CV


FA
Majid Nikfar

Majid Nikfar

Assistant Professor

Full-Time Faculty Member

College: Faculty of Mechanical Engineering

Department: Mechanical Engineering - Heat and Fluid

Degree: Ph.D

CV
FA
Majid Nikfar

Assistant Professor Majid Nikfar

Full-Time Faculty Member
College: Faculty of Mechanical Engineering - Department: Mechanical Engineering - Heat and Fluid Degree: Ph.D |

Experimental study on the structure of spacer in a flow-electrode capacitive deionization

Authorsمجید نیک فر,پروفسور علی اکبر عالم رجبی,KoYeon Choo,Youngjik Youn,Dong Kook Kim
JournalDesalination and Water Treatment
Page number86
Volume number184
IF1.254
Paper TypeFull Paper
Published At2020-06-19
Journal GradeScientific - research
Journal TypeElectronic
Journal CountryIran, Islamic Republic Of
Journal IndexJCR ,SCOPUS
KeywordsWater desalination; Capacitive deionization; Porous spacer; Thickness; Porosity; Wettability

Abstract

The flow-electrode capacitive deionization (FCDI) technology has recently been actively studied as a means of easy scale-up for mass desalination based on the principle of an electric double-layer capacitor. In this study, we investigated the structural characteristics of a porous insulating spacer, which determines the desalting performance. The effect of parameters, such as thickness, porosity, wettability, and flow rates of saltwater (FRw) have been investigated. As a result, for FRw ≥2 mL/min the desalting efficiency increases with decreasing the spacer’s thickness, but for FRw < 2 mL/min the optimum thickness was found to be 0.6 mm in terms of desalting efficiency. Utilizing a 0.3 mm thickness spacer lead to the best configuration in the FCDI setup based on the current efficiency criteria. The results show that the optimum porosity for the porous spacer was 0.56 in terms of desalting efficiency and salt removal rate while the spacer with 0.44 porosity has the best performance based on the current efficiency. In particular, wettability did not affect performance. It is observed that desalting efficiency increases as FRw decreases.