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Jorge F.B. Pereira is an Associate Professor in the Department of Chemical Engineering at the Faculty of Sciences and Technology, University of Coimbra in Portugal. He is also a member and Vice-Director of the Chemical Engineering Departament, member of the Process Engineering and Forest Products Research Centre (CIEPQPF) at the University of Coimbra and an accredited Professor of the Graduate Program of "Bioscience and Biotechnology applied to Pharmacy" at the São Paulo State University (UNESP).
He received his M.Sc. in Biological Engineering from the University of Minho in Portugal in 2008, and during his M.Sc., he completed a six-month internship at the Faculty of Pharmaceutical Sciences at the University of São Paulo, Brazil. He obtained his Ph.D. in Chemical Engineering from the University of Aveiro in 2013 under the guidance of Prof. João A. P. Coutinho, which was awarded the Mário Quartin Graça scientific award for the best thesis in technologies and natural sciences. He then worked as a postdoctoral fellow (2013-2014) at the University of Alabama, USA, with Prof. Robin D. Rogers in a joint project with the MIT/Novartis research center.
From July 2014 to December 2019, Jorge Pereira worked as an Assistant Professor in the Department of Bioprocesses and Biotechnology at the School of Pharmaceutical Sciences at the São Paulo State University (UNESP). Since 2014, he has been leading the research team "BioPPuL - Bioproducts' Production and Purification Lab," which focuses on developing sustainable biotechnological technologies for the production and purification of added-value bioproducts.
Jorge Pereira's main research interests include developing ionic liquid-based technologies for the purification of biopharmaceuticals, particularly using liquid-liquid extraction processes (aqueous biphasic systems), integrating and scaling-up separation processes, developing biotechnological processes with emphasis on fermentation, production, isolation, and purification of added-value biomolecules, chemical and microbiological enhanced oil recovery technologies, and studying interactions at the molecular level in ionic liquid-based separation processes.
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