Synthetic graphite negative electrode material and preparation method thereof
An artificial graphite negative electrode and graphitization technology, which is applied in the field of lithium-ion batteries, can solve the problems of low discharge capacity and insufficient compaction density, and achieve the effects of good electrochemical performance, excellent comprehensive performance, and good safety
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Embodiment 1
[0034] (1) Add 60kg of spherical natural graphite (D50 is 19.1μm), needle coke green coke powder (D50 is 15.4μm) 140kg and graphitization catalyst (SiO 2 ) 16kg, mixed evenly to obtain a mixture;
[0035] (2) Mix the mixture with 60kg of petroleum pitch powder (which has been crushed to below 0.1mm) in a kneading pot, and knead at 160°C for 1 hour;
[0036] (3) After the kneading is completed, press it into a sheet (thickness 4mm) in a tablet press, crush it into particles with an average particle size of less than 100 μm, and mold it into a briquette;
[0037] (4) Under the protection of nitrogen, carbonize at a temperature of 1100 ° C for 2 hours, and then cool the reaction product to room temperature;
[0038] (5) Catalytic graphitization high temperature treatment was carried out at 2800°C for 36 hours to obtain an artificial graphite anode material with a particle size D50 of 18.4 μm, a half-cell capacity of 361.8mAh / g, and an initial efficiency of 93.1%.
Embodiment 2
[0040](1) Add 80kg of spherical natural graphite (D50 is 19.5μm), 120kg of needle coke green coke powder (D50 is 15.4μm) and 6kg of graphitization catalyst (SiC) alternately under stirring, and mix well to obtain a mixture;
[0041] (2) Mix the mixture with 20kg of petroleum pitch powder (which has been crushed to below 0.1mm) in a kneading pot, and knead at 160°C for 1 hour;
[0042] (3) After the kneading is completed, press it into a tablet shape (thickness: 3 mm), crush it into particles with an average particle size of less than 100 μm, and mold it into a briquette;
[0043] (4) Under the protection of nitrogen, carbonize at a temperature of 800 ° C for 6 hours, and then cool the reaction product to room temperature;
[0044] (5) Catalytic graphitization high temperature treatment was carried out at 3000°C for 48 hours to obtain an artificial graphite anode material with a particle size D50 of 17.9 μm, a half-cell capacity of 362.7mAh / g, and an initial efficiency of 92.8%...
Embodiment 3
[0046] (1) Add 100kg of spherical natural graphite (D50 is 20.1μm), 100kg of needle coke raw coke powder (D50 is 19.8μm) and graphitization catalyst (SiO 2 ) 10kg, mixed evenly to obtain a mixture;
[0047] (2) Mix the mixture with 40kg of coal tar pitch powder (which has been crushed to less than 0.1mm) in a kneading pot, and knead at 160°C for 1 hour;
[0048] (3) After the kneading is completed, press it into a tablet shape (thickness: 5 mm), crush it into particles with an average particle size of less than 100 μm, and mold it into a briquette;
[0049] (4) Under the protection of nitrogen, carbonize at a temperature of 1500 ° C for 3 hours, and then cool the reaction product to room temperature;
[0050] (5) Catalytic graphitization high temperature treatment was carried out at 3200°C for 48 hours to obtain an artificial graphite anode material with a particle size D50 of 20.4 μm, a half-cell capacity of 366.5mAh / g, and an initial efficiency of 92.0%.
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