PAST INNOVATIONS IN CHEMICAL ENGINEERING, KPR Institute Engineering and Technology, Autonomous Engineering Institution, Coimbatore, India

All
UG Courses

Hybrid Event
PAST INNOVATIONS IN CHEMICAL ENGINEERING
Guest Lecture Dept. Level
DATE
Oct 25, 2024
TIME
03:00 AM to 04:00 AM
DEPARTMENT
CH
TOTAL PARTICIPATES
60
PAST INNOVATIONS IN CHEMICAL ENGINEERING PAST INNOVATIONS IN CHEMICAL ENGINEERING
Outcome
Summary

Actual Outcome

  1. Enhanced Understanding of Chemical Engineering Evolution: Students developed a deeper understanding of how foundational innovations, such as distillation, catalysis, and membrane technologies, have shaped modern chemical engineering processes. This historical perspective enriched their grasp of current engineering concepts and techniques.

  2. Inspiration for Sustainable Engineering Practices: The session motivated students to consider sustainability as a core component of their future research and projects. By highlighting early eco-friendly practices and their evolution, the lecture encouraged students to explore environmentally responsible innovations in chemical engineering.

Report of the Event

On 26th October 2024, the Department of Chemical Engineering at KPR Institute of Engineering and Technology organized a guest lecture titled "Past Innovations in Chemical Engineering," delivered by Dr. R. Bharathi Ganesan, Assistant Professor from NIT Calicut. This insightful session was attended by 80 students from the second and third years of Chemical Engineering. Dr. Ganesan explored historical advancements that laid the foundation for modern chemical engineering, covering topics such as the evolution of distillation and separation processes, the role of catalysis in enhancing chemical reactions, the development of membrane technologies, and the transformative shift to automated process control. Additionally, he highlighted early sustainable engineering practices that have influenced today's emphasis on eco-friendly chemical processes. The lecture enriched students' understanding of the field by linking historical breakthroughs with current subjects like Mass Transfer and Industrial Chemistry, deepening their appreciation for past innovations and inspiring them toward future research and sustainable solutions. Students responded enthusiastically, expressing gratitude for Dr. Ganesan's engaging and informative delivery, which connected foundational engineering concepts with contemporary applications. The department intends to organize similar events to continue fostering students' understanding of chemical engineering’s evolving landscape.


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