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The solution concentration, flow rate, voltage and tip-target distance was optimized to obtain nanofibers.
The investigated operating parameters were solution concentration, flow velocity, and bulk and surface temperatures.
Column sorption mechanism was studied through various parameters, i.e., change in concentration, flow rate, and bed heights.
Perturbation plot: The effects of initial As III) concentration, flow rate, and biosorbent dose on the breakthrough time were evaluated.
Figure 6 depicts the effect of varying thermal radiation parameter R on the flow velocity, temperature, and concentration flow.
The effect of initial concentration, flow rate and current density was investigated in detail.
The influence of the temperature, concentration, flow rate and membrane characteristics on the absorption process was evaluated.
The effects of CO2 concentration, flow rate of influent, and light intensity on CO2 removal efficiency were investigated.
The effect of feed concentration, flow rate, transmembrane pressure and pH on flux and rejection were analysed.
Bulk slurry conductivity was found to vary significantly with changes in electrolyte concentration, flow rate and channel depth.
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