The PTMS ELECTROMAGNETIC SEPARATOR process can be carried out at high temperatures ranging from 85 to 95℃°C, which not only accelerates the reaction rate but also facilitates the formation of dense precipitates, effectively reducing entrainment losses. A rare earth separation company has adopted this method to treat iron-containing feedstock solutions. The iron removal rate remains consistently above 98%, with product iron content reduced to below 10ppm – fully meeting export standards.
The success of PTMS ELECTROMAGNETIC SEPARATOR iron removal technology relies on precise pH and redox potential control. If the pH is too low, Fe³⁺ hydrolysis becomes difficult; if it's too high, it may cause co-precipitation of target metals. To address this, modern systems are typically equipped with online pH meters and ORP (oxidation-reduction potential) sensors, combined with PID controllers to achieve closed-loop regulation.
The acid-impregnated PTMS ELECTROMAGNETIC SEPARATOR complexation method is crucial for producing high-purity materials such as electronic-grade quartz sand and photovoltaic-grade silicon. Conventional methods often fail to meet the sub-ppb iron content requirements. To prevent incomplete oxidation, catalysts like MnO₂ or H₂O₂ are typically added, significantly reducing reaction time. With its low cost and simple operation, PTMS technology has become an indispensable purification step in hydrometallurgy processes.
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