Method for separating bismuth from arsenic in high-bismuth and arsenic sulfur concentrate
A high-arsenic bismuth sulphur concentrate and arsenic separation technology, applied in the field of mineral processing, can solve the problems of difficulty in bismuth-sulfur flotation separation, large differences in the floatability of pyrrhotite, easy entry of pyrrhotite into the flotation concentrate, etc. , to achieve the effect of solving the difficulty of separation of bismuth and arsenic, solving the high cost of leaching, and reducing the processing capacity of leaching operation.
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Embodiment 1
[0037] In Example 1, the ore is a high-arsenic sulfur concentrate containing pyrrhotite in a certain place in Yunnan, China.
[0038] S1. 80% of the ore is ground to -0.074mm;
[0039] S2. Carry out weak magnetic separation to the product after grinding in a weak magnetic separator, and adjust the magnetic field strength to 0.15T to obtain pyrrhotite concentrate and weak magnetic tailings with stronger magnetism;
[0040] S3. Feed the weak magnetic tailings into the strong magnetic separator for strong magnetic roughing, adjust the magnetic field strength to 0.45T, and obtain the weaker magnetic pyrrhotite coarse concentrate and strong magnetic tailings;
[0041] S4. Feed the pyrrhotite coarse concentrate into the strong magnetic separator for strong magnetic concentration, adjust the magnetic field strength to 0.40T, and obtain the weaker magnetic pyrrhotite concentrate and magnetic middle ore;
[0042] S5. Combining the pyrrhotite concentrate with stronger magnetism and the...
Embodiment 2
[0047] In Example 2, the ore is a high-arsenic sulfur concentrate containing pyrrhotite in a certain place in Guangxi, China.
[0048] S1. Bismuth sulfur concentrate is ground to -0.074mm, accounting for 85%;
[0049] S2. Carry out weak magnetic separation of the product after grinding in a weak magnetic separator, adjust the magnetic field strength to 0.3T, and obtain pyrrhotite concentrate and weak magnetic tailings with stronger magnetism;
[0050] S3. Feed the weak magnetic tailings into the strong magnetic separator for strong magnetic roughing, adjust the magnetic field strength to 0.8T, and obtain the weaker magnetic pyrrhotite coarse concentrate and strong magnetic tailings;
[0051] S4. Feed the pyrrhotite coarse concentrate into the strong magnetic separator for strong magnetic concentration, adjust the magnetic field strength to 0.7T, and obtain the weaker magnetic pyrrhotite concentrate and magnetic middle ore;
[0052] S5. Combining the pyrrhotite concentrate wit...
Embodiment 3
[0057] In Example 3, the ore is a high-arsenic sulfur concentrate containing pyrrhotite in a certain place in Hunan, China.
[0058] S1. Bismuth sulfur concentrate is ground to -0.074mm, accounting for 80%;
[0059] S2. Carry out weak magnetic separation to the product after grinding in a weak magnetic separator, and adjust the magnetic field strength to 0.45T to obtain pyrrhotite concentrate and weak magnetic tailings with stronger magnetism;
[0060] S3. Feed the weak magnetic tailings into the strong magnetic separator for strong magnetic roughing, adjust the magnetic field strength to 1.0T, and obtain the weaker magnetic pyrrhotite coarse concentrate and strong magnetic tailings;
[0061] S4. Feed the pyrrhotite coarse concentrate into the strong magnetic separator for strong magnetic concentration, adjust the magnetic field strength to 0.9T, and obtain the weaker magnetic pyrrhotite concentrate and magnetic middle ore;
[0062] S5. Combining the pyrrhotite concentrate wi...
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