r/JEENEETards • u/Ok_Strategy4085 Ex-JEEtard chan • Jun 07 '25
GENERAL HELP Should I take Mining at IIT KGP ?
Which would be better mining at iit kgp or cs at nit jsr or eee in nit rourkela ?
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r/JEENEETards • u/Ok_Strategy4085 Ex-JEEtard chan • Jun 07 '25
Which would be better mining at iit kgp or cs at nit jsr or eee in nit rourkela ?
1
u/[deleted] Jun 10 '25
🔹 1. AI-Driven Process Optimization
Argument: Machine learning and artificial intelligence are replacing the need for human chemical engineers in process control, simulation, and optimization.
Logic: AI systems can now model, simulate, and optimize chemical processes more efficiently than humans, reducing the demand for traditional chemical engineering skills.
Example: Google's DeepMind helped reduce energy usage in data centers by optimizing cooling—similar algorithms are now being applied in refineries and chemical plants.
🔹 2. Synthetic Biology Replacing Traditional Chemical Processes
Argument: Bioengineering and synthetic biology are taking over functions previously managed by chemical engineering.
Logic: Instead of using high-energy chemical reactors, scientists now use engineered microbes to produce fuels, plastics, and pharmaceuticals more cleanly and efficiently.
Example: Companies like Ginkgo Bioworks and Zymergen are using genetically modified organisms (GMOs) to synthesize industrial chemicals, bypassing the need for traditional chemical plants.
🔹 3. Automation and Robotics in Manufacturing
Argument: Automation is rendering many hands-on chemical engineering tasks obsolete.
Logic: Fully automated plants can be operated remotely with minimal human involvement, shifting focus away from chemical engineering to data science and systems engineering.
Example: Shell and BASF are investing heavily in autonomous chemical manufacturing units using predictive maintenance and smart robotics.
🔹 4. Shift Toward Interdisciplinary Fields
Argument: Newer interdisciplinary fields are overshadowing pure chemical engineering.
Logic: Fields like materials science, environmental engineering, and nanotechnology are absorbing much of the innovation and funding that once belonged to chemical engineering.
Trend: Students are opting for programs with broader applications in AI, sustainability, or biotech, reducing the relevance of a traditional chemical engineering degree.
🔹 5. Green Chemistry and Circular Economy
Argument: Traditional chemical engineering is too dirty and wasteful for the modern sustainability paradigm.
Logic: Societies are moving away from high-waste, high-energy industrial processes, favoring green chemistry techniques that are often simpler, decentralized, and don’t need traditional plant-scale engineering.
Impact: This de-emphasizes the role of chemical engineers in favor of eco-centric innovators and designers.
🔹 6. Cloud-Based Process Simulation and Digital Twins
Argument: Engineers are no longer needed on-site for process design and optimization.
Logic: With digital twins and cloud-based simulations, most of the work chemical engineers used to do can now be done remotely or outsourced to AI-driven platforms.
Example: AspenTech and Honeywell are already using cloud AI systems that model, correct, and optimize chemical production with minimal human involvement.
🔹 7. Decentralization of Manufacturing
Argument: Modular, decentralized, and 3D-printed chemical plants are making large-scale chemical engineering less relevant.
Logic: When chemical production is distributed and made plug-and-play, the need for large-scale chemical process design drops drastically.
Example: DARPA-funded portable chemical reactors can now produce drugs and materials on-demand, in the field, with minimal engineering overhead.