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Converting

Teniente Converter
The Teniente Converter is a horizontal steel barrel with submerged tuyere. This kind of primary smelting is basically used to produce blister copper or high grade matte in a continuous process combined with optimized energy balance. Dalmia GSB’s direct bonded MAG-Chrome Bricks are highly resistant to corrosion and infiltration caused by untreated flux.
These are the solutions for Teniente Converter:
Special Features:
PS Converter
In this horizontal converter, blister copper is produced. As it undergoes different thermo-mechanical and pyrochemical stresses, refractories used here need to have high resistance to liquid infiltration and hot erosion. Dalmia GSB’s MAG-Chrome Bricks are highly resistant to liquid infiltration and hot erosion in the Tuyere Zone caused by high bath agitation.
These are the solutions for PS Converters:
Special Features:
Top Blown Rotary Converter
This converter operates in inclined position, which rotates about its horizontal axis for treatment of copper smelter anode slimes to recover precious metal content. These direct bonded Mag-Chrome Bricks are excellent resistance to heavy erosion.
These are the solutions for Top Blown Rotary Converter:
Special Features:
Mitsubishi Converter
In this converter, copper matte and the limestone are reacted with oxygen enriched air to form blister copper and then separated from the slag by difference in specific gravity. Direct bonded Mag-Chrome Bricks from Dalmia GSB are highly resistant to heavy erosion.
These are the solutions for Mitsubishi Converter:
Special Features:
Flash Converter
In this furnace blister copper is produced from matte, a process similar to the flash smelter process. In the flash converter lime is also used to form calcium ferrite slag with high copper oxide. Dalmia GSB’s Mag-Chrome Bricks are highly resistant to pyrochemical stresses caused by fayalatic slag and matte infiltration in the settler.
These are the solutions for Flash Converter:
Special Features:
The Fusion of East and West.
Best in Refractories.

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