Fernando J. Muzzio
Affiliations: | Chemical and Biochemical Engineering | Rutgers University, New Brunswick, New Brunswick, NJ, United States |
Area:
Biochemistry, Chemical EngineeringGoogle:
"Fernando Muzzio"Bio:
https://www.proquest.com/openview/b2ceb7327c7afe8e6dd213c6d5c3501a/1
Parents
Sign in to add mentorJulio M. Ottino | grad student | 1991 | U Mass Amherst (MathTree) | |
(Nonlinearity, chaos, and self-similarity: Effects of mixing, aggregation, reaction and breakup on structure formation) |
Children
Sign in to add traineeMario M. Alvarez | grad student | 2000 | Rutgers, New Brunswick |
Jeffrey M. Zalc | grad student | 2000 | Rutgers, New Brunswick |
Osama S. Sudah | grad student | 2001 | Rutgers, New Brunswick |
Edit S. Szalai | grad student | 2002 | Rutgers, New Brunswick |
Paulo E. Arratia | grad student | 2003 | Rutgers, New Brunswick |
Joseph L. Kukura | grad student | 2003 | Rutgers, New Brunswick |
Marcos Llusa | grad student | 2008 | Rutgers, New Brunswick |
Eric Jayjock | grad student | 2011 | Rutgers, New Brunswick |
William E. Engisch | grad student | 2014 | Rutgers, New Brunswick |
Juan G. Osorio Caicedo | grad student | 2014 | Rutgers, New Brunswick |
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Publications
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Alvarado-Hernández BB, Scicolone JV, Ortega-Zuniga C, et al. (2019) Method transfer of a near-infrared spectroscopic method for blend uniformity in a poorly flowing and hygroscopic blend. Journal of Pharmaceutical and Biomedical Analysis. 180: 113054 |
Razavi SM, Scicolone J, Snee RD, et al. (2019) Prediction of tablet weight variability in continuous manufacturing. International Journal of Pharmaceutics. 118727 |
Moghtadernejad S, Escotet-Espinoza MS, Liu Z, et al. (2019) Mixing Cell: a Device to Mimic Extent of Lubrication and Shear in Continuous Tubular Blenders. Aaps Pharmscitech. 20: 262 |
Sierra-Vega NO, Román-Ospino A, Scicolone J, et al. (2019) Assessment of blend uniformity in a continuous tablet manufacturing process. International Journal of Pharmaceutics |
Escotet-Espinoza MS, Moghtadernejad S, Oka S, et al. (2019) Effect of material properties on the residence time distribution (RTD) characterization of powder blending unit operations. Part II of II: Application of models Powder Technology. 344: 525-544 |
Sebastian Escotet-Espinoza M, Moghtadernejad S, Oka S, et al. (2019) Effect of tracer material properties on the residence time distribution (RTD) of continuous powder blending operations. Part I of II: Experimental evaluation Powder Technology. 342: 744-763 |
Grigorov PI, Muzzio FJ, Glasser BJ. (2019) Modeling fluidized bed impregnation of active pharmaceutical ingredients onto porous excipients Chemical Engineering Science. 202: 36-54 |
Meng W, Dvořák J, Kumar R, et al. (2019) Continuous high-shear granulation: Mechanistic understanding of the influence of process parameters on critical quality attributes via elucidating the internal physical and chemical microstructure Advanced Powder Technology. 30: 1765-1781 |
Meng W, Román-Ospino AD, Panikar SS, et al. (2019) Advanced process design and understanding of continuous twin-screw granulation via implementation of in-line process analytical technologies Advanced Powder Technology. 30: 879-894 |
Li T, Scicolone JV, Sanchez E, et al. (2019) Identifying a Loss-in-Weight Feeder Design Space Based on Performance and Material Properties Journal of Pharmaceutical Innovation. 15: 482-495 |