<p>1. Introduction<br> - Importance of process intensification in pharmaceutical manufacturing<br> - Objectives of the investigation<br>2. Literature Review<br> - Overview of process intensification techniques<br> - Applications of process intensification in pharmaceuticals<br>3. Continuous Flow Chemistry<br> - Design and operation of continuous flow reactors<br> - Integration of continuous processes in pharmaceutical synthesis<br>4. Microreactor Technology<br> - Advantages and challenges of microreactor systems<br> - Application of microreactors in pharmaceutical manufacturing<br>5. Intensified Separation Processes<br> - Development of intensified separation techniques<br> - Integration of intensified separations in pharmaceutical processes<br></p>
This project aims to investigate process intensification techniques for pharmaceutical manufacturing. Process intensification involves the development of compact and efficient processes that enable higher productivity, reduced energy consumption, and improved product quality. The project will focus on the application of novel process intensification methods, such as continuous flow chemistry, microreactor technology, and intensified separation processes, to pharmaceutical manufacturing. The goal is to enhance the efficiency and sustainability of pharmaceutical production processes.
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