Different treatments for positive and negative electrode materials of an all-vanadium redox flow battery
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摘要: 為了獲得大反應電流,全釩氧化還原液流電池使用聚丙烯腈基碳氈為電極活性材料.在空氣中熱處理碳氈可以增加其表面含氧官能團濃度,改善碳氈的親水性,降低反應過電位.實驗表明:電池的過電位主要由正極反應造成;熱處理正極碳氈可以大大降低電池極化內阻,負極碳氈熱處理后降低了析氫過電位,從而降低了電池的電流效率;正極使用熱處理后的碳氈,負極使用未經處理的原氈,可以獲得更好的電池能量效率.
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關鍵詞:
- 全釩氧化還原液流電池 /
- 聚丙烯腈基碳氈 /
- 過電位 /
- 電池內阻
Abstract: An all-vanadium redox-flow battery (VRB) typically uses carbon felt as the electrode material in order to enhance the reactive current. The carbon felt made by polyaerylonitrile-based polymers can be heat-treated to increase the number of surface oxide sites and to improve its crystallinity and conductivity. It was examined in VRB that the over potentiality was mainly caused by positive pole reactions. The heat treatment of positive felt could decrease the cell's resistance dramatically, but that of negative felt induced low hydrogen evolution over potentiality and low current efficiency. With raw felt as the negative pole material and heat-treated felt as the positive pole material the test cell could get the optimal energy efficiency. -

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