Non-bonder forming method for lignite
A binder-free, forming method technology, applied in the petroleum industry, solid fuel, fuel, etc., can solve problems such as inability to judge coal briquettes, influence of equipment or process, limit the use range of briquettes, and meet transportation and industrial applications Requirements, mild molding temperature, avoiding the impact of coal cost and application range
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Embodiment 1
[0030] The lignite raw material is dried at 80°C, crushed and sieved to a particle size of less than 5mm, and the sieved lignite is secondarily dried to a moisture content between 10% and 20%. The secondary dried coal powder is put into the mold and preheated to 30°C, and hydraulically formed at a pressure of 180MPa. The cold drop strength of the formed coal is 90%. The formed briquettes were dried at 80°C for 4 hours. It was detected that the moisture content of the briquettes was 3.1%, the thermal drop strength was 95%, and the thermal stability (>13mm) was 85%.
Embodiment 2
[0032] The lignite raw material is dried at 80°C, crushed and sieved to a particle size of less than 5mm, and the sieved lignite is secondarily dried to a moisture content between 5% and 10%. The secondary dried coal powder is put into the mold and preheated to 40°C, and hydraulically formed at a pressure of 150MPa. The cold drop strength of the molded coal is 91%. The molded coal was dried at 100°C for 1 hour. It was detected that the moisture content of the molded coal was 4.9%, the thermal drop strength was 95%, and the thermal stability (>13mm) was 86%.
Embodiment 3
[0034] The lignite raw material is dried at 80°C, crushed and sieved to a particle size of less than 5mm, and the sieved lignite is secondarily dried to a moisture content between 8% and 15%. The secondary dried coal powder is put into the mold and preheated to 60°C, and hydraulically formed at a pressure of 50MPa. The cold drop strength of the molded coal is 90%. The formed briquettes were dried at 50°C for 6 hours. It was detected that the moisture content of the briquettes was 3.7%, the thermal drop strength was 92%, and the thermal stability (>13mm) was 83%.
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