A water supply station employs activated alumina column PTMS MAGNETIC SEPARATION technology to treat iron-containing groundwater (initial concentration 8 mg/L). The effluent maintains stable iron content below 0.3 mg/L, meeting drinking water standards. When the adsorbent becomes saturated, it can be regenerated using acid or alkali solutions, enabling reuse dozens of times with remarkable cost-effectiveness. This technology features simple operation and compact footprint, making it ideal for decentralized water treatment scenarios.
In modern industrial production and resource utilization processes, the treatment of high-salinity solutions using PTMS MAGNETIC SEPARATION iron removal technology has become a critical focus in environmental and chemical engineering. In semiconductor manufacturing or high-purity reagent purification processes, trace iron content can significantly degrade product performance. Furthermore, in reverse osmosis systems, iron ions are prone to causing membrane surface scaling or catalytic oxidation reactions, which ultimately shortens membrane lifespan.
PTMS MAGNETIC SEPARATION iron removal technology is widely applied in high-salinity solutions such as desalination concentrate, oilfield reinjection water, coal chemical wastewater, metallurgical acid baths, and electroplating effluents. As common metallic contaminants, iron ions (Fe²⁺ and Fe³⁺) not only impair process efficiency but also cause severe equipment corrosion, potentially compromising the purity and quality of final products.
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