safrina, S., Awaludin, Sulaiman, A., Akhsan, H., Suhadi, Suwignyo, R. A., Choi, E., & Iskandar, I. (2024). Dynamics of Peatland Fires in South Sumatra in 2019: Role of Groundwater Levels. Land, 13(3). https://doi.org/10.3390/land13030373
Kabeshita, L., Sloat, L. L., Fischer, E. V., Kampf, S., Magzamen, S., Schultz, C., Wilkins, M. J., Kinnebrew, E., & Mueller, N. D. (2023). Pathways framework identifies wildfire impacts on agriculture. Nature Food, 4(8), 664–672. https://doi.org/10.1038/s43016-023-00803-z
Kelly, R., Elsler, L. G., Polejack, A., van der Linden, S., Tönnesson, K., Schoedinger, S. E., Santoro, F., Pecl, G. T., Palmgren, M., Mariani, P., Glithero, D., Evans, K., Cvitanovic, C., Cook, J., Bartram, J., & Wisz, M. S. (2022). Empowering young people with climate and ocean science: Five strategies for adults to consider. One Earth, 5(8), 861–874. https://doi.org/10.1016/j.oneear.2022.07.007
KLHK RI. (2019). Indikasi Luas Kebakaran 2019. In KLHK RI (Kementerian Lingkungan Hidup dan Kehutanan Republik Indonesia). https://sipongi.menlhk.go.id/indikasi-luas-kebakaran
KLHK RI. (2023). Indikasi Luas Kebakaran 2023. In KLHK RI (Kementerian Lingkungan Hidup dan Kehutanan Republik Indonesia). https://sipongi.menlhk.go.id/indikasi-luas-kebakaran
Kolenatý, M., Kroufek, R., & ?in?era, J. (2022). What Triggers Climate Action: The Impact of a Climate Change Education Program on Students’ Climate Literacy and Their Willingness to Act. Sustainability (Switzerland), 14(16). https://doi.org/10.3390/su141610365
Kranz, J., Schwichow, M., Breitenmoser, P., & Niebert, K. (2022). The (Un)political Perspective on Climate Change in Education—A Systematic Review. Sustainability (Switzerland), 14(7). https://doi.org/10.3390/su14074194
Kurdiati, L. A., Apriana, R., & Saparini. (2024). Transformation of Sustainability Science Education : PISA 2025 Science Framework and ESD on E-Worksheets Science in the Context of the Role of Peatland in Global Warming Phenomenon. Kasuari : Physics Education Journal (KPEJ), 7(2), 417–431.
Kurdiati, L. A., & Fathurohman, A. (2024). Exploring Next Generations for a Sustainable Future: A Systematic Literature Review on Sustainability Awareness among High School Students in Indonesia. JIPI (Jurnal IPA Dan Pembelajaran IPA), 8(2), 168–182. https://doi.org/10.24815/jipi.v8i2.39013
Kyambade, M., Mugerwa, G. W., & Namatovu, A. (2025). Insights on climate change in a business university setting : a case of Environmental Management students Insights on climate change in a business university setting : a case of. Cogent Education, 12(1). https://doi.org/10.1080/2331186X.2024.2442192
Lahlali, R., Taoussi, M., Laasli, S. E., Gachara, G., Ezzouggari, R., Belabess, Z., Aberkani, K., Assouguem, A., Meddich, A., El Jarroudi, M., & Barka, E. A. (2024). Effects of climate change on plant pathogens and host-pathogen interactions. Crop and Environment, 3(3), 159–170. https://doi.org/10.1016/j.crope.2024.05.003
Lee, Y. L. (2024). An Investigation on High School Students ’ Understanding and Misconceptions of the Greenhouse Effect In Brunei Darussalam. International Journal of Arts and Social Science, 7(5), 229–242.
Lehnert, M., Fiedor, D., Frajer, J., Hercik, J., & Jurek, M. (2020). Czech students and mitigation of global warming: beliefs and willingness to take action. Environmental Education Research, 26(6), 864–889. https://doi.org/10.1080/13504622.2019.1694140
Lestari, S., Winarno, B., Premono, B. T., Syabana, T. A. A., Azwar, F., Sakuntaladewi, N., Mendham, D., & Jalilov, S. (2021). Opportunities and challenges for land use-based peatland restoration in Kayu Labu Village, South Sumatra, Indonesia. IOP Conference Series: Earth and Environmental Science, 917(1). https://doi.org/10.1088/1755-1315/917/1/012021
Locke, K., Feldman, M., & Golden-biddle, K. (2022). Coding Practices and Iterativity : Beyond Templates for Analyzing Qualitative Data. Organizational Research Methods, 25(2), 262–284. https://doi.org/10.1177/1094428120948600
Lupascu, M., Taillardat, P., Sasmito, S. D., Agus, F., Mudiyarso, D., Ramchunder, S. J., Tata, H. L., & Taylor, D. (2023). Climate-smart peatland management and the potential for synergies between food security and climate change objectives in Indonesia. Global Environmental Change, 82(August), 102731. https://doi.org/10.1016/j.gloenvcha.2023.102731
Macagno, T., Nguyen-quoc, A., & Jarvis, S. P. (2024). Nurturing Sustainability Changemakers through Transformative Learning Using Design Thinking : Evidence from an Exploratory Qualitative Study. Sustainability (Switzerland), 16(3), 1243.
Magnan, G., Garneau, M., Le Stum-Boivin, É., Grondin, P., & Bergeron, Y. (2020). Long-Term Carbon Sequestration in Boreal Forested Peatlands in Eastern Canada. Ecosystems, 23(7), 1481–1493. https://doi.org/10.1007/s10021-020-00483-x
Malhi, G. S., Kaur, M., & Kaushik, P. (2021). Impact of climate change on agriculture and its mitigation strategies: A review. Sustainability (Switzerland), 13(3), 1–21. https://doi.org/10.3390/su13031318
Mander, Ü., Espenberg, M., Melling, L., & Kull, A. (2024). Peatland restoration pathways to mitigate greenhouse gas emissions and retain peat carbon. Biogeochemistry, 167(4), 523–543. https://doi.org/10.1007/s10533-023-01103-1
McCarter, C. P. R., Clay, G. D., Wilkinson, S. L., Sigmund, G., Davidson, S. J., Taufik, M., Page, S., Shuttleworth, E. L., McLagan, D., Chenier, G., Clark, A., & Waddington, J. M. (2024). Peat fires and legacy toxic metal release: An integrative biogeochemical and ecohydrological conceptual framework. Earth-Science Reviews, 256(December 2023), 104867. https://doi.org/10.1016/j.earscirev.2024.104867
Merten, J., Nielsen, J. Ø., Rosyani, & Faust, H. (2021). Climate change mitigation on tropical peatlands: A triple burden for smallholder farmers in Indonesia. Global Environmental Change, 71(March). https://doi.org/10.1016/j.gloenvcha.2021.102388
Meyer, S., Fowler, K., Ludwig, C. M., Bell, P., Carrera Zamanillo, I., Steffens, B., Henrickson, L., Donovan-Hermann, L., Street, B., Smith, H., & Griffiths, M. (2024). Should Climate Science Be Local? YES!! Connected Science Learning, 6(4), 182–191. https://doi.org/10.1080/24758779.2024.2360517
Miller, M. A., Tonoto, P., & Taylor, D. (2022). Sustainable development of carbon sinks? Lessons from three types of peatland partnerships in Indonesia. Sustainable Development, 30(1), 241–255. https://doi.org/10.1002/sd.2241
Mishra, S., Page, S. E., Cobb, A. R., Ser, J., & Lee, H. (2021). Degradation of Southeast Asian tropical peatlands and integrated strategies for their better management and restoration. Journal of Applied Ecology, 58(7), 1370–1387. https://doi.org/10.1111/1365-2664.13905
Muluneh, M. G. (2021). Impact of climate change on biodiversity and food security: a global perspective—a review article. Agriculture and Food Security, 10(1), 1–25. https://doi.org/10.1186/s40066-021-00318-5
Nadeem, K., Yaseen, Z., & Muzaffar, M. (2023). Climate Change and Global Boiling: An Understanding. Annals of Human and Social Sciences, 4(3), 1–16. https://doi.org/http://doi.org/10.35484/ahss.2023(4-III)79
Nashier, I., & Lakra, P. (2020). Global Climate change and its effects. Integrated Journal of Social Sciences Integr. J. Soc. Sci, 2020(1), 14–23. http://pubs.iscience.in/ijss
Ningsih, W., & Akhyar, Y. (2024). Empowering Students as Agents of Change in Sustainable Society 5. Journal of Smart System (JSS), 3(2), 1–19.
Oe, H., Yamaoka, Y., & Ochiai, H. (2022). A Qualitative Assessment of Community Learning Initiatives for Environmental Awareness and Behaviour Change: Applying UNESCO Education for Sustainable Development(ESD) Framework. International Journal of Environmental Research and Public Health, 19(6). https://doi.org/10.3390/ijerph19063528
Okada, A., & Gray, P. (2023). A Climate Change and Sustainability Education Movement: Networks, Open Schooling, and the ‘CARE-KNOW-DO’ Framework. Sustainability (Switzerland), 15(3). https://doi.org/10.3390/su15032356
Olatunde-Aiyedun, T. G., Olatunde, M., & Jacob, O. N. (2022). Causes, Effects, and Predictions of the Global Climate Change: 2012–2026. Web of Semantic: Universal Journal on Innovative Education, 1(1), 29–40.
Olumorin, C. O., Babalola, E. O., Ashaolu, S., & Omolafe, E. V. (2022). Students ‘ Attitude Towards the Utilization of Google Classroom for Learning. Indonesian Journal of Educational Research and Technology, 2(3), 213–222.
Piscitelli, A., & D’Uggento, A. M. (2022). Do young people really engage in sustainable behaviors in their lifestyles? Social Indicators Research, 163(3), 1467–1485. https://doi.org/10.1007/s11205-022-02955-0
Purwaningsih, A., Lubis, S. W., Hermawan, E., Andarini, D. F., Harjana, T., Ratri, D. N., Ridho, A., Risyanto, & Sujalu, A. P. (2022). Moisture Origin and Transport for Extreme Precipitation over Indonesia’s New Capital City, Nusantara in August 2021. Atmosphere, 13(9), 1–19. https://doi.org/10.3390/atmos13091391
Rabbi, M. F., & Kovács, S. (2024). Quantifying global warming potential variations from greenhouse gas emission sources in forest ecosystems. Carbon Research, 3(1). https://doi.org/10.1007/s44246-024-00156-7
Raihan, A., Ridwan, M., & Rahman, S. (2024). Climate Smart Agriculture An exploration of the latest developments , obstacles , and potential future pathways for climate-smart agriculture. Climate Smart Agriculture, 1(2), 100020. https://doi.org/10.1016/j.csag.2024.100020
Ranney, M. A., & Velautham, L. (2021). Climate change cognition and education: given no silver bullet for denial, diverse information-hunks increase global warming acceptance. Current Opinion in Behavioral Sciences, 42, 139–146. https://doi.org/10.1016/j.cobeha.2021.08.001
Räsänen, A., Albrecht, E., Annala, M., Aro, L., Laine, A. M., Maanavilja, L., Mustajoki, J., Ronkanen, A. K., Silvan, N., Tarvainen, O., & Tolvanen, A. (2023). After-use of peat extraction sites – A systematic review of biodiversity, climate, hydrological and social impacts. Science of the Total Environment, 882(January). https://doi.org/10.1016/j.scitotenv.2023.163583
Riazi, A. M., Ghanbar, H., & Rezvani, R. (2023). Qualitative Data Coding and Analysis : A Systematic Review of the Papers Published in the Journal of Second Language Writing a Hamad. Iranian Journal of Language Teaching Research, 11(1), 25–47.
Ribeiro, K., Pcheco, F. S., Ferreira, J. W., & Hastie, A. (2021). Tropical peatlands and their contribution to the global carbon cycle and climate change. Global Change Biology, 27(3), 489–505. https://doi.org/https://doi.org/10.1111/gcb.v27.3
Rodríguez Vásquez, M. J., Benoist, A., Roda, J. M., & Fortin, M. (2021). Estimating Greenhouse Gas Emissions From Peat Combustion in Wildfires on Indonesian Peatlands, and Their Uncertainty. Global Biogeochemical Cycles, 35(2), 1–17. https://doi.org/10.1029/2019GB006218
Saharjo, B. H., & Novita, N. (2022). The high potential of peatland fires management for greenhouse gas emissions reduction in indonesia. Journal of Tropical Silviculture, 13(01), 53–65. https://doi.org/10.29244/j-siltrop.13.01.53-65
Salimi, S., Almuktar, S. A. A. A. N., & Scholz, M. (2021). Impact of climate change on wetland ecosystems: A critical review of experimental wetlands. Journal of Environmental Management, 286(January), 112160. https://doi.org/10.1016/j.jenvman.2021.112160
Sidauruk, S., Ni, F., Meiliawati, R., Analita, R. N., & Rahmadani, A. (2025). Scientific literacy on peatland across various study programs, genders, and current domicile of university students in Borneo. Journal of Education and Learning (EduLearn), 19(1), 449–459. https://doi.org/10.11591/edulearn.v19i1.21794
Siggery, B., Bennion, H., Morse, S., Murphy, R., & Waite, M. (2023). Practitioner perspectives on the application of palaeoecology in nature conservation. Frontiers in Ecology and Evolution, 11(November), 1–16. https://doi.org/10.3389/fevo.2023.1304510
Soyer, M., Fatih, M., Ziyanak, S., & Bhakta, B. (2024). Enhancing Student Learning Through #DigitalPowerups, “Pushed me to be Creative”: Student Discussions in Environmental Sociology Course. Research in Social Sciences and Technology, 9(1), 1–30.
Szeberényi, A., Rokicki, T., & Papp-Váry, Á. (2022). Examining the Relationship between Renewable Energy and Environmental Awareness. Energies, 15(19). https://doi.org/10.3390/en15197082
Tasquier, G., Knain, E., & Jornet, A. (2022). Scientific Literacies for Change Making: Equipping the Young to Tackle Current Societal Challenges. Frontiers in Education, 7(April), 1–20. https://doi.org/10.3389/feduc.2022.689329
Tolvanen, A., Juutinen, A., & Svento, R. (2013). Preferences of Local People for the Use of Peatlands : the Case of the Richest Peatland Region in Finland. Ecology and Society, 18(2), 19.
Treby, S., & Grover, S. P. (2024). Carbon and nitrogen storage in Australian Sphagnum peatlands: The influence of feral horse degradation. Journal of Environmental Management, 359(May), 121049. https://doi.org/10.1016/j.jenvman.2024.121049
Ullah, S., You, Q., Zhang, Y., Bhatti, A. S., Ullah, W., Hagan, D. F. T., Ali, A., Ali, G., Jan, M. A., Khan, S. N., & Ali, A. (2020). Evaluation of CMIP5 models and projected changes in temperatures over South Asia under global warming of 1.5 oC, 2 oC, and 3 oC. Atmospheric Research, 246(December 2019). https://doi.org/10.1016/j.atmosres.2020.105122
Vera, J. V. De, Peteros, E. D., Jr, L. B. P., Alcantara, G. A., Tenerife, J. J. L., Villarin, E. R., & Fulgencio, M. D. (2022). Assessing Differences on Students ’ Attributes in Mathematics Based on Their Learning Sessions. Open Journal of Social Sciences, 10(3), 170–185. https://doi.org/10.4236/jss.2022.103012
Volkova, L., Krisnawati, H., Adinugroho, W. C., Imanuddin, R., Qirom, M. A., Santosa, P. B., Halwany, W., & Weston, C. J. (2021). Identifying and addressing knowledge gaps for improving greenhouse gas emissions estimates from tropical peat forest fires. Science of the Total Environment, 763(142933). https://doi.org/10.1016/j.scitotenv.2020.142933
Vre?, I., & Rožman, M. (2024). Fostering SDG Content Integration in the Economics and Business Undergraduate Curriculum : A Faculty-Driven Mapping Approach. Education Sciences, 14(11), 1235.
Walsh, J. E., Ballinger, T. J., Euskirchen, E. S., Hanna, E., Mård, J., Overland, J. E., Tangen, H., & Vihma, T. (2020). Extreme weather and climate events in northern areas: A review. Earth-Science Reviews, 209(July), 103324. https://doi.org/10.1016/j.earscirev.2020.103324
Wider, C., & Wider, W. (2023). Effects of metacognitive skills on physics problem -solving skills among form four secondary school students. Journal of Baltic Science Education, 22(2), 357–369. https://doi.org/https://doi.org/10.33225/jbse/23.22.357
Wu, Y., Li, S., Xu, R., Chen, G., Yue, X., Yu, P., Ye, T., Wen, B., de Sousa Zanotti Stagliorio Coêlho, M., Saldiva, P. H. N., & Guo, Y. (2023). Wildfire-related PM2.5 and health economic loss of mortality in Brazil. Environment International, 174(February). https://doi.org/10.1016/j.envint.2023.107906
Yazid, M., Adriani, D., Riswani, & Damayanthy, D. (2024). Farm Household Vulnerability Due to Land and Forest Fire in Peatland Areas in South Sumatra. Land, 13(5). https://doi.org/10.3390/land13050642
Yeny, I., Garsetiasih, R., Suharti, S., Gunawan, H., Sawitri, R., Karlina, E., Narendra, B. H., Surati, Ekawati, S., Djaenudin, D., Rachmanadi, D., Heriyanto, N. M., Sylviani, & Takandjandji, M. (2022). Examining the Socio-Economic and Natural Resource Risks of Food Estate Development on Peatlands: A Strategy for Economic Recovery and Natural Resource Sustainability. Sustainability (Switzerland), 14(7), 1–29. https://doi.org/10.3390/su14073961
Yunus, M. (2024). A critical review of peatland ecosystem services research in Indonesia: Uncovering knowledge gaps and research needs. Journal of the Bulgarian Geographical Society, 50, 169–190. https://doi.org/10.3897/jbgs.e117635
Yunus, M., Pagdee, A., & Baral, H. (2024). Economics of Peatland Ecosystem Services: A Study of Use and Non-Use Values and People Interplays in Sumatra, Indonesia. Land, 13(6), 1–21. https://doi.org/10.3390/land13060866
Yusuf, A. Y., Silvester, E., Brkljaca, R., Birnbaum, C., Chapman, J., & Grover, S. (2024). Peatland carbon chemistry, amino acids and protein preservation in biogeochemically distinct ecohydrologic layers. European Journal of Soil Science, 75(3), 1–14. https://doi.org/10.1111/ejss.13518
Zulkarnaen, Riandi, & Amprasto. (2023). Analysis of Students ’ Sustainability Awareness of the Environment. Jurnal Penelitian Pendidikan IPA (JPPIPA), 9(9), 6750–6756. https://doi.org/10.29303/jppipa.v9i9.3543
DOI: http://dx.doi.org/10.30998/formatif.v14i2.27851
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