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Enzyme-catalyzed enantiomer discrimination is still a great challenge for the development of industrial pharmaceutical processes.
Non-aerated powder flows are frequently encountered in downstream pharmaceutical processes.
A process optimization method based on partial least squares (PLS) has been used in pharmaceutical processes.
Solid formation and particle deposition in chemical and pharmaceutical processes often leads to heat exchanger or reactor fouling, compromising operability.
However, there still lacks a systematic way to make the best use of flowsheet models in pharmaceutical processes.
The demand for efficient and reliable models to simulate and design/improve pharmaceutical processes is therefore increasing.
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The application is demonstrated on two pharmaceutical process development problems.
(5) Network cloud platform for all kinds of drugs and pharmaceutical process.
Figure 12 illustrates the principle using case study 4 (the pharmaceutical process).
These two process analysis strategies together can strengthen the process understanding in developing a pharmaceutical process.
This paper describes a case study of a control system design for a batch pharmaceutical process.
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