Desalination Performance Assessment Anion-Exchange Membranes

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Desalination Performance Assessment Anion-Exchange Membranes ( desalination-performance-assessment-anion-exchange-membranes )

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Membranes 2020, 10, 347 5 of 15 2. Materials and Methods The device as shown in Figure 3 was designed and fabricated in cooperation with MemBrain s.r.o. (Stráž pod Ralskem, Czech Republic) and Mega a.s. (Stráž pod Ralskem, Czech Republic) companies. Figure 3. (a) Disassembled model of “Generation IV” unit showing all its components, (b) inlet side of the unit, (c) outlet side of the unit, (d) disassembled unit and measuring tape in centimeters. The unit casing was composed of five separate parts-two structurally rigid aluminum plates (150 × 100 × 10 mm) on the outside, two housings for the electrodes (150 × 100 × 25 mm), and a porous medium frame in the middle (outer dimensions 150 × 100 × 10 mm). Both the electrode housings and the porous medium frame were 3D printed using photopolymer. The whole unit was screwed together by eleven 6 mm diameter bolts. The porous medium frame and the splitter were significantly redesigned compared to the previous unit. Instead of a U-shaped frame, where the porous medium was glued on two sides, leaving space for the reservoir at one side and the other one open to connect the splitter as a separate part, the current solution used a 100 × 50 × 10 mm large frame that was closed all around (Figure 4a,b). The solution was fed into the material through an inlet channel with a small extra space left at its opening to distribute the solution across the top area of the medium, where it enters. The splitter was a 3 mm thick, rigid partition integrated into the bottom of the frame midway along the edge, leaving equal space at each side for the outlets. Streams from both sides of the splitter are then collected each by means of a single channel to the outlet points.

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