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The effects of processing time, voltage, concentration of F− ions and H3PO4 on the formation of TiO2 nanotubes were investigated.
Critical process parameters were defined as temperature, voltage, concentration and pH of borate buffer, concentration of sodium cholate, n-butanol and γ-cyclodextrin.
The parameters considered for optimization are: deposition time, applied voltage, concentration of VGCNF in a distilled water suspension, and the distance between anode (a carbon fabric) and cathode (a copper plate).
In this work, mathematical models for predicting deposition rate and deposition height with respect to input process parameters (applied voltage, concentration of metal ions, and inter electrode gap) have been developed.
The extensive analysis of the distribution of fibre diameters and bead formation was performed using different needle gauge, collector distance, voltage, concentration, feed rate and molecular weight by observing images in FESEM after explanation of regression.
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The effect of operational conditions, applied voltage, electrolyte concentration and waste concentration on COD removal percent and initial COD removal rate were investigated through response surface methodology, RSM.
Etching parameters, such as temperature, voltage, solution concentration, metal purity, immersion depth, and environmental vibration, determine the profile and surface roughness of needle electrodes.
The effects of various parameters including electric voltage, phenol concentration, solution pH, rotate speed, electrolyte type and concentration, and electrode distance on the permeate flux and removal efficiency of the treatment system were carried out.
Peak voltage, initial concentration, residence time and humidity were important factors that influenced the toluene conversion.
Intuitively, we can change the applied voltage, salt concentration, viscosity,and electrolyte temperature to reduce the translocation speed [10].
The effects of process variables such as voltage, solution concentration and deposition distance on the structure have been studied.
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