Track 2: Process Innovation, Circularity and Recovery

Kim, J., Oh, J., & Sung, G.-H. (2016). MAP kinase Hog1 regulates metabolic changes induced by hyperosmotic stress. Frontiers in Microbiology, 7. doi:10.3389/fmicb.2016.00732 Kiskira, K., Lymperopoulou, T., Lourentzatos, I., Tsakanika, L. A., Pavlopoulos, C., Papadopoulou, K., . . . Ochsenkühn-Petropoulou, M. (2023). Bioleaching of scandium from bauxite residue using fungus Aspergillus niger. Waste and Biomass Valorization, 14(10), 3377-3390. doi:10.1007/s12649-023-02116-5 Krishna, P., Reddy, M. S., Patnaik, S. K., Krishna, P., Reddy, M. S., & Patnaik, S. K. (2005). Aspergillus tubingensis reduces the pH of the bauxite residue (red mud) amended soils. Water, Air, and Soil Pollution, 167(1), 201-209. doi:10.1007/s11270-005-0242-9 Le, L., Tang, J., Ryan, D., & Valix, M. (2006). Bioleaching nickel laterite ores using multi-metal tolerant Aspergillus foetidus organism. Minerals Engineering, 19(12), 1259-1265. doi:10.1016/j.mineng.2006.02.006 Levinskaitė, L., Smirnov, A., Lukšienė, B., Druteikienė, R., Remeikis, V., & Baltrūnas, D. (2009). Pu (IV) and Fe (III) accumulation ability of heavy metal-tolerant soil fungi. Nukleonika, 54(4), 285-290. Liao, J., Jiang, J., Xue, S., Qingyu, C., Wu, H., Manikandan, R., . . . Huang, L. (2018). A novel acid-producing fungus isolated from bauxite residue: the potential to reduce the alkalinity. Geomicrobiology Journal, 35(10), 840-847. doi:10.1080/01490451.2018.1479807 Lyu, F., Hu, Y., Wang, L., & Sun, W. (2021). Dealkalization processes of bauxite residue: a comprehensive review. Journal of Hazardous Materials, 403. doi:10.1016/j.jhazmat.2020.123671 Metzenberg, R. L. (2003). Vogel's Medium N salts: avoiding the need for ammonium nitrate. Fungal Genetics Reports, 50. doi:10.4148/1941-4765.1152 Narayanan, R. P., Kazantzis, N. K., & Emmert, M. H. (2019). Process for scandium recovery from Jamaican bauxite residue: a probabilistic economic assessment. Materials Today: Proceedings, 9, 578-586. doi:10.1016/j.matpr.2018.10.378 Päivärinta-Antikainen, S., Huovinen, M., Ojala, S., Matějová, L., Keiski, R. L., & Vähäkangas, K. H. (2023). Leaching of metals from red mud and toxicity in human cells in vitro. Chemosphere, 332. doi:10.1016/j.chemosphere.2023.138807 Patterson, S. H., Kurtz, H. F., Olson, J. C., & Neeley, C. L. (1986). World Bauxite Resources. Retrieved from Washington, DC: Pradhan, G., Tripathy, B., Ram, D. K., Digal, A. K., & Das, A. P. (2024). Bauxite mining waste pollution and its sustainable management through bioremediation. Geomicrobiology Journal, 41(4), 335-344. doi:10.1080/01490451.2023.2235353 Prusky, D., & Yakoby, N. (2003). Pathogenic fungi: leading or led by ambient pH? Molecular Plant Pathology, 4(6), 509-516. doi:10.1046/j.1364-3703.2003.00196.x

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