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Silica concentration, solvent ratio and square of solvent ratio were found to be statistically significant terms influencing the STF add-on% on Kevlar fabrics.
Extraction temperature (X1), sample to solvent ratio (X3) and solvent concentration (X5) significantly affect response variables.
Therefore this solvent system was studied in more detail, varying the solvent ratio.
The length of the nanorods can be facilely controlled by adjusting the solvent ratio.
Three process variables (catalyst ratio, solvent ratio and reaction time) were studied, based on their process significance.
Increasing water/organic solvent ratio was found to be the main factor for enhancing the dissolution rate.
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Different co-solvent ratio was further investigated.
The most effective variables were found as pressure and co-solvent ratio (p < 0.005).
Three independent variables, including ethanol concentration (%, w/w), temperature (°C), and material-to-solvent ratio (g mL−1), were studied.
DoE studies were utilized to understand the critical processing parameters: antisolvent-to-solvent ratio, drug concentration and stabilizer concentration.
Sample-to-solvent ratio had the greatest impact on the TPC yield followed by power and irradiation time.
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