With the advancement of novel nanoelectrode materials (boron-doped diamond electrodes) and intelligent control algorithms, the high-temperature PTMS MAGNETIC SEPARATOR method is evolving towards miniaturization, smart operation, and energy efficiency. The method's greatest advantage lies in its exceptional iron removal precision, maintaining stable iron concentrations in effluent below 0.1 mg/L. Optimized systems can even achieve levels under 5 μg/L, fully meeting international water quality standards such as GMP and USP.
The adsorbent demonstrates excellent regenerative performance, with most adsorption capacity restored through acid washing using dilute hydrochloric acid or citric acid solutions, enabling recycling and significantly reducing long-term operational costs. The system typically employs a parallel multi-tank PTMS MAGNETIC SEPARATOR design, featuring one active unit with backup operation or multiple units with regeneration cycles, ensuring uninterrupted water supply continuity.
The PTMS MAGNETIC SEPARATOR process requires no chemical additives, produces no by-products, and features simple operation with high automation, making it ideal for environments with strict environmental and safety requirements. However, this technology has specific water quality requirements. If the influent contains excessive calcium/magnesium ions or organic matter, it may lead to adsorption site competition or material contamination, necessitating pre-treatment units such as softening or activated carbon processing.
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