Fine Chemical Engineering Aspirin Production Process (aspirin) production process
The following should be addressed:
– chemistry identification

– synthetic route selection with reasons
– thermodynamic calculations to prove endothermicity/exothermicity, spontaneity and reversibility/irreversibility of the overall process
– type of catalyst used (if any)
– kinetics and mechanism
– reactor selection with reasons
– waste identification and proposed treatment
– recycling (reagents/solvents) if necessary
– process block diagram Fine Chemical Engineering Aspirin Production Process
– synthetic route selection with reasons
– thermodynamic calculations to prove endothermicity/exothermicity, spontaneity and reversibility/irreversibility of the overall process
– type of catalyst used (if any) – reactor selection with reasons
– waste identification and proposed treatment
– recycling (reagents/solvents) if necessary
– process block diagram – reactor selection with reasonsFine Chemical Engineering Aspirin Production Process
– waste identification and proposed treatment
– recycling (reagents/solvents) if necessary
– process block diagram
– synthetic route selection with reasons
– thermodynamic calculations to prove endothermicity/exothermicity, spontaneity and reversibility/irreversibility of the overall process
– type of catalyst used (if any) – reactor selection with reasons Fine Chemical Engineering Aspirin Production Process
– waste identification and proposed treatment
– recycling (reagents/solvents) if necessary
– process block diagram – reactor selection with reasons
– waste identification and proposed treatment
– recycling (reagents/solvents) if necessary
– process block diagram
– synthetic route selection with reasons
– thermodynamic calculations to prove endothermicity/exothermicity, spontaneity and reversibility/irreversibility of the overall process
– type of catalyst used (if any) – reactor selection with reasons
Fine Chemical Engineering Aspirin Production Process and Waste Management
– waste identification and proposed treatment
– recycling (reagents/solvents) if necessary
– process block diagram – reactor selection with reasons
– waste identification and proposed treatment
– recycling (reagents/solvents) if necessary
– process block diagram
– synthetic route selection with reasons
– thermodynamic calculations to prove endothermicity/exothermicity, spontaneity and reversibility/irreversibility of the overall process
– type of catalyst used (if any) – reactor selection with reasons
– waste identification and proposed treatment
– recycling (reagents/solvents) if necessary
– process block diagram – reactor selection with reasons Fine Chemical Engineering Aspirin Production Process
– waste identification and proposed treatment
– recycling (reagents/solvents) if necessary
– process block diagram
– synthetic route selection with reasons
– thermodynamic calculations to prove endothermicity/exothermicity, spontaneity and reversibility/irreversibility of the overall process
– type of catalyst used (if any) – reactor selection with reasons
– waste identification and proposed treatment
– recycling (reagents/solvents) if necessary
– process block diagram Fine Chemical Engineering Aspirin Production Process