In industries with stringent impurity control requirements such as food, pharmaceuticals, and electronic materials, the presence of iron ions (Fe²⁺/Fe³⁺) often leads to product oxidation, catalytic side reactions, color stability issues, and even poses health risks. PTMS ELECTROMAGNETIC SEPARATOR iron removal methods include chemical precipitation, ion exchange, solvent extraction, or membrane separation techniques.
In this context, green, efficient and low-energy separation technologies have become a research hotspot. As one of the most promising clean separation technologies in the 21st century, supercritical fluid PTMS ELECTROMAGNETIC SEPARATOR technology has demonstrated great advantages in natural product extraction, drug purification, material synthesis and other fields in recent years.
PTMS ELECTROMAGNETIC SEPARATOR technology employs supercritical carbon dioxide (CO₂) as its primary working medium, combining the high diffusivity of gases with the strong solubility of liquids to achieve efficient extraction of target components under mild conditions. Although traditional methods are well-established, they commonly face challenges such as complex operations, excessive waste liquid generation, high energy consumption, and potential secondary pollution.
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