Method for reducing influences of impurity elements in ferrophosphorus on LixFeyPzO4
An impurity element, ferrophosphorus technology is applied in the field of reducing the influence of ferrophosphorus impurity elements on LixFeyPzO4, which can solve the problems of high cost of impurity removal, affecting the electrochemical performance of materials, etc., so as to improve the tap density and solve the problem that the amount of oxygen is difficult to control accurately. , the effect of easy industrial scale production
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Embodiment 1
[0027] Fe 2 Preparation of LiFePO from P and lithium carbonate 4 After dissolving ferrophosphorus with aqua regia, elemental analysis is carried out. The raw material of ferrophosphorus contains 67.7% Fe, 18.9% P, 6.3% Si, 2.1% Mn, 1.3% Ti, 1.2% V, 1.2% C, the remaining insoluble impurity content is 1.3%, according to the calculation, the composition of ferrophosphorus is approximately Fe 2 P, since C is burned off during the reaction, the real impurity elements are Si, Mn, Ti, V and insoluble impurities. It is worth noting that: according to literature reports, Si, Mn, Ti and V are beneficial to improve the 4 The electrochemical performance of the positive electrode material, and the impurity elements Si, Mn, Ti and V in the actual reaction process will affect the LiFePO 4 Perform in-situ self-doping. Here, it may be assumed that Si, Mn, Ti, V and insoluble impurities are the impurity elements to be removed in ferrophosphorus. According to their physical and chemical prope...
Embodiment 2
[0043] Preparation of LiFePO from iron phosphorus FeP and lithium hydroxide as raw materials 4 , after elemental analysis, the ferrophosphorus raw material contains 54.1% Fe, 29.8% P, 7.3% Si, 2.1% Mn, 1.5% Ti, 1.5% V, 2.2% C, and the remaining insoluble impurities are 1.5%, according to the calculation, the composition of ferrophosphorus is approximately FeP, since C is burned off during the reaction process, and 0.3% of other impurities are allowed to exist in battery grade raw materials, so the real impurity elements are Si, Mn, Ti, V and insoluble impurities, it is worth noting that according to literature reports Si, Mn, Ti and V are beneficial to improve LiFePO 4 The electrochemical performance of the positive electrode material, and the impurity elements Si, Mn, Ti and V in the actual reaction process will affect the LiFePO 4 Perform in-situ self-doping. Here, it may be assumed that Si, Mn, Ti, V and insoluble impurities are the impurity elements to be removed in ferr...
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