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The approach is developed on the framework of a thermodynamic formalism that exploits convexity of exergy-like functions and dissipation to derive passivity conditions for process systems.
In this work, an effort has been taken to propose realistic machining conditions for process improvement in micro end milling for C360 Copper alloy material.
The optimum conversion conditions for process are found to be solid liquid ratio of 0.05 g/mL, reaction period of 600 s, reaction temperature of 50 °C and Na2CO3 concentration of 2 M.
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Response surface methodology (RSM) is a powerful method to determine optimal operating conditions for processes with a wide variability and different interactions (Ahmadi et al. 2005).
The Taguchi experimental design method is an elegant and efficient way of deriving optimum conditions for processes from the minimum number of experiments.
The microparticles were prepared by ionotropic gelation method, with a hardening time of 60 min. The optimum condition for process and product variables was evaluated using desirability function.
Several important factors are discussed to determine the suitable reactor operation conditions for the process simulation of two operation modes.
Using the fitting conditions established for process response at the oscillation frequency under a relay test, the identification algorithm is transparently developed.
Accurate quantification of lipids and their respective fuel yield is crucial for comparison of algal strains and growth conditions and for process monitoring.
This novel reactor configuration offers a simpler design compared with interconnected reactors and facilitates operation under pressurized conditions for improved process efficiency.
Optimal conditions for the process were obtained with TOC removal above 65% using electrochemical process by 30 min of operation.
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