The research comprised: (1) A new experimental research technique-potentiometric titration at high temperature aqueous solutions. 2) Designing and constructing a new high temperature experimental set-up, through research, in order to learn how to independently build advanced high temperature experimental installations. (3) XRD and SEM techniques, thorough research, in order to characterize metal oxide. (4) Water Quality Modelling –course. Software PHREEQC for chemical water stability modelling for drinking water treatment and Stimela for modelling of water quality. (5) Surface complexation modelling, through research, using FITEQL software, in order to learn how to develop models to describe surface of colloidal particle and apply them to predict the deposition behavior of colloidal particles in industrial processes involving high temperature aqueous solutions. 6) Advanced water technologies such as (anaerobic) Membrane Bioreactors and ceramic membrane filtration participating in Water Treatment Colloquiums. (7) Ultrafiltration of Effluent, through laboratory experiment and practical introduction by laboratory technician, to learn advanced techniques for wastewater treatment.
In addition activities were executed to develop scientific skills: (8) Connection with the water industry aimed at establishing future cooperation and use the research results in practice. Visit companies Evides Industry Water (provides water to industries in the Netherlands) and Logisticon Water Treatment (provides complete water treatment installations) and carry out consultation with management and operating personnel. (9) Secondment (6 months) at Ghent to train quartz crystal microbalance with dissipation monitoring (QCM-D) for deposition rate measurement and (10) contact angle measurement by goniometer, through research. (11) XDR and SEM, BET experimental techniques, through research, in order to expand her experimental skills in materials characterization. (12) XDLVO theory to learn to model the interaction energy (Matlab, Python, Ingmar Nopens).