Maria M. Papathanasiou

Ph.D. Student maria.papathanasiou11@imperial.ac.uk

Publications

  1. Papathanasiou, M. M.; Steinebach, F.; Mueller-Spaeth, T.; Morbidelli, M.; Mantalaris, A.; Pistikopoulos, E. N. Intelligent, model-based control towards the intensification of downstream processes. Computers & Chemical Engineering 2017, 105, 173-184.
  2. Papathanasiou, M. M.; Avraamidou, S.; Steinebach, F.; Oberdieck, R.; Mueller-Spaeth, T.; Morbidelli, M.; Mantalaris, A.; Pistikopoulos, E. N. Advanced Control Strategies for the Multicolumn Countercurrent Solvent Gradient Purification Process (MCSGP). AIChE Journal 2016, 62 (7), 2341-2357.
  3. Oberdieck, R.; Diangelakis, N. A.; Papathanasiou, M. M.; Nascu, I.; Pistikopoulos, E. N. POP - Parametric Optimization Toolbox. Industrial & Engineering Chemistry Research 2016, 55 (33), 8979-8991.
  4. Papathanasiou, M. M.; Oberdieck, R.; Mantalaris, A.; Pistikopoulos, E. N. Computational tools for the advanced control of periodic processes - Application to a chromatographic separation. 26th European Symposium on Computer Aided Process Engineering; Elsevier, 2016;, Computer Aided Chemical Engineering 38 pp 1665-1670.
  5. Quiroga Campano, A.; Papathanasiou, M. M.; Pistikopoulos, E. N.; Mantalaris, A. A Predictive Model for Energy Metabolism and ATP Balance in Mammalian Cells: Towards the Energy-Based Optimization of mAb Production. 26th European Symposium on Computer Aided Process Engineering; Elsevier, 2016;, Computer Aided Chemical Engineering 38 pp 1581-1586.
  6. Papathanasiou, M. M.; Quiroga-Campano, A.; Oberdieck, R.; Mantalaris, A.; Pistikopoulos, E. N. Development of advanced computational tools for the intensification of monoclonal antibody production. 26th European Symposium on Computer Aided Process Engineering; Elsevier, 2016;, Computer Aided Chemical Engineering 38 pp 1659-1664.
  7. Papathanasiou, M. M.; Mantalaris, A.; Pistikopoulos, E. N. Advanced control strategies for a periodic, two-column chromatographic process. IEEE International Conference on Automation, Quality and Testing, Robotics (AQTR); 2016; pp 387-392.
  8. Papathanasiou, M. M.; Sun, M.; Oberdieck, R.; Mantalaris, A.; Pistikopoulos, E. N. A centralized/decentralized control approach for periodic systems with application to chromatographic separation processes. 11th IFAC Symposium on Dynamics and Control of Process Systems, including Biosystems; 2016;, IFAC-PapersOnLine 49 Paper 7, pp 159-164.
  9. Papathanasiou, M. M.; Oberdieck, R.; Avraamidou, S.; Nascu, I.; Mantalaris, A.; Pistikopoulos, E. N. Development of advanced control strategies for periodic systems: An application to chromatographic separation processes. American Control Conference (ACC); 2016; pp 4175-4180.
  10. Nascu, I.; Diangelakis, N. A.; Oberdieck, R.; Papathanasiou, M. M.; Pistikopoulos, E. N. Explicit MPC in real-world applications: The PAROC framework. American Control Conference (ACC); 2016; pp 913-918.
  11. Oberdieck, R.; Diangelakis, N. A.; Nascu, I.; Papathanasiou, M. M.; Sun, M.; Avraamidou, S.; Pistikopoulos, E. N. On multi-parametric programming and its applications in process systems engineering. Chemical Engineering Research and Design 2016, 116, 61-82.
  12. Papathanasiou, M. M.; Steinebach, F.; Stroehlein, G.; Müller-Späth, T.; Nascu, I.; Oberdieck, R.; Morbidelli, M.; Mantalaris, A.; Pistikopoulos, E. N. A control strategy for periodic systems - application to the twin-column MCSGP. 12th International Symposium on Process Systems Engineering and 25th European Symposium on Computer Aided Process Engineering; Elsevier, 2015;, Computer Aided Chemical Engineering 37 pp 1505-1510.
  13. Pistikopoulos, E. N.; Diangelakis, N. A.; Oberdieck, R.; Papathanasiou, M. M.; Nascu, I.; Sun, M. PAROC-An integrated framework and software platform for the optimisation and advanced model-based control of process systems. Chemical Engineering Science 2015, 136, 115-138.
  14. Velliou, E. G.; Dos Santos, S. B.; Papathanasiou, M. M.; Fuentes-Gari, M.; Misener, R.; Panoskaltsis, N.; Pistikopoulos, E. N.; Mantalaris, A. Towards unravelling the kinetics of an acute myeloid leukaemia model system under oxidative and starvation stress: a comparison between two- and three-dimensional cultures. Bioprocess and Biosystems Engineering 2015, 38 (8), 1589-1600.

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