Near infrared spectroscopic calibration models for real time monitoring of powder density
Author:
Funder
National Science Foundation Engineering Research Center on Structured Organic Particulate Systems
Publisher
Elsevier BV
Subject
Pharmaceutical Science
Reference43 articles.
1. The use of bulk density measurements as flowability indicators;Abdullah;Powder Technol.,1999
2. On-line monitoring of a granulation process by NIR spectroscopy;Alcalà;J. Pharm. Sci.,2010
3. Near-infrared spectroscopy in laboratory and process analysis;Alcalà,2012
4. Standard normal variate transformation and de-trending of near-infrared diffuse reflectance spectra;Barnes;Appl. Spectrosc.,1989
5. Near-Infrared spectroscopy for the in-line characterization of powder voiding part II: quantification of enhanced flow properties of surface modified active pharmaceutical ingredients;Beach;J. Pharm. Innov.,2010
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