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update date:2023-07-20 03:14:54Number of views: author:锦强选矿机械
Calcium titanium sand is an important mineral resource widely used in fields such as construction, metallurgy, and chemical engineering. However, due to the high hardness and strong wear resistance of calcium titanium sand, traditional mineral processing methods are difficult to effectively separate calcium titanium sand and other minerals. To address this issue, we conducted gravity beneficiation experiments on calcium titanium sand.
Test process
1. Ore crushing
Firstly, we need to crush the raw ore for subsequent beneficiation operations. In the experiment, we selected a crusher for ore crushing, and the particle size of the crushed ore is below 5mm.
2. Gravity beneficiation
Next, we will use a gravity concentrator for beneficiation. Gravity beneficiation is a separation method based on the difference of material density. Minerals with different densities are separated by gravity. In the experiment, we selected a gravity concentrator for operation. The working principle of the concentrator is to place the ore on an inclined plane and separate the minerals through the action of water flow and gravity.
3. Screening
After gravity beneficiation, we also need to perform screening operations to further improve beneficiation efficiency. In the experiment, we selected a screening machine for operation. The working principle of the screening machine is to separate the ore through a sieve, separating minerals with different particle sizes.
4. Flotation
Finally, we conducted flotation operations to further improve the purity of calcium titanium sand. Flotation is a separation method based on differences in mineral surface properties, which separates minerals through chemical agents and bubbles. In the experiment, we selected a flotation machine for operation. The working principle of the flotation machine is to put the ore into a flotation cell, add chemicals and bubbles, and separate calcium titanium sand and other minerals.
test result
Through the above operations, we have successfully separated high-purity calcium titanium sand. The experimental results indicate that gravity beneficiation is an effective separation method and can be used for the beneficiation of calcium titanium sand. Meanwhile, screening and flotation operations can further improve the purity and quality of calcium titanium sand.
conclusion
The successful gravity beneficiation experiment of calcium titanium sand provides an effective method for the beneficiation of calcium titanium sand. In practical applications, we can choose appropriate beneficiation methods and equipment based on different ore characteristics and beneficiation requirements to improve beneficiation efficiency and quality.