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The factors selected were extraction temperature, pressure, static extraction time, dynamic extraction time and carbon dioxide flow rate.
The obtained results show that the optimum parameters were extraction temperature and pressure of 343.15 and 200 bar respectively, static time of 90 min and carbon dioxide flow rate of 0.076 cm3/min to have the highest extraction value.
In this direction, different parameters influences including, carbon dioxide flow rate (0.06 0.70 cm3/min), extraction static time (45 105 min), extraction pressure (100 200 bar) and extraction temperature (313.15 343.15 K) were investigated.
The influence of the carbon dioxide flow rate, the flow rate of the extractant solution, the ratio of D2EHPA to hexane in the extractant solution, the temperature and the replacement of hexane by methanol are investigated in this study.
Increasing of carbon dioxide flow rate increases the bubbles size and decreases the number of bubbles which decreases the gas liquid interface.
Briefly, 100 g of stabilized rice bran was placed into the SFE extraction vessel and extraction parameters were set at 600 bars pressure, temperature of 40°C and carbon dioxide flow rate of 30 g/min.
Similar(54)
Furthermore, the influence of increasing air flow rates in the feed side and carbon dioxide flow rates in the sweep side on temperature distributions, evaporation rates and species concentrations are presented and discussed.
Three factors which included carbon dioxide (CO2) flow rate (4 7 ml/min), temperature (40 55 ℃) and pressure (14 26 MPa) were investigated.
Once the desired activation temperature was reached, the gas flow was switched to carbon dioxide at flow rate of 150 cm3/min to complete the activation process.
Once the desired activation temperature was reached (850 °C), the gas flow was switched to carbon dioxide at flow rate of 150 cm3/min to complete the activation process.
Signals from the ventilator and carbon dioxide analyzer representing flow rate, airway pressure, and carbon dioxide concentration at the airway opening were sampled using a personal computer at frequency of 100 Hz and transferred to a spreadsheet to derive a physiological profile, which is the basis of the computer simulation [ 17].
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