Analysis of Fluid Flow in Redox Flow Batteries

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Analysis of Fluid Flow in Redox Flow Batteries ( analysis-fluid-flow-redox-flow-batteries )

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sulfuric acid. This corrosion changes the position of the center of the diaphragm, introducing zero error to the system, as the captured data in Figure 3. 7 illustrates. However, it should not affect the slope between the reported pressure drop and the flow rate due to the precision spring not being exposed to the acid and the linear relationship between the diaphragm center displacement and the applied pressure remaining the same. The pressure drop of RFB cells is zero if the flow rate is zero. Hence, the regression line of data in graphs presenting the relationship between the pressure drop and the flow rate must pass the origin of the graph. Therefore, an approach to omit the zero error is to shift the captured data by the y-interception of the regression line, ensuring that the regression line passes the origin of the pressure drop-flow rate graph for each set of experiments. 3.7.2- Sources of errors in measurements The absence of fluctuations and zero-error due to the misplacement of the indicator in the pressure and flow rate measurements was evident. The flow rate and the pressure were measured by the Masterflex L/S- precision tubing pump and the Capsuhelic DPG, with the accuracy of 0.08 ml/min and 3%, respectively. 3.7.3- The RFB cell The properties of flow fields, electrolytes, and electrodes in the RFB cell is presented in Table 3. 3. Sigracell GFD4.6EA carbon felt and Sigracell 39-AA carbon paper are utilized as electrodes. Further information about flow fields and electrolytes in Aziz’s and Messaggi’s experiments are available in their respective articles. [38,43] 41

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