“…Hence, numerous researchers have well-agreed the role of spacers as a turbulence promoter and mass transfer enhancer in the membrane channel [1][2][3]. Precise reveal of the hydrodynamics and concentration polarization phenomenon in the spacer-filled membrane is vital to ensure concentration polarization phenomenon can be minimized at minimum energy consumption since the presence of feed spacer is plausible to increase pressure drop [4,5].…”
“…Hence, numerous researchers have well-agreed the role of spacers as a turbulence promoter and mass transfer enhancer in the membrane channel [1][2][3]. Precise reveal of the hydrodynamics and concentration polarization phenomenon in the spacer-filled membrane is vital to ensure concentration polarization phenomenon can be minimized at minimum energy consumption since the presence of feed spacer is plausible to increase pressure drop [4,5].…”
“…A thorough literature review [32][33][34][35] revealed that previously derived mass transfer correlations cannot be directly applied for the rectangular cell (15.5 × 9.5 × 0.086 cm), diamond shaped spacer geometry (2.5 × 2.5 × 0.78 mm), and hydrodynamic conditions employed in our experiments. Therefore, an empirical mass transfer correlation strictly valid only under our conditions was developed using…”
Section: Development Of a Suitable Correlation For The Brine Side Masmentioning
“…Hydrodynamic diameter of a desalting or a concentrating cell (electric current passing section); d H,cell and that of a desalting or a concentrating slot; d H,slot incorporated with a diagonal net spacer are expressed by the following equation [19,20].…”
Section: Pressure Drop In Desalting and Concentrating Cells And Slotsmentioning
A computer simulation program of ion-exchange membrane electrodialysis is developed for saline water desalination. Inputting the specifications of an electrodialyzer and operating conditions into the program, the following performance of the electrodialyzer is computed. Ion flux and solution flux across a membrane pair; Energy consumption; Salt concentration at the outlets of desalting and concentrating cells; Desalting ratio; Water recovery; Current efficiency; Limiting current density; Current density distribution; Electric resistance of desalting and concentrating solutions and a membrane pair; Electric current leakage; Pressure drop. Constant voltage mode single-pass electrodialysis program is written in the Excel spread sheet and it is integrated in the website. The program in the website can be operated easily with trial-and-error calculation.
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