The project utilizes a proprietary in-situ reduction technology that challenges the necessity of traditional high-temperature electric furnace smelting. By operating at temperatures between 550°C and 600°C, the system achieves a reduction rate exceeding 50%. This method effectively turns waste plastics and organic materials into reducing agents, integrating solid waste treatment with mineral enrichment in a single production line.
Efficiency gains remain central to the design. The company reports a waste heat utilization rate surpassing 93%, which contributes to a 36% reduction in total energy consumption compared to conventional industry standards. Furthermore, the process cuts CO₂ emissions per unit of output by roughly 40%. With intelligent control systems now managing material-temperature regulation and dynamic sealing, the technology offers a pathway for sustainable, large-scale processing of vanadium-titanium magnetite and ilmenite tailings.





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