Track 3: Environmental Stewardship

419 [7] Ghorbanzadeh, N., Jung, W., Halajnia, A., Lakzian, A., Kabra, A. N., & Jeon, B.-H. (2015). Removal of arsenate and arsenite from aqueous solution by adsorption on clay minerals. Geosystem Engineering. 18(5), 212-216. [8] Iriel, A., Marco-Brown, J. L., Diljkan, M., Trinelli, M. A., dos Santos Afonso, M., & Fernández Cirelli, A. (2019). Arsenic Adsorption on Iron-Modified Montmorillonite: Kinetic Equilibrium and Surface Complexes. Environmental Engineering Science. 37(1). [9] Fendorf, S., Michael, H. A., & van Geen, A. (2010). Spatial and temporal variations of groundwater arsenic in South and Southeast Asia. Science. 328(5982), 1123-1127. [10] Bissacot, L., Ciminelli, V., & Logsdon, M. (2015). Arsenic mobility under a neutral mine drainage environment in a gold-mine tailings dam. Proceedings of the 10th International Conference on Acid Rock Drainage and IMWA Annual Conference. Santiago, Chile. [11] Borralleras, P., Segura, I., Aranda, M. A. G., & Aguado, A. (2019). Influence of experimental procedure on d-spacing measurement by XRD of montmorillonite clay pastes containing PCE-based superplasticizer. Cement and Concrete Research, 116, 264-272. [12] Luckham, P. F., & Rossi, S. (1999). The colloidal and rheological properties of bentonite suspensions. Advances in Colloid and Interface Science. 82(1-3), 43-92.

RkJQdWJsaXNoZXIy MTM0Mzk2