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Study on the Discharge Performance that the High Barium Ferrite as the Electrochemical Properties of Super-Iron Battery Cathode Active Material

机译:高钡铁氧体作为超铁电池阴极活性材料电化学性能的放电性能研究

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The super-iron battery has a green, voltage stability and high-energy characteristics, but the stability is one of the key issues restricting its development. We select high barium ferrite as the active material of the cathode material, research on the stability of sodium silicate (Na_2SiO_3·9H_2O) and potassium permanganate (KMnO_4) as synthetic additives, the battery and its discharge properties. The study showed that the adding 0.2g sodium silicate barium salt of battery has a high discharge voltage and discharge energy, which is greater than the output current, made for 86.89% of the total power of the electric power made by the discharge voltage of 1.4 volts. While adding 0.4 g of sodium silicate barium salt of the battery having a relatively flat discharge platform and a high discharge capacity, which is larger than the discharge voltage of 1.2 volts, the output capacitor accounts for the total output capacity of 93.3%; adding potassium permanganate, barium salt battery compared with no additives barium salt battery discharge voltage of 1.4 volts, 91% of the total capacity of the discharge capacity, discharge energy to the total energy of 93.4%. The modified alkaline high barium ferrite batteries (Zn/BaFeO_4) suitable for high current discharge voltage and stable work occasions.
机译:超级铁电池具有绿色环保,电压稳定和高能量特性,但稳定性是制约其发展的关键问题之一。我们选择高铁酸钡作为阴极材料的活性材料,研究硅酸钠的稳定性(Na_2SiO_3·9H_2O)和高锰酸钾(KMnO_4)作为合成添加剂时,电池和它的放电性能。研究表明,电池的加入0.2克硅酸钠钡盐具有高的放电电压和放电的能量,这是比输出电流时,用于电力的由1.4放电电压所作的总功率的86.89%由伏。同时加入0.4克具有相对平坦的放电平台和高的放电容量,这是比的1.2伏放电电压大电池的硅酸钠钡盐,输出电容占93.3%的总输出能力;加入高锰酸钾,钡盐电池为1.4伏特时,放电容量的总容量,放电能量的93.4%的总能量的91%没有任何添加剂的钡盐电池放电电压进行比较。修改后的高碱性钡铁氧体电池(锌/ BaFeO_4)适用于大电流放电电压和稳定的工作场合。

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