Method for energy conservation and emission reduction of manganese mineral powder sintering
A technology for energy saving and emission reduction, manganese ore powder, applied in the field of pyrometallurgy, can solve the problems of high energy consumption, high fuel consumption, serious environmental pollution, etc., and achieve the effects of realizing energy saving and emission reduction, improving combustion conditions, and reducing fuel consumption
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Embodiment 1
[0033] Straw charcoal is used as the alternative fuel of coke powder. Before use, add water to the straw charcoal and fine-grained manganese dioxide (with a particle size of -0.045mm and 95% by mass) accounting for 2.5% by mass of straw charcoal, and mix well After that, it is mixed with coke powder to obtain a mixed fuel. The mass percentage of straw charcoal instead of coke powder is 15%. The manganese ore powder, mixed fuel, and returned ore are batched, mixed, and granulated, and then distributed, ignited, sintered, and cooled to obtain the finished sintered ore. Under optimized conditions, the finished product rate of sintered ore is 79.50%, and the utilization factor is 1.51t m -2 h -1 , sinter drum strength 59.85%, SO in sinter flue gas 2 The peak content is 1310ppm, NO x The peak content was 476 ppm. Compared with conventional sintering, the quality index of sintered ore is slightly improved, the consumption of solid fuel is reduced by 4.3% (calculated as solid ca...
Embodiment 2
[0035] Pine wood black charcoal is used as an alternative fuel for coke powder. Before use, add water to the pine wood black charcoal and fine-grained manganese dioxide (98.8% of the particle size is -0.045mm) with a mass percentage of pine black carbon of 3.2% , After mixing, it is mixed with coke powder to obtain mixed fuel. The replacement mass percentage of pine black carbon is 30%. The manganese ore powder, mixed fuel, and returned ore are batched, mixed, and granulated, and then distributed, ignited, sintered, and cooled to obtain the finished sintered ore. Under optimized conditions, the finished product rate of sintered ore is 81.12%, and the utilization factor is 1.56t m -2 h -1 , sinter drum strength 60.82%, SO in sinter flue gas 2 The peak content is 1092ppm, NO x The peak content is 424ppm (as attached figure 1 , attached figure 2 ). Compared with conventional sintering, the quality index of sintered ore is improved, the consumption of solid fuel is reduced...
Embodiment 3
[0037] Pine wood black charcoal is used as an alternative fuel for coke powder. Before use, add water to the pine wood black charcoal and fine-grained manganese dioxide (98.8% of the particle size is -0.045mm) with a mass percentage of pine black charcoal of 4.0% , After mixing, it is mixed with coke powder to obtain mixed fuel. The replacement mass percentage of pine black carbon is 40%. The manganese ore powder, mixed fuel, and returned ore are batched, mixed, and granulated, and then distributed, ignited, sintered, and cooled to obtain the finished sintered ore. Under optimized conditions, the finished product rate of sintered ore is 80.68%, and the utilization factor is 1.53t m -2 h -1 , sinter drum strength 60.54%, SO in sinter flue gas 2 The peak content is 825ppm, NO x The peak content is 361ppm (as attached figure 1 , attached figure 2 ). Compared with conventional sintering, the quality index of sintered ore is improved, the consumption of solid fuel is reduce...
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