Desafíos para la extracción directa de litio desde salares en Chile. De tecnologías singulares a sistemas sociotecnológicos
las Tecnologías Directas de Extracción de Litio. Centro de Energía UC. https://s3.amazonaws.com/assets.energia.uc.cl/ Tecnologias_de_Extraccion_Directa_28_Enero_2025_6f- 2c85e875.pdf Gobierno de Chile. (2023). Estrategia Nacional del Litio. Por Chile y su Gente. https://s3.amazonaws.com/gobcl-prod/ public_files/Campa%C3%B1as/Litio-por-Chile/Estrate- gia-Nacional-del-litio-ES_14062023_2003.pdf Gutiérrez, G., & Ruiz-León, D. (2024). Lithium in Chile: Pre- sent status and future outlook. Materials Advances, 5(20), 7850–7861. https://doi.org/10.1039/D4MA00625A Gutiérrez, J. S., Moore, J. N., Donnelly, J. P., Dorador, C., Nave- do, J. G., & Senner, N. R. (2022). Climate change and lithium mining influence flamingo abundance in the Lithium Triangle. Proceedings of the Royal Society B: Biological Sciences, 289(1970), 20212388. https://doi.org/10.1098/rspb.2021.2388 Guzman, J. I., Faúndez, P., Jara, J. J., & Retamal, C. (2021). Role of Lithium Mining on the Water Stress of the Salar de Ataca- ma Basin. Earth ArXiv. https://doi.org/10.31223/X54S5G Jerez, B., Garcés, I., & Torres, R. (2021). Lithium extractivism and water injustices in the Salar de Atacama, Chile: The co- lonial shadow of green electromobility. Political Geography, 87, 102382. https://doi.org/10.1016/j.polgeo.2021.102382 Kentish, S. E., & Stevens, G. W. (2001). Innovations in separa- tions technology for the recycling and re-use of liquid waste streams. Chemical Engineering Journal, 84(2), 149–159. https://doi.org/10.1016/S1385-8947 (01)00199-1 Li, X., Mo, Y., Qing, W., Shao, S., Tang, C. Y., & Li, J. (2019). Mem- brane-based technologies for lithium recovery from water lithium resources: A review. Journal of Membrane Science, 591, 117317. https://doi.org/10.1016/j.memsci.2019.117317 Liu, W., & Agusdinata, D. B. (2021). Dynamics of local im- pacts in low-carbon transition: Agent-based modeling of lithium mining-community-aquifer interactions in Salar de Atacama, Chile. The Extractive Industries and Society, 8(3), 100927. https://doi.org/10.1016/j.exis.2021.100927 Lorca, M., Olivera Andrade, M., Escosteguy, M., Köppel, J., Scoville-Simonds, M., & Hufty, M. (2022). Mining indigenous territories: Consensus, tensions and ambivalences in the Salar de Atacama. The Extractive Industries and Society, 9, 101047. https://doi.org/10.1016/j.exis.2022.101047 Lorca, M., Olivera Andrade, M., & Garcés, I. (2023). “Se instaló el diablo en el Salar”. Organizaciones atacameñas, agua y minería del litio en el Salar de Atacama. Estudios ataca- meños, 69, e4899. https://doi.org/10.22199/issn.0718-1043- 2023-0004 Mojid, M. R., Lee, K. J., & You, J. (2024). A review on advances in direct lithium extraction from continental brines: Ion-sie- ve adsorption and electrochemical methods for varied Mg/Li ratios. Sustainable Materials and Technologies, 40, e00923. https://doi.org/10.1016/j.susmat.2024.e00923 Nikkhah, H., Ipekçi, D., Xiang, W., Stoll, Z., Xu, P., Li, B., McCut- cheon, J. R., & Beykal, B. (2024). Challenges and opportuni- ties of recovering lithium from seawater, produced water, geothermal brines, and salt lakes using conventional and emerging technologies. Chemical Engineering Journal, 498, 155349. https://doi.org/10.1016/j.cej.2024.155349 Salazar, D. (2010). Tras la senda del cobre atacameño. La historia minera de San José de El Abra. SCM EL Abra. Salazar S, D. (2008). La producción minera en San José del Abra durante el período Tardío atacameño. Estudios atacameños, 36, 43–72. https://doi.org/10.4067/S0718- 10432008000200004 SONAMI. (2024). Litio: Situación actual y desafíos. Sociedad Nacional de Mineria. https://www.sonami.cl/v2/publicacio- nes/litio-situacion-actual-y-desafios/ Torres, D., Pérez, K., Galleguillos Madrid, F. M., Leiva, W. H., Gál- vez, E., Salinas-Rodríguez, E., Gallegos, S., Jamett, I., Castillo, J., Saldana, M., & Toro, N. (2024). Salar de Atacama Lithium and Potassium Productive Process. Metals, 14(10), Article 10. https://doi.org/10.3390/met14101095 Torres, D., & Toro, N. (2023). La fuerza del Litio. SQM y UNAP. Vera, M. L., Torres, W. R., Galli, C. I., Chagnes, A., & Flexer, V. (2023). Environmental impact of direct lithium extraction from brines. Nature Reviews Earth & Environment, 4(3), Arti- cle 3. https://doi.org/10.1038/s43017-022-00387-5 Werny, M., Reem, Y., Ten Have, I., & Bartels, F. (2024, diciem- bre 2). The technology overview: Closing the lithium supply gap with direct lithium extraction (DLE) and…. Extantia Capital. https://medium.com/extantia-capital/the-technolo- gy-overview-closing-the-lithium-supply-gap-with-direct- lithium-extraction-dle-and-d686e0e7a923 Yurisch Toledo, T., González Robles, G., & Ramírez Venegas, E. (2024). Analysis of Information Transparency in the Chilean Lithium Industry. Fundación Terram. Zhang, Y., Sun, W., Xu, R., Wang, L., & Tang, H. (2021). Lithium extraction from water lithium resources through green elec- trochemical-battery approaches: A comprehensive review. Journal of Cleaner Production, 285, 124905. https://doi. org/10.1016/j.jclepro.2020.124905
Made with FlippingBook
RkJQdWJsaXNoZXIy Mzc3MTg=