Customization: | Available |
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CAS No.: | 2540-36-5 |
Formula: | (CH3)2chch2CH2ocssna |
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Product Name: Sodium Isoamyl Xanthate (SIX)
CAS Number: [Specific CAS number if available]
Molecular Formula: C6H11NaOS2
Appearance: Clear to pale yellow liquid
Density: Approximately 1.05 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 Isoamyl Xanthate (SIX) is a high-efficiency collector reagent used in the mineral processing industry for the froth flotation of sulfide and other ores. It is an organic sulfur compound that chemisorbs onto the surface of mineral particles, making them hydrophobic and facilitating their separation from the hydrophilic gangue materials.
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Xanthate compounds are a class of organic sulfur chemicals, renowned for their efficacy as flotation collectors, predominantly used in the mining and mineral processing industries. These agents excel in enhancing the separation process by rendering valuable minerals hydrophobic, thereby facilitating their attachment to air bubbles for an efficient separation from waste materials.
Xanthates function by chemisorbing onto the surface of mineral particles, transforming them into hydrophobic entities. This characteristic enables the mineral particles to adhere to air bubbles in the presence of air and water. Subsequently, these bubbles ascend to form a mineral-rich froth, which can be segregated from the remaining water and waste materials, ensuring a superior recovery rate.
The industry predominantly utilizes several types of xanthates: Sodium Ethyl Xanthate (SEX), Sodium Isopropyl Xanthate (SIPX), Sodium Butyl Xanthate (SBX), and Sodium Isoamyl Xanthate (SIX). Each variant boasts unique properties, making them ideal for specific ores and flotation conditions, tailored to optimize performance and recovery efficiency.
Selecting the appropriate xanthate hinges on multiple factors: the specific type of ore undergoing processing, the targeted mineral recovery rate, the pH balance of the flotation environment, and the compatibility with other reagents employed in the flotation process. These criteria ensure the optimal performance of the xanthate in question.
When handling xanthates, it is paramount to don Personal Protective Equipment (PPE) such as gloves, safety goggles, and a mask. Ensure usage in a well-ventilated area to mitigate inhalation risks of vapors or dust. In cases of skin or eye contact, immediate flushing with ample water is advised, and medical consultation should be sought if necessary.
For optimal preservation, xanthates should be stored in a cool, dry, and well-ventilated space, shielded from direct sunlight and heat sources. Ensure containers are tightly sealed to prevent contamination and evaporation, maintaining the integrity and efficacy of the xanthates.
Within the pharmaceutical realm, xanthates serve as crucial intermediates in the synthesis of various drugs and act as chelating agents in the formulation of metal-based pharmaceuticals, contributing significantly to the development and efficacy of therapeutic solutions.
Indeed, xanthates extend their utility beyond mining. In the rubber industry, they function as accelerators, in the textile sector they assist in dye fixation, and in the water treatment industry, they are employed for biocide applications. These diverse roles underscore the versatility of xanthates across multiple domains.
Determining the optimal xanthate dosage involves considering factors such as ore type, particle size, and the desired separation efficiency. Conducting small-scale tests is recommended to ascertain the precise dosage tailored to your specific application, ensuring maximum efficacy and resource optimization.