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V6T1ChaCy1151116 V6T1ChaCy5161116 V6T1ChaCy11171116 V6T1ChaCy17181116 V6T2ChaCy1151116 V6T2ChaCy5161116 V6T2ChaCy11171116 V6T2ChaCy17181116 V6T1DisCy5161116 V6T1DisCy11171116 V6T1DisCy16181116 V6T2DisCy5161116 V6T2DisCy11171116 V6T2DisCy16181116 Negative Positive Negative Positive Cycle 1 0.910 5 1.071 11 1.019 Charge 17 1.017 1 0.000 5 0.000 11 0.000 17 0.000 5 0.178 11 0.184 Discharge 16 0.040 5 0.000 11 0.000 16 0.000 0.468 0.102 0.297 0.127 0.336 0.075 0.362 0.065 0.000 0.297 0.000 0.249 0.000 0.414 0.000 0.270 1.210 0.069 1.192 0.089 1.410 0.003 0.000 1.204 0.000 1.018 0.000 1.167 0.000 1.480 0.000 1.496 0.000 1.430 0.000 1.444 1.179 1.476 1.241 1.489 1.080 1.494 1.227 1.497 0.000 1.457 0.000 1.465 0.000 1.454 0.261 1.465 0.438 1.455 0.301 1.468 61.47 0.49 0.79 71.61 2.35 3.28 71.29 1.68 2.36 70.44 2.11 2.99 79.86 0.71 0.89 83.29 0.20 0.24 72.27 0.27 0.37 81.96 0.37 0.46 12.20 0.45 3.72 12.58 0.74 5.87 (16/11), 11 (17/11), 16, 17 (18/11) – and state of charge standard deviation and variation coefficient. Study of redox flow battery systems for residential applications Table D.8 - Experimental vanadium ions concentration and state of charge results obtained for remixing operation of VisBlue 6 system - Cycles 1 (15/11), 5 Sample Tank Step [V2+] (M) [V3+] (M) [V4+] (M) [V5+] (M) [V]total (M) SoC (%) Standard deviation (%) Variation Coef. (%) 2.77 1.10 17.82 0.18 1.00 30.09 0.97 3.21 20.51 0.26 1.27 39.86 Appendix D Experimental data 71PDF Image | Tubular Vanadium Air Redox‐flow battery
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