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The specialty chemical and active pharmaceutical ingredients (API) chemical industries are undergoing a paradigm shift in process technology by converting existing batch processes to continuous processes. This shift is primarily motivated by significant benefits in throughput, purity, safety, footprint, and modularity.
This 3-day course, developed by Worcester Polytechnic Institute in collaboration with the ACS Green Chemistry Institute as part of a RAPID project, provides attendees with the hands-on skills and tools needed to identify potential opportunities for processes to be optimized using continuous process technology which can lead to smaller carbon footprints, greener operation, safer operation, and higher throughput or product purity. The course will integrate recent trends in continuous processing to train the existing and future workforce in modern engineering and process intensification principles. The course will be predominantly lab-oriented, where participants will design, construct and test reactor systems to study fundamental properties needed to transition from batch to flow (e.g. heat transfer, mixing, multiphase systems and controls). Additionally, the course will include augmented reality (AR) modules as a teaching and expertise archival tool for in-lab training.
After taking this course you will be able to:
The course is intended to be an introduction to flow chemistry basics by using challenges examples where reaction engineering and process intensification enables enhanced reactions in flow. In that way it is applicable to both a technical audience (process chemists, engineers, technicians, post docs), but also a more general audience who is interested in a hands-on experience for learning what the flow chemistry buzz is all about (e.g. management).
The following outline is designed to maximize in-lab time. You will participate in four, 3.5 hr labs over three days plus a demo. The labs will break participants into small groups and rotate throughout the course.
Registration
Welcome + coffee
Intro to flow chemistry + PI
Lab tour + safety
Classroom demo/lab: fittings, tubing, assembly, unit operations
Lunch n’ Learn: Separations
PI lesson + Lab 1 (see rotation below)
Lecture: Modular Design
PI lesson + Lab 2 (see rotation below)
Lunch n’ Learn: Analytical/Controls
PI lesson + Lab 3 (see rotation below)
Lecture: Batch to Continuous
PI lesson + Lab 4 (see rotation below)
Lunch n’ Learn: Commercial Systems
Demo + Debrief
The following outline is designed to maximize in-lab time. You will participate in four, 3.5 hr labs over three days plus a demo. The labs will break participants into small groups and rotate throughout the course.
Registration
Welcome + coffee
Intro to flow chemistry + PI
Lab tour + safety
Classroom demo/lab: fittings, tubing, assembly, unit operations
Lunch n’ Learn: Separations
PI lesson + Lab 1 (see rotation below)
Lecture: Modular Design
PI lesson + Lab 2 (see rotation below)
Lunch n’ Learn: Analytical/Controls
PI lesson + Lab 3 (see rotation below)
Lecture: Batch to Continuous
PI lesson + Lab 4 (see rotation below)
Lunch n’ Learn: Commercial Systems
Demo + Debrief
Module 1: Thermal runaway, heat transfer, back pressure in non-ideal reactors
Module 2: Micromixing, liquid-liquid extraction
Module 3: Micropacked beds, pressure drop, G/L reactions
Module 4: Process analytical/automation
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