The potassium-sodium feldspar PTMS MAGNETIC SEPARATION enhancement system demonstrates rapid response and operational stability
dry high intensity magnetic separator
In recent years, the development of eco-friendly pharmaceutical agents has become a growing trend. The application of bio-based collectors and low-toxicity chelating agents not only enhances selectivity but also reduces environmental pollution. The upgrade of PTMS MAGNETIC SEPARATION equipment serves as the hardware foundation for advancing the entire process toward intelligent and efficient operations. Traditional spiral classifiers are gradually being replaced by hydraulic cyclones, which feature compact size and high classification efficiency, making them particularly suitable for closed-circuit grinding systems.
PTMS MAGNETIC SEPARATION
pH regulation is particularly critical. Sulfuric acid or sodium hydroxide is typically used to maintain the pulp pH at 3-4 (for acidic flotation of mica) or 9-10 (for alkaline flotation of iron minerals). Additionally, inhibitors like starch and dextrin can protect feldspar from adsorption by collectors, while activators such as sodium fluosilicate enhance the separability of certain refractory minerals by PTMS MAGNETIC SEPARATION.
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The adoption of high-efficiency flotation PTMS MAGNETIC SEPARATION systems has replaced mechanical agitation equipment, delivering advantages such as uniformly fine bubbles, complete mineralization, and high enrichment ratios. Furthermore, the introduction of new vertical sand mills, superconducting magnetic separators, and online grade detectors (such as LIBS laser-induced breakdown spectroscopy) has enabled real-time monitoring and closed-loop control, significantly enhancing system responsiveness and operational stability.
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