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Alloy Anode for Seawater Batteries and Related Mechanisms

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Alloy Anode for Seawater Batteries and Related Mechanisms ( alloy-anode-seawater-batteries-and-related-mechanisms )

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Processes 2020, 8, 1362 14 of 17 Processes 2020, 8, x FOR PEER REVIEW 14 of 17 Figure 11. Discharge mechanism diagram of (a) Mg and (b) Mg–8%Al–0.4%Bi alloy for seawater Figure 11. Discharge mechanism diagram of (a) Mg and (b) Mg–8%Al–0.4%Bi alloy for seawater 1. 2. The electrode performance of the as-cast Mg–8%Al–0.4%Bi alloy shows that compared with 2. EIS research and immersion tests show that the chemical resistance of the Mg alloy surface 1. The electrode performance of the as-cast Mg–8%Al–0.4%Bi alloy shows that compared with pure battery anode. battery anode. 5. Conclusions 5. Conclusions pure Mg or Mg–8%Al alloy, it has a more negative discharge potential of −1.185 V and a higher Mg or Mg–8%Al alloy, it has a more negative discharge potential of −1.185 V and a higher utilization rate of 72.4%. utilization rate of 72.4%. EIS research and immersion tests show that the chemical resistance of the Mg alloy surface protective film follows the following order: Mg < Mg–8%Al < Mg–8%Al–0.4%Bi. Therefore, protective film follows the following order: Mg < Mg–8%Al < Mg–8%Al–0.4%Bi. Therefore, the thecocrorrorsoiosinornarteatoefothfethMegM–8g%–8A%l–A0.l4–%0.B4i%aBllioyalilnoyseianwsaetaewr iastethreisltohweeslto.west. 3. 3.DiDffeifrfenretnpthpahsaeseisninththeemmaaggnneessiiumalloyplayanimimppoortratannttrorloeleininelecletrcotcrohcehmeimcailcpaelrpfoermfoarnmcaen.ce. The Mg17Al12 and BiOCl phases in the as-cast Mg–8%Al–0.4%Bi alloy can increase the alloy utilization rate and promote the dissolution of α-Mg in seawater during discharge. Moreover,

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