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His long-term goal is to promote in parallel interdisciplinary research for polymers with advanced technology applications. These applications would be geared towards health, biological polymers, polymeric sensors, polymeric materials for photonics, and polymeric materials for a variety of civil engineering applications.
Professor Penlidis’ current projects include kinetics and modelling of multicomponent bulk, solution, suspension and emulsion polymerizations; development of flexible simulator packages for polymerization processes; and dynamic optimization of polymer reactor operation, polymer reactor pilot-plant instrumentation and automation. He is also working on online multivariable non-linear model predictive control of polymerization reactors; high temperature terpolymerizations and depropagation studies, as well as nano-structured particle technology.
Professor Penlidis’ current projects include kinetics and modelling of multicomponent bulk, solution, suspension and emulsion polymerizations; development of flexible simulator packages for polymerization processes; and dynamic optimization of polymer reactor operation, polymer reactor pilot-plant instrumentation and automation. He is also working on online multivariable non-linear model predictive control of polymerization reactors; high temperature terpolymerizations and depropagation studies, as well as nano-structured particle technology.
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Polymersno. 10 (2024)
CANADIAN JOURNAL OF CHEMICAL ENGINEERING (2023)
CANADIAN JOURNAL OF CHEMICAL ENGINEERINGno. 9 (2023): 5034-5044
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