Gang Wang

Dr.-Ing. Gang Wang

  • Fritz-Haber-Weg 7
    Gebäude 30.91
    76131 Karlsruhe 

CV and Publications

Scientific CV

04/2015 - now Research Associate
  Institute of Process Engineering in Life Sciences, Section IV: Biomolecular Separation Engineering,
  Karlsruhe Institute of Technology (KIT)
12/2014 - 03/2015 Research Assistant
  Institute of Process Engineering in Life Sciences, Section IV: Biomolecular Separation Engineering,
  Karlsruhe Institute of Technology (KIT)
04/2014 - 10/2014 Master’s thesis "‘Optimal Experimental Design for parameter estimation of chromatography models"’
  Institut für Bio- und Lebensmitteltechnik, Bereich IV: Molekulare Aufarbeitung von Bioprodukten,
  Karlsruher Institut für Technologie (KIT)
10/2013 - 3/2014 Practical industrial term: Development of recombinant monoclonal antibodies and the purification using chromatographic methods
  Roche Diagnostics GmbH, Penzberg
10/2012 - 10/2014 Studies of Bioengineering (M.Sc.) at Karlsruhe Institute of Technology (KIT)
04/2012 - 10/2012 Bachelor’s thesis "‘Investigation of iron influences on the rhamnolipid production by Pseudomonas aeruginosa"’
  Institute of Process Engineering in Life Sciences, Section II: Technical Biology,
  Karlsruhe Institute of Technology (KIT)
08/2011 - 03/2012 Student Assistant
  Institute of Process Engineering in Life Sciences, Section II: Technical Biology,
  Karlsruhe Institute of Technology (KIT)
10/2009 - 10/2012 Studies of Bioengineering (B.Sc.) at Karlsruhe Institute of Technology (KIT)



 

Research Projects

Protein chromatography modeling



 

Articles

G. Wang, T. Briskot, T. Hahn, P. Baumann, J. Hubbuch Root cause investigation of deviations in protein chromatography based on mechanistic models and artificial neural networks, Journal of Chromatography A, August 2017;

J. Morgenstern, G. Wang, P. Baumann, J. Hubbuch Model-based investigation on the mass transfer and adsorption mechanisms of mono-PEGylated lysozyme in ion-exchange chromatography, Biotechnology Journal, July 2017;

G. Wang, T. Briskot, T. Hahn, P. Baumann, J. Hubbuch Estimation of adsorption isotherm and mass transfer parameters in protein chromatography using artificial neural networks, Journal of Chromatography A, January 2017;

G. Wang, T. Hahn, J. Hubbuch Water on hydrophobic surfaces: Mechanistic modeling of hydrophobic interaction chromatography, Journal of Chromatography A, September 2016;
 

Talks

G. Wang, T. Briskot, P. Baumann, T. Hahn, J. Hubbuch Calibration of mechanistic chromatography models using artificial intelligence, 30th International Symposium on Preparative and Process Chromatography, Philadelphia, Pennsylvania, USA, July 2017;

G. Wang, T. Briskot, M. Rüdt, J. Hubbuch Simulated periodic counter-current chromatography (sPCCC) – a scale-down model for multicolumn continuous chromatography process development, SPICA 2016, Vienna, Austria, October 2016;

T. Hahn, G. Wang, T.C. Huuk, J. Hubbuch Efficient and reliable model calibration in column chromatography with Optimal Experimental Design (OED), 249th ACS National MeetingExposition, Denver, USA, March 2015;

T. Hahn, G. Wang, T.C. Huuk, J. Hubbuch Efficient and reliable model calibration in column chromatography with Optimal Experimental Design (OED), HIC/RPC Bioseparation Conference, Sliema, Malta, March 2015;
 

Posters

G. Wang, T. Briskot, P. Baumann, T. Hahn, J. Hubbuch Calibration of mechanistic chromatography models using artificial intelligence, 30th International Symposium on Preparative and Process Chromatography, Philadelphia, Pennsylvania, USA, July 2017;

G. Wang, T. Briskot, M. Rüdt, J. Hubbuch Simulated periodic counter-current chromatography (sPCCC) - a scale-down model for multicolumn continuous chromatography process development, DECHEMA Himmelfahrtstagung, Neu-Ulm, Germany, May 2017;

G. Wang, T. Briskot, P. Baumann, T. Hahn, J. Hubbuch Artificial intelligence in protein chromatography: Estimation of adsorption isotherm and mass transfer parameters, 253th ACS National Meeting Exposition, San Francisco, Kalifornien, USA, April 2017;

T. Hahn, F. Görlich, G. Wang, J. Hubbuch Model-based conversion of a single-column batch process to 3- and 4-column periodic counter-current chromatography, Recovery of Biological Products XVII, June 2016, Bermuda;

T. Huuk, T. Hahn, G. Wang, J. Hubbuch No use for high-throughput batch isotherms in modeling?, Recovery of Biological Products XVII, Juni 2016, Bermuda;

T. Hahn, F. Görlich, G. Wang, J. Hubbuch Model-based conversion of a single-column batch process to 3- and 4-column periodic counter-current chromatography, 29th International Symposium on Preparative and Process Chromatography, Juli 2016, Philadelphia, Pennsylvania, USA;