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metal separation machine to sort silicon manganese alloy out from smelting slag

There are alloy granules in silico-manganese smelting slag. The slag will do harm to environment and people without efficient processing in time. And here a new flow sheet design and equipment allocation will be for you to solve this question and gain a considerable benefit to recover the overall valuable metal alloy. Anyway, the processing/recovery is of low risk, and large economic profit, so it is valued by more and more investors with its small investment and high beneficiation efficiency.

And the flow sheet is as belows:

To separate the alloy granules needs liberation of the metal alloy granules from the slag, which requires the further crushing even roller crushing according to the specific situation of slag. If the embedded size is very fine, rod milling will be considered while crushing shall be choosed when it comes to the coarse embedded granularities, and high-efficiency crusher or fine crusher can be ok to fulfill the requirement.

In the crushed or milled silica-manganese smelting slag, the metal alloy granules and the waste are separated or liberated. The silica-manganese alloy granules are of high density while the density of the waste is lower. With this difference, gravity separation will be a great way to separate the alloy out. And the alloy granules can be used for smelting or sold directly while the final waste can be sold to the cement factory or new-type buiding material factory.

The high-efficient machine for this silico-manganese slag is jigger. As kind of gravity separation machine, it works on the basis of the different densities of the mineral and tailings, and the bigger the difference is, the better the efficiency it will be and the larger the treatment capacity will be.

Gongyi Forui Machinery Factory in China owns mini trial machines and if your ore/slag samples about 20kgs can be available, we can do a mini ore beneficiation test for you free. We can share the beneficiation/recovery of the alloy with you here.