Customization: | Available |
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CAS No.: | 140-90-9 |
Formula: | (CH3)2chocssna |
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Product Name: Sodium Isopropyl Xanthate (SIPX)
CAS Number: 140-91-0
Molecular Formula: C4H7NaOS2
Appearance: Clear to slightly yellow liquid
Density: Approximately 1.10 g/cm³ at 25°C
Boiling Point: Not applicable; decomposes upon heating
Melting Point: Below -20°C
pH: Alkaline (pH > 7)
Solubility: Soluble in water
Product Description:
Sodium Isopropyl Xanthate (SIPX) is a superior, high-efficiency collector employed in the froth flotation process for various ores, including non-ferrous and precious metals. This synthetic organic compound expertly binds to mineral surfaces, ensuring their effective separation from gangue materials.
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CAS No. | 140-90-9 |
Purity | 85% and 90% |
Classification | General Reagents |
Other Names | SEX |
Molecule formula | C3H7NaOS2 |
EINECS No. | 205-440-9 |
Usage | Mining industry |
Sodium Ethyl Xanthate (NaEX) is a highly effective organic compound utilized as a collector in the froth flotation process, specifically within the mining industry. This indispensable reagent aids in the separation of valuable sulfide minerals from waste materials, ensuring enhanced recovery rates and operational efficiency.
NaEX operates by chemisorbing onto the surface of sulfide minerals, making them hydrophobic. This hydrophobicity allows air bubbles to adhere to the mineral particles, lifting them to the surface of the flotation cell, where they form a mineral-rich froth, thus facilitating efficient mineral extraction.
Among xanthates, NaEX stands out for its relative environmental friendliness due to its lower toxicity and biodegradability. However, as it remains a chemical substance, strict handling procedures and safety measures are essential to mitigate any potential risks.
NaEX is predominantly employed in the flotation of sulfide ores including copper, lead, and zinc, as well as other valuable minerals. Additionally, it serves a crucial role in research and development for pioneering new flotation methodologies and techniques.
To maintain its efficacy, NaEX should be stored in a cool, dry, and well-ventilated environment, shielded from direct sunlight and heat sources. Ensure containers are tightly sealed to prevent contamination and evaporation, preserving the reagent's quality over time.
When handling NaEX, it is imperative to wear personal protective equipment (PPE), such as gloves and safety goggles. Avoid any contact with skin and eyes. In the event of exposure, immediately flush the affected area with water and seek medical attention if necessary.
Indeed, NaEX can be effectively used alongside other flotation reagents, including frothers and modifiers, to achieve precise and optimized mineral separation outcomes, catering to specific operational requirements.
NaEX demonstrates optimal performance within an alkaline environment, typically at a pH level greater than 7, ensuring maximum efficacy in the flotation process.
Determining the ideal dosage of NaEX relies on numerous factors, including ore type, particle size, and desired separation efficiency. Conducting small-scale tests is recommended to ascertain the optimal dosage tailored for your specific application, ensuring peak performance.
While NaEX does not possess a stringent expiration date, its effectiveness may diminish over extended periods if not stored correctly. Adhering to recommended storage conditions and usage timelines is advisable to maintain the reagent's performance.