REFERENCES [1] Ahmed, U. (2024). Latin America's Mining Boom: Opportunities and Obstacles. AZoMining. https://www.azomining.com/Article.aspx?ArticleID=1826 [2] IEA. (2024). Global Critical Minerals Outlook 2024. International Energy Agency, Paris. https://doi.org/10.1787/ied-2024-en [3] Skrzypczyk, A. (2024). Why Latin America's mining industry is embracing renewables. Energy Transition. https://energytransition.org/2024/03/ [4] Gabaldón, I. & Florian, P. (2024). Decarbonizing Latin America's mining industry. Hatch. https://www.hatch.com/About-Us/Publications/Blogs/2024/04/DecarbonizingLatin-Americas-mining-industry [5] Zhang, Z., Sanchidrián, J.A., Ouchterlony, F. & Luukkanen, S. (2022). Reduction of Fragment Size from Mining to Mineral Processing: A Review. Rock Mechanics and Rock Engineering, 55, 3913–3947. https://doi.org/10.1007/s00603-022-03068-3 [6] McKee, D. et al. (1995). Mine to Mill – A New Approach to Optimizing the Value Chain. Proceedings JKMRC Annual Workshop, Brisbane. [7] Purhamadani, E. & Bagherpour, R. (2024). The role of different explosives in reducing energy and emissions in mining comminution for sustainable improvement. Energy, 310, 133233. https://doi.org/10.1016/j.energy.2024.133233 [8] CEEC – Coalition for Eco-Efficient Comminution. (2021). Mining Energy Consumption 2021. https://www.ceecthefuture.org [9] Workman, L. & Eloranta, J. (2003). The effects of blasting on crushing and grinding efficiency and energy consumption. Proceedings of the 29th Annual Conference on Explosives and Blasting Technique, pp. 131–140. Nashville, TN: ISEE. [10] Azofeifa, J.D., Rueda-Castro, V., Camacho-Zuñiga, C., Chans, G.M., MembrilloHernández, J. & Caratozzolo, P. (2024). Future skills for Industry 4.0 integration and innovative learning for continuing engineering education. Frontiers in Education, 9, 1412018. https://doi.org/10.3389/feduc.2024.1412018 [11] Sanchidrián, J.A., Segarra, P. & López, L.M. (2007). Energy components in rock blasting. International Journal of Rock Mechanics and Mining Sciences, 44(1), 130– 147. https://doi.org/10.1016/j.ijrmms.2006.05.002 [12] Cunningham, C.V.B. (1983). The Kuz-Ram model for prediction of fragmentation from blasting. 1st International Symposium on Rock Fragmentation by Blasting, Luleå, pp. 439–453. [13] Cunningham, C.V.B. (2005). The Kuz-Ram fragmentation model – 20 years on. Brighton Conference Proceedings 2005. European Federation of Explosives Engineers, pp. 201–210. [14] Bond, F.C. (1952). The third theory of comminution. Transactions of the American Institute of Mining, Metallurgical and Petroleum Engineers, 193, 484–494. [15] Losaladjome Mboyo, H., Huo, B., Mulenga, F.K., Mabe Fogang, P. & Kalenga Kaunde Kasongo, J. (2024). Assessing the Impact of Surface Blast Design Parameters
RkJQdWJsaXNoZXIy MTM0Mzk2