Track 3: Environmental Stewardship

382 providing an open environment for collaboration, cultural exchange and shared learning on sustainable tailings management in cold climates. REFERENCES Andersland, O. B., & Ladanyi, B. (2004). Frozen ground engineering (2nd ed.). John Wiley & Sons. Davies, M. P., & Rice, S. (2001). An alternative to conventional tailings management – “dry stack” filtered tailings. In Proceedings of the International Symposium on Mining with Backfill. Ecoinvent Association. (2023). Ecoinvent database (version X.X). Retrieved from www.ecoinvent.org Finnish Environment Institute (SYKE). (2022). Environmental impacts of mine waste management in Finland. Finnish Environment Institute. Geological Survey of Finland (GTK). (2021). Bearing capacity and frost conditions of soils in northern regions. Geological Survey of Finland. IPCC. (2021–2023). Sixth Assessment Report (AR6), including Climate Change 2023: Synthesis report. Intergovernmental Panel on Climate Change. Kossoff, D., et al. (2014). Mine tailings dams: Characteristics, failure, environmental impacts, and remediation. Applied Geochemistry, 51, 229–245. Lottermoser, B. G. (2010). Mine wastes: Characterization, treatment and environmental impacts (3rd ed.). Luukkanen, S., Tanhua, A., Zhang, Z., Mollehuara Canales, R., & Auranen, I. (2022). Towards waterless operations from mine to mill. Minerals Engineering, 187, 107793. Sahu, P., et al. (2020). Tailings management in mining industries – Sustainable practices. Journal of Cleaner Production, 276. Tuomela, A. (2022). Enhancing the safety and surveillance of tailings storage facilities in cold climates (Doctoral dissertation, University of Oulu). Retrieved from https://urn.fi/URN:ISBN:978-952-62-3285-6 UNEP. (2019). Mine tailings storage: Safety is no accident. United Nations Environment Programme.

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