MoS 2 + 3 | 1 | O 2 → | MoO 3 + 2SO 2 ↑ |
2 |
MoO 2 + 6MoO 3 → 7MoO 2 + 2SO 2
MoS 2 + | 1 | O 2 → | MoO 3 |
2 |
PR Amman and TAost studied the oxidation kinetics of molybdenite powder at 525-635 °C. They believed that the oxidation of molybdenite to molybdenum trioxide was carried out in two stages: the first stage, Molybdenum ore is first oxidized to a low-oxide oxide of molybdenum - MoO 2 :
MoO 2 + 3O 2 → MoO 2 + 2SO 2 ↑ △S=—905kJ/mol
MoS 2 + | 1 | O 2 → | MoO 3 |
2 |
A. r. Robarlev's thermal analysis showed that the synthesis of the MoS 2 oxidation process was also confirmed.
Sample and temperature (°C) Phase | MoS 2 lubricant | Containing MoS 2 98% | Molybdenum concentrate (including MoS 2 78.1%) |
360 430 | 540 670 | 460 560 670 | |
MoS 2 MoO 2 Mo 4 O 11 MoO 3 | Strong Very weak | in in in Medium strong | Very strong and weak Weak Medium Weak |
time (h) temperature (°C) | 1 | 3 | 6 | 18 | twenty four | 48 | 72 | 76 |
250 | <0.1 | <0.1 | 0.1< | <0.1 | 0.2 | 0.4 | 0.5 | 0.6 |
300 | 1.0 | 3.2 | 5.0 | 15.0 | 19.5 | 24.3 | 26.0 | 27.3 |
400 | 2.9 | 12.1 | 16.0 | 22.0 | 24.5 | 27.9 | 37.0 | 46.0 |
500 | 57.2 | 74.5 | 79.3 | 80.2 | 84.7 | 94.7 | 96.0 | 96.5 |
Table 3 Effect of particle size on oxidation of molybdenite (400 ° C)
time (h) temperature (°C) | 1 | 3 | 6 | 18 | twenty four | 48 | 72 | 76 |
4.2 | <0.1 | 4.0 | 5.8 | 10.4 | 17.4 | 22.0 | 30.1 | 38.2 |
1.7 | 2.9 | 12.1 | 16.0 | 20.5 | 24.5 | 27.9 | 37.0 | 46.0 |
0.66 | 48.0 | 55.0 | 62.3 | 69.8 | 84.4 | 85.6 | 86.9 | 89.0 |
What are the similarities and differences between the “face†and “edge†oxidation of molybdenum ore during roasting? Xing Yongqing used X-ray diffraction to determine the difference in oxidation rate of each molybdenum fracture surface during oxygenation roasting. The [001] surface oxidation rate is less than 20% at 250 ° C, and [100] has exceeded 60%. The other five facet oxidation rates are somewhere in between (see Figure 1).
Fig.1 Comparison of oxidation rates of different fracture surfaces of molybdenite
Face type | Planes | Leaching speed (mg·cm - 2 ·min -1 ) | proportion |
surface edge | [001] [100] | 0.56×10 -3 2.43×10 -3 | 1 4.34 |
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