Pengembangan Geosains Berkelanjutan melalui Green Mining dan Pemanfaatan Sumber Daya Sirkular

Penulis

  • Nofirman Nofirman Universitas Prof. Dr. Hazairin, SH., Bengkulu
  • Haerawan Haerawan Politeknik Tunas Pemuda Tangerang

DOI:

https://doi.org/10.58812/jgws.v3i03.2809

Kata Kunci:

Geosains Berkelanjutan, Pertambangan Hijau, Penggunaan Sumber Daya Berkelanjutan, Pendekatan Berbasis Sumber Daya, Transisi Keberlanjutan

Abstrak

Integrasi keberlanjutan ke dalam ilmu kebumian mewakili agenda transformatif bagi pengelolaan sumber daya modern. Studi ini melakukan tinjauan literatur sistematis (SLR) terhadap sepuluh dokumen ilmiah dari Google Scholar (2013–2024) untuk mensintesis pendekatan, inovasi, dan tantangan terkini terkait pertambangan hijau dan pemanfaatan sumber daya sirkular sebagai pilar pengembangan ilmu kebumian yang berkelanjutan. Menggunakan metodologi yang dipandu PRISMA dan sintesis tematik, tinjauan ini mengidentifikasi tiga tema penelitian dominan: (1) inovasi teknologi dalam pertambangan hijau, (2) pemanfaatan sumber daya sirkular dan pemulihan material, serta (3) tata kelola dan integrasi kebijakan untuk transformasi berkelanjutan. Temuan menunjukkan bahwa teknologi pertambangan hijau—seperti sistem energi terbarukan, otomatisasi, dan bioleaching—secara signifikan mengurangi jejak lingkungan, sementara pemanfaatan sumber daya sirkular meningkatkan efisiensi material melalui daur ulang dan pemanfaatan kembali limbah. Namun, tantangan tetap ada dalam hal konsistensi regulasi, inklusi sosial-ekonomi, dan standarisasi metrik keberlanjutan. Studi ini mengusulkan model integratif di mana inovasi teknologi, praktik ekonomi sirkular, dan kerangka kerja tata kelola bersinergi untuk membentuk evolusi geosains berkelanjutan. Tinjauan ini memberikan kontribusi teoretis dengan menghubungkan perspektif berbasis sumber daya dan transisi keberlanjutan, serta memberikan wawasan praktis bagi pembuat kebijakan, pemimpin industri, dan peneliti dalam mengembangkan sistem georesource rendah karbon dan sirkular.

Referensi

Ahaneku, C. V, Obiamalu, C. C., Odoh, B. I., Boma, K., Aseh, P., Njoku, A. O., & Muogbo, C. D. (2025). A Review of Seismic Sequence Stratigraphy Applications in Hydrocarbon Exploration along the West African Margin. Asian Journal of Geological Research, 8(2), 130–143.

Araujo, F. S. M., Taborda-Llano, I., Nunes, E. B., & Santos, R. M. (2022). Recycling and reuse of mine tailings: A review of advancements and their implications. Geosciences, 12(9), 319.

Geels, F. W. (2002). Technological transitions as evolutionary reconfiguration processes: a multi-level perspective and a case-study. Research Policy, 31(8–9), 1257–1274.

Goff, C., Gimeno, O., Petkovsek, G., & Roca, M. (2019). Minimising the risks of tailings dams with remote sensing data.

Grimm, N., & Van Der Pluijm, B. (2012). Sustainability needs the geosciences. Wiley Online Library.

Hilson, G. (2017). Shootings and burning excavators: Some rapid reflections on the Government of Ghana’s handling of the informal Galamsey mining ‘menace.’ Resources Policy, 54, 109–116.

Holuszko, M. (2024). A New Life for Old Metals.

Katz, M. (2022). A Sustainable Extractive Industry Requires Educated Responsible Geoscientists. Earth Science, Systems and Society, 2(1), 10046.

Ketterling, C. I., & Germany, B. (2025). The Global Landscape of ESG Guidelines and Standards: Corporate Social Responsibility, Responsible Investment, and ESG Compliance. Center for Open Science.

Kronja, J., & Galić, I. (2025). Integration of Renewable Energy Sources to Achieve Sustainability and Resilience of Mines in Remote Areas. Mining, 5(3), 51.

Kuranchie, C., Yaya, A., & Bensah, Y. D. (2021). The effect of natural fibre reinforcement on polyurethane composite foams–a review. Scientific African, 11, e00722.

Lèbre, É., Stringer, M., Svobodova, K., Owen, J. R., Kemp, D., Côte, C., Arratia-Solar, A., & Valenta, R. K. (2020). The social and environmental complexities of extracting energy transition metals. Nature Communications, 11(1), 4823.

Macarthur, E., & Heading, H. (2019). How the circular economy tackles climate change. Ellen MacArthur Found, 1, 1–71.

Mather, A., & Stokes, M. (2016). Extracting palaeoflood data from coarse‐grained Pleistocene river terrace archives: An example from SE Spain. Earth Surface Processes and Landforms, 41(13), 1991–2004.

Northey, J. M., Cherbuin, N., Pumpa, K. L., Smee, D. J., & Rattray, B. (2018). Exercise interventions for cognitive function in adults older than 50: a systematic review with meta-analysis. British Journal of Sports Medicine, 52(3), 154–160.

Paleologos, E. K., Mohamed, A.-M. O., Singh, D. N., O’Kelly, B. C., Gamal, M. El, Mohammad, A., Singh, P., Goli, V. S. N. S., Roque, A. J., & Oke, J. A. (2025). Sustainability challenges of clean-energy critical minerals: copper and rare earths. Environmental Geotechnics, 12(2), 88–100.

Santos, J. A., Tekle, D., Rosewarne, E., Flexner, N., Cobb, L., Al-Jawaldeh, A., Kim, W. J., Breda, J., Whiting, S., & Campbell, N. (2021). A systematic review of salt reduction initiatives around the world: a midterm evaluation of progress towards the 2025 global non-communicable diseases salt reduction target. Advances in Nutrition, 12(5), 1768–1780.

Senger, K. (2024). Sustainable development goals and the geosciences: A review. Earth Science, Systems and Society, 4(1), 10124.

Shi, S., & Nisar, A. (2025). The Effects of Circular Economy, Green Finance, and ICT Developments on Resource Productivity aimed Ecological Sustainability: Evidence from OECD Countries Using a CS-ARDL Approach. Problemy Ekorozwoju, 20(2), 223–244.

Solikah, A. A., & Bramastia, B. (2024). Systematic Literature Review: Kajian Potensi dan Pemanfaatan Sumber Daya Energi Baru dan Terbarukan Di Indonesia. Jurnal Energi Baru Dan Terbarukan, 5(1), 27–43.

Stewart, I. S., & Gill, J. C. (2017). Social geology—integrating sustainability concepts into Earth sciences. Proceedings of the Geologists’ Association, 128(2), 165–172.

Tranfield, D., Denyer, D., & Smart, P. (2003). Towards a methodology for developing evidence‐informed management knowledge by means of systematic review. British Journal of Management, 14(3), 207–222.

Whitworth, A. J., Forbes, E., Verster, I., Jokovic, V., Awatey, B., & Parbhakar-Fox, A. (2022). Review on advances in mineral processing technologies suitable for critical metal recovery from mining and processing wastes. Cleaner Engineering and Technology, 7, 100451.

Yıldız, T. D. (2024). Opportunities for the recovery of rare earth elements from mining tailings and urban mining. In Trash or Treasure: Entrepreneurial Opportunities in Waste Management (pp. 183–205). Springer.

Unduhan

Dimensions

Diterbitkan

2025-10-31

Cara Mengutip

Pengembangan Geosains Berkelanjutan melalui Green Mining dan Pemanfaatan Sumber Daya Sirkular. (2025). Jurnal Geosains West Science, 3(03), 214~225. https://doi.org/10.58812/jgws.v3i03.2809