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Abstract
Coffee farming was highly vulnerable to the impacts of climate change. Exploring the strategies used by small farmers in Tanjung Agung Village has had a big impact on climate change. This study aimed to identify the level of knowledge, adaptation practices, and polyculture practices and types of shade trees used by coffee smallholders in facing climate change in Tanjung Agung Village, Semende Darat Ulu Regency. These strategies have made a significant difference. This study used a qualitative, survey-based approach. It also conducted data collection and analysis. This process was both simultaneous and cyclical coffee smallholders have noticed the effects of climate change in the last 1-2 years. Also, 35% of smallholders have known about climate change for the last 3-5 years. Coffee smallholders use indicators to predict climate change. These indicators include increased temperatures and shifts in the rainy and dry seasons. Water availability was also an indicator. Up to 90% of small farmers take steps to reduce climate change. These steps include using better types of coffee, planting trees for shade, and controlling how far apart the coffee plants were. Farmers also make air holes and use coffee bean skins to improve the soil. Our findings show that coffee smallholders understand climate change impacts well. They also quickly use strategies to adapt their crops to the changing climate. Smallholders use 16 types of shade crops as a strategy. The most widely used shade crops were petai, mango, avocado and durian.
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Copyright (c) 2026 Asia Afriyani, Tuty Emilia Agustina, Aura Khalisya Putri Hsaa, Ratih Wijayanti, Ali Martinus

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References
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References
Abid, M., Schneider, U. A., & Scheffran, J. (2016). Farmers’ perceptions of climate change, observed trends and adaptation. Environmental Management, 57, 318–333. https://doi.org/10.1007/s00267-015-0621-4
Afrizal. (2015). Qualitative research methods: an effort to support the use of qualitative research in various disciplines. Jakarta: Raja Grafindo Persada.
Barrett, T. M., Soarimalala, V., Pender, M., Kramer, R. A., & Nunn, C. L. (2025). Climate change perceptions and adaptive behavior among smallholder farmers in northeast madagascar. PLOS Climate, 4(3), e0000501. https://doi.org/10.1371/journal.pclm.0000501
Djufry, F., Wulandari, S., & Villano, R. (2022). Climate smart agriculture implementation on coffee smallholders in indonesia and strategy to accelerate. Land, 11(7), 11–12. https://doi.org/10.3390/land11071112
Ehrenbergerová, L., Klimková, M., Cano, Y. G., Habrová, H., Lvončík, S., Volařík, D., Khum, W., Němec, P., Kim, S., Jelínek, P., & Maděra, P. (2021). Does shade impact coffee yield, tree trunk, and soil moisture on coffea canephora plantations in mondulkiri, cambodia?. Sustainability, 13(24), 13–23. https://doi.org/10.3390/su132413823
Eresanya, E., Durowoju, O. S., Orimoloye, I. R., Daramola, M., Akinyemi, A. A., & Olorunsaye, O. (2021). Understanding weather and climate extremes. In preprint. https://doi.org/10.20944/preprints202105.0338.v1
Heri, A. (2023). Coastal area dynamics.Universitas Brawijaya Press, 1.
Holland, M. B., Shamer, S. Z., Imbach, P., Zamora, J. C., Medellin Moreno, C., Hidalgo, E. J. L., Donatti, C. I., Martínez-Rodríguez, M. R., & Harvey, C. A. (2017). Mapping adaptive capacity and smallholder agriculture: applying expert knowledge at the landscape scale. Climatic Change, 141(1), 139–153. https://doi.org/10.1007/s10584-016-1810-2
IPCC. (2021). Climate change 2021: the physical science basis. Contribution of working group i to the sixth assessment report of the intergovernmental panel on climate change. Cambridge University Press. https://doi.org/10.1017/9781009157896
Jawo, T. O., Kyereh, D., & Lojka, B. (2023). The impact of climate change on coffee production of small smallholders and their adaptation strategies: a review. Climate and Development, 15(2), 93–109. https://doi.org/10.1080/17565529.2022.2057906.
Kobusinge, J., Gabiri, G., Kagezi, G. H., Sseremba, G., Nakitende, A., Arinaitwe, G., & Twesigye, C. K. (2023). Potential of moisture conservation practices to improve soil properties and nutrient status of Robusta coffee plant. Agronomy, 13(4), 1148. https://doi.org/10.3390/agronomy13041148
Koutouleas, A., Arias, M., Barrera, J. F., Zewdie, B., Kagezi, G., Ssekiwoko, F., & Avelino, J. (2025). Impacts of climate change on pests and diseases of coffee in east africa and mesoamerica. Advances in botanical research, 114, 163–206. https://doi.org/10.1016/bs.abr.2024.03.002
Laia, Y., Sarumaha, M. S., & Laia, B. (2022). Guidance and counseling in improving student learning independence at sma negeri 3 susua in the 2021/2022 academic year. Counseling for all (jurnal bimbingan dan konseling), 2(1), 1–12. https://doi.org/10.57094/jubikon.v2i1.367
Luthfia, A. R. (2019). Strengthening climate change literacy among adolescents. Jurnal Abadimas Adi Buana, 3(1), 39–42. https://doi.org/10.36456/abadimas.v3.i1.a1941
Nabila, A. (2019). Farmers' perception and adaptation to climate change in efforts to increase chili production in malang regency, east java province. Universitas Brawijaya. Reporsitory.Ub.Ac.Id. https://doi.org/https://repository.ub.ac.id/id/eprint/179529
Mbwambo, S. G., Kim, C., Kahimba, F. C., & Mutabazi, K. D. (2021). Farmers’ perception of climate change and agricultural adaptation strategies in kilimanjaro region, tanzania. Climate, 9(6), 90. https://doi.org/10.3390/cli9060090
Muara Enim Regency in Figures. (2025). Central statistics agency of muara enim regency. https://muaraenimkab.bps.go.id//
Mubangizi, J., Joseph, M. N., Muyiwa S. A., Faisal, B, Ronnette, A., & Simon, E. (2025). Investigating climate change and emerging theoretical perspectives. Frontiers in Environmental Economics, 4, 1–19. https://doi.org/10.3389/frevc.2025.1410077
Rahmat, A., Khoiru Zaki, M., Effendi, I., Mutolib, A., Yanfika, H., & Listiana, I. (2019). Effect of global climate change on air temperature and precipitation in six cities in Gifu Prefecture, Japan. Journal of Physics: Conference Series, 1155, 012070. https://doi.org/10.1088/1742-6596/1155/1/012070
Sánchez-Reinoso, A. D., Ávila-Pedraza, E. Á., Lombardini, L., & Restrepo-Díaz, H. (2023). The application of coffee pulp biochar improves the physical, chemical, and biological characteristics of soil for coffee cultivation. Journal of Soil Science and Plant Nutrition, 23, 2512–2524. https://doi.org/10.1007/s42729-023-01208-4
Sari, R. R., Sulistyowati, E., Zulkarnain, Z., & van Noordwijk, M. (2023). Tree diversity and social–ecological resilience of coffee-based agroforestry systems in Indonesia. Sustainability Science, 18, 1443–1460. https://doi.org/10.1007/s11625-023-01400-6
Salamanca, A. M., Friess, D. A., Tavenner, I., & Wijaya, A. (2025).
Indonesia ecosystem-based adaptation for coffee. Stockholm Environment Institute (SEI). https://www.sei.org/
Setiawan, Z., Judijanto, L., Azizah, I. S., Heirunissa, H., Islami, V., Suprayitno, D., Basofi, A. S., Fatonah, P. M., Rohman, W. T. A., & A. I. (2024). Introduction to business administration: a comprehensive theory. Sonpedia Publishing Indonesia. ISBN 978-623-8531-40-0.
Silfia, A., & Sudarti, S. (2022). Analysis of climate change and global warming as a critical phase. Journal of Physics and Applied Education. 8(1). https://doi.org/https://doi.org/10.22373/p-jpft.v8i1.13359
Sumampouw, O. J. (2019). Climate change and public health. Deepublish. ISBN 978-623-209-224-2.
Undari, S. M. M. (2024). Understanding research data sources: primary, secondary, and tertiary. Edu Research Journal of the Indonesian Institute for Corporate Learning and Studies (IICLS), 5(3). https://doi.org/https://iicls.org/index.php/jer/article/view/238
Wakuma, M., & Desalegn, A. (2019). Effects of climate change on global arabica coffee (Coffea arabica L) production. Greener journal of plant breeding and crop science, 7(1), 23–30. https://doi.org/10.15580/GJPBCS.2019.1.072319143
Widayat, H.P., & Baihaqi, A. (2015). The impact of climate change on production, yield quality and income of Arabica coffee farmers in Central Aceh. Jurnal Agrisep, 16(2), 8–16. https://doi.org/10.24815/agrisep.v16i2.3041
