Customization: | Available |
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CAS No.: | 140-90-9 |
Formula: | C3h5naos2 |
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Product Name: Potassium Isoamyl Xanthate (PIAX)
CAS Number: 928-70-162
Molecular Formula: C6H11KOS262
Appearance: Colorless to pale yellow liquid
Density: [Specific value, typically around 1.05 g/cm³ for similar compounds]
Boiling Point: Not applicable; decomposes upon heating
Melting Point: Solidifies at low temperatures
pH: Alkaline in aqueous solution (pH > 7)
Solubility: Soluble in water
Product Description: Potassium Isoamyl Xanthate (PIAX) is a high-efficiency collector widely recognized in the mining industry for its robust performance in the froth flotation process. This powerful reagent is exceptional for its strong collecting power, particularly in the flotation of non-ferrous metals, oxidized sulfide ores, as well as copper oxide and lead oxide ores.
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PIAX is predominantly utilized as a powerful collector in the froth flotation process of sulfide ores. It is especially effective for non-ferrous metals, enhancing the separation and recovery of valuable minerals.
Renowned for its robust collecting power, PIAX stands out due to its exceptional effectiveness in ores requiring potent collection without compromising on selectivity.
Absolutely. PIAX proves its efficacy in the flotation of oxidized sulfide ores and is also highly effective for copper oxide and lead oxide ores.
When dealing with PIAX, ensure wearing appropriate PPE, including gloves, safety goggles, and a mask, to prevent skin and eye contact. In case of accidental contact, rinse immediately with ample water and seek medical advice if required.
Store PIAX in a cool, dry, and well-ventilated area, shielded from direct sunlight and heat sources. Ensure containers are tightly sealed to prevent contamination and evaporation.
PIAX is considered biodegradable, adding to its environmental benefits compared to some other xanthate collectors. Nevertheless, it should still be handled and disposed of following local environmental regulations to ensure safety.
The optimal PIAX dosage depends on several variables, such as ore type, particle size, and desired separation efficiency. It is advisable to conduct small-scale tests to determine the most suitable dosage for your specific application.
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