Preparation method of low-cost composite particle graphite cathode material
A composite particle and graphite negative electrode technology, applied in chemical instruments and methods, carbon compounds, battery electrodes, etc., can solve problems such as high cost and complex process, achieve smooth de-intercalation, improve charge and discharge performance, and save costs
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Embodiment 1
[0027] A1. Mix 5 μm pitch coke and pitch powder at a ratio of 100:1, and use a V-type mixer for mixing. The speed of the V-type mixer is 500 rpm, and the mixing time is 30 minutes. After mixing evenly, the mixture is obtained;
[0028] A2. Put the above mixture into the graphitization furnace for graphitization treatment. Firstly, use the heating rate = 50°C / h and power on for 4 hours to reach 200°C; then use the heating rate = 100°C / h and power on for 5 hours to reach 700°C ; Then use the heating curve of the conventional graphitization process to raise the temperature to 3050°C; finally, naturally cool it to below 200°C to get the composite particle graphitization material;
[0029] A3. Classify the above-mentioned composite granular graphitized material, and control the material D 50 =8-20μm, D 100 =40-55μm, to obtain graded materials;
[0030] A4, the above-mentioned graded materials are screened and demagnetized and packaged to obtain a composite particle graphite negat...
Embodiment 2
[0032] Mix 8μm needle coke calcined front coke and pitch powder at a ratio of 100:10, and mix evenly to obtain a mixture; put the above mixture into a graphitization furnace for graphitization treatment: ①Use heating rate=80℃ / h power transmission for 2 hours, reaching 160°C; ②Using heating rate = 150°C / h and power supply for 3h, reaching 610°C; ③Using the heating curve of conventional graphitization process to raise the temperature to 3050°C; ④Natural cooling to 50 =8-20μm, D 100 = 40-55 μm, to obtain the graded material; the above-mentioned graded material is screened and demagnetized to obtain a composite particle graphite negative electrode material, and the SEM image of the composite particle graphite negative electrode material is as follows figure 2 shown.
Embodiment 3
[0034] Mix 12μm petroleum coke and pitch powder at a ratio of 100:15, use a conical mixer at a speed of 1500rpm, and mix for 150 minutes to obtain a mixture; put the above mixture into a graphitization furnace for graphitization treatment ① Use Heating rate = 100°C / h and power supply for 3 hours, reaching 300°C; ② Adopting heating rate = 200°C / h and power supply for 1 hour, reaching 500°C; ③ Adopting the heating curve of conventional graphitization process to raise the temperature to 3050°C; ④ Natural cooling to 50 =8-20μm, D 100 = 40-55 μm, to obtain the graded material; the above-mentioned graded material is screened and demagnetized to obtain a composite particle graphite negative electrode material, and the SEM image of the composite particle graphite negative electrode material is as follows image 3 shown.
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