WATER ELECTROLYSIS MODULE

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WATER ELECTROLYSIS MODULE ( water-electrolysis-module )

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Zi/ Systems. nc. techniques. The remaining parts for the cells were the electrode-electrolyte retaining matrix-electrode sandwich and a Teflon screen-asbestos feed matrix- Teflon screen water feed membrane which separated the water feed cavity from the H2 cavity. Expanded metal screen (gold-plated Ni) formed the 02 and H2 gas cavities. The electrodes were activated on sintered porous Ni plaques. The water feed and cell matrices were custom-blended asbestos. All sealing was accomplished with ethylene propylene O-rings with double O-rings used for all seals which saw total module pressure. Figure 14 is a photograph of the parts of one cell. The six cells of the SFWEM were sandwiched between two thermal insulating machined polysulfone endplates. These were held between two machined stainless steel endplates which gave structural strength to the module. The SFWEM was held together and the compression necessary to seal the cells was provided by ten stainless steel bolts. SFWEM GROUND SUPPORT ACCESSORIES The GSA for the SFWEM consist of the SFWEM Test System (STS), the condenser separators, the Gas Separator Unit (GSU), and sources for the feed water cooling water, electrical power, and purge N2. SFWEM Test System The STS provided the necessary controls and fluid supplies to allow testing of the SFWEM over its designed operating range. Automatic controls were included to provide safe and easy operation. In addition, manual controls allowed flexi- bility in operation needed during parametric and off-design testing. Automatic monitoring provided protection for both equipment and personnel. STS Specifications The STS was designed according to the specifications outlined in Table 3. The STS was also designed to allow operation of the SFWEM with and without condenser/ separators, operation with and without the DM, and operation with continuous or intermittent circulation of the feed water cavity fluid. STS Operation The STS provided the SFWEM with product gas pressure control, temperature control, water feed addition, and N2 purging. The STS also allowed for optional operating modes utilizing condenser/separators, the DM, and circulation of the fluid contained in the water feed compartments. Electrical control and monitoring instrumentation was also provided by the STS. Figure 15 is a schematic of the STS and Figure 16 is a photograph of it. 34

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