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Analysis of Evaluation of Revegetation Plant Growth on Post-Mining Land as an Effort to Restore the Function of Absorbing Carbon Dioxide Emissions

Faculty of Engineering, Universitas Prabumulih, Jl. Patra, Prabumulih, Indonesia 31125, Indonesia

Received: 18 Jan 2025; Revised: 2 Feb 2026; Accepted: 11 Feb 2026; Published: 15 Mar 2026.
Editor(s): Budi Warsito

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Abstract

Mining activities can reduce carbon dioxide emission sources by opening mining land, so efforts are needed to restore land function through reclamation with revegetation. Increasing vegetated land can help mitigate climate change. This study aims to evaluate the growth of revegetation plants to determine the success of revegetation. The results showed that the success rate of revegetation on ex-mining land in the Air Laya IUP of PT Bukit Asam reached 93%, where the percentage of plant growth reached 93.7%, plant health 92.3%, and the number of plants/ha was 590 plants. High revegetation success can increase the source of oxygen production and absorption of carbon dioxide emissions to restore the environmental function of vegetated land. In addition, changes in land cover directly impact changes in carbon storage. 

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Analysis of Evaluation of Revegetation Plant Growth on Post-Mining Land as an Effort to Restore the Function of Absorbing Carbon Dioxide Emissions
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Keywords: reclamation, revegetation, emissions, CO2

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  1. Adiputra, M. 2018. The Potential of Nickel Industry in Indonesia and Analysis of Large Scale Electric Vehicle Battery Production. Journal of Energy and Power Engineering, 12(3), 153-157
  2. Ahdyannor, M.I., Kissinger, Priatmadi, B.J. & Badaruddin. 2021. Upaya Peningkatan Perusahaan Dalam Pelaksanaan Post-Mining Revegetation at PTBinuang Mitra Bersama. EnviroScienteae. 17(3):98–105
  3. Aipassa, M.I., Zainuddin, Z. & Hasan, H., 2020, ‘Tingkat keberhasilan reklamasi lahan bekas tambang batubara pada PT Bukit Baiduri Energi Kabupaten Kutai Kartanegara kota Samarinda Kalimantan Timur’, Dinamika Lingkungan Indonesia, 7(2), 102
  4. Al-sharif, A.A.A. and Pradhan, B. 2014. Monitoring and predicting land use change in Tripoli Metropolitan City using an integrated markov chain and cellular automata models in GIS. Arabian Journal of Geosciences. 7 (10) : 4291–301
  5. Dahlan, M. H. 2017. Pemanasan Global dan Dampaknya terhadap Lingkungan. Jurnal Ilmiah Mahasiswa Pertanian, 2(3), 94-103
  6. Ge, H., Yi, Y., Yang, X., Yang, L., Su, D. & Ma, L., 2010, ‘Study on Ecological Characteristic and Reclamation in Xiangshui Coal Mining Area, Guizhou, China’, International Journal of Mining, Reclamation and Environment, 24(1), 18–33. https://doi.org/10.1080/17480930903474774
  7. Hanoe, E.M.Y. (2022). The Evaluation of the Success of the Growth of Vegetation in Conservation Efforts at the Area Tanjung Bastian Kabupaten Timor Tengah Utara. Jurnal Ilmu Lingkungan, 20(2), 264-270, doi: 1-.14710/jil.20.2.264-270
  8. Harsono,R., Suba,R.B., Kustiawan,W., Aipassa,M.I.,Sukartiningsih, danRayadin, Y. (2024).Keanekaragaman Vegetasi pada Beberapa Umur Revegetasi di Lahan Reklamasi Pasca Tambang Batubara PT Indominco Mandiri, Kalimantan Timur. Jurnal Ilmu Lingkungan, 22(3), 589-599, doi: 10.14710/jil.22.3.589-599
  9. Lubis, S.H., Arifin, H.S., dan Samsoedin, I., 2013. Analisis cadangan karbon pohon pada lanskap Hutan Kota di DKA Jakarta. Jurnal Penelitian Sosial dan Ekonomi Kehutanan Indonesia, 10 (1): 1-20
  10. Mansur, I., 2011. Teknik Silvikultur untuk Reklamasi Lahan Bekas Tambang. SEAMEO BIOTROP, Bogor
  11. Pratiwi, Y., Rejo, A., Fariani, A & Faizal, M. 2022. Modelling for Estimation Carbon Stocks in Land Cover Using A System Dynamic Approach (Case Study: Prabumulih City, South Sumatera, Indonesia), 28(3). 221-231. Doi, 10.7226/jtfm.28.3.221
  12. Setiadi, Y., 2006. Teknik revegetasi untuk merehabilitasi lahan pasca tambang [terhubung berkala]. Http://pkrlt.ugm.ac.id/files/yadi setiadi.pdf [7 Februari 2016]
  13. Setyowati, R.D.N., Amala, N.A.A. & Nila, N.U. 2017. Studi Pemilihan Tanaman Revegetasi Untuk Keberhasilan Reklamasi Lahan Bekas Tambang. AL-ARD : Jurnal Teknik Lingkungan. 3(1):14–20.DOI: 10.29080/alard.v3i1.256
  14. Syaufina, L., dan Ikhsan, M. 2013. Estimasi Simpanan Karbon di Atas Permukaan Lahan Reklamasi Pasca Tambang PT. ANTAM UBPE Pongkor, Provinsi Jawa Barat. Jurnal Silvikultur Tropika. Vol 4 No 02: 100-107
  15. Wahyudi, A. T., Takeyama, H., Okamura, Y., Fukuda, Y., & Matsunaga, T. (2003). Characterization of Aldehyde Ferredoxin Oxidoreductase-gene defective mutant in Magnetospirillum Magneticum AMB-1. Biochemical and Biophysical Research Communications, 303, 223−229. https://doi.org/10.1016/S0006-291X(03)00303-6
  16. Whitmore, T. 1998. An introduction to tropical rain forests (2nd ed.). New York: Oxford University Press
  17. Yovi, E. Y., Takimoto, Y., & Matsubara, C. 2007, November 26−29). Promoting alternative physical load measurement method: Approaching % VO2 max through HR [Conference presentation]. The Agriculture Ergonomics Development Conference. Kuala Lumpur, Malaysia

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