Sipx Sodium Isopropyl Xanthate Mining Process Flotation Reagent for Beneficiation Chemical Sulfide Ore Factory

Product Details
Customization: Available
CAS No.: 140-90-9
Formula: (CH3)2chocssna
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  • Sipx Sodium Isopropyl Xanthate Mining Process Flotation Reagent for Beneficiation Chemical Sulfide Ore Factory
  • Sipx Sodium Isopropyl Xanthate Mining Process Flotation Reagent for Beneficiation Chemical Sulfide Ore Factory
  • Sipx Sodium Isopropyl Xanthate Mining Process Flotation Reagent for Beneficiation Chemical Sulfide Ore Factory
  • Sipx Sodium Isopropyl Xanthate Mining Process Flotation Reagent for Beneficiation Chemical Sulfide Ore Factory
  • Sipx Sodium Isopropyl Xanthate Mining Process Flotation Reagent for Beneficiation Chemical Sulfide Ore Factory
  • Sipx Sodium Isopropyl Xanthate Mining Process Flotation Reagent for Beneficiation Chemical Sulfide Ore Factory
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  • Overview
  • Product Description
  • Detailed Photos
  • Product Parameters
  • Packaging & Shipping
  • Company Profile
  • Certifications
  • FAQ
Overview

Basic Info.

Model NO.
FEX
Classification
Standard Substance
Grade
Industrial
Specific Usage
For Biological Purpose, For Tissue Medium Purpose, For Microbiological, For Microscopic Purpose, For Electron Microscopy, For Lens Blooming, Technical Grade, Pratical Use, Pro Analysis, Super Special Grade, For Synthesis, For Scintillation, For Electrophoresis Use, For Refractive Index, for Mining
Content
Standard
Usage
Mining Flotation
Source
Dry Powder
Habit Appellation
Fine Chemicals
Application
Industry, Scientific Research, Health, Environmental Protection, Agriculture
Property
Granule
Color
Yellow
Souce
Factory
Quotation Term
EXW/Fob/CFR
Production Quantity
165000tons/Year
Trade Mark
Fec
Transport Package
25kg/Bag
Specification
1000kg/pallet
Trademark
FEC
Origin
China
HS Code
2930909899
Production Capacity
165000/Year

Product Description

Product Description
 

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 cutting-edge, high-efficiency collector used prominently in the froth flotation process of various ores, spanning non-ferrous and precious metals. This synthetic organic compound is engineered to selectively adhere to the surfaces of mineral particles, thereby promoting seamless separation from gangue materials.

Key Features:

  • High Selectivity: SIPX boasts exceptional selectivity in flotation processes, enabling the efficient separation of target minerals from undesired materials.
  • Versatility: It is highly compatible with a diverse range of mineral types and can be used synergistically with other flotation reagents for customized separation processes.
  • Stability: Demonstrates robust stability across various pH conditions, making it ideal for a multitude of flotation environments.
  • Ease of Use: SIPX is user-friendly, easy to handle, and mixes effortlessly with water, accommodating diverse flotation systems.

Applications:

  • Froth Flotation: Serves as a collector in the flotation of non-ferrous and precious metal ores, significantly enhancing the separation of valuable minerals from the ore matrix.
  • Mineral Processing: Optimizes the efficiency of mineral beneficiation processes, leading to superior recovery rates and increased purity of the final product.
  • Environmental Applications: Applicable in environmental remediation processes to selectively recover specific metals from contaminated materials.

Safety Information:

  • SIPX should be handled with the utmost care and in strict accordance with established safety protocols.
  • Avoid direct contact with skin and eyes. Ensure the use of appropriate personal protective equipment (PPE) when handling.
  • In case of contact, flush immediately with abundant water and seek medical advice if irritation persists.

Storage Conditions:

  • Store in a cool, dry, and well-ventilated area, safeguarded from direct sunlight and heat sources.
  • Ensure containers remain tightly sealed when not in use to prevent contamination and evaporation.
Detailed Photos
 
Sipx Sodium Isopropyl Xanthate Mining Process Flotation Reagent for Beneficiation Chemical Sulfide Ore Factory
Sodium ethyl xanthate stands out as the most selective collector among xanthate series products. Renowned for its versatility, it is extensively utilized in the preferential flotation of easily floatable and intricate nonferrous gold sulfide ores. Additionally, it pairs effectively with vulcanizing agents for the flotation of copper and lead oxide ores. Beyond its flotation capabilities, it serves as an exceptional hydrometallurgical precipitator, ideal for the purification of zinc electrolytes, and acts as a rubber vulcanization accelerator.
 
Product Parameters
 
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
 
Packaging & Shipping
 
Sipx Sodium Isopropyl Xanthate Mining Process Flotation Reagent for Beneficiation Chemical Sulfide Ore Factory
Sipx Sodium Isopropyl Xanthate Mining Process Flotation Reagent for Beneficiation Chemical Sulfide Ore Factory
Sipx Sodium Isopropyl Xanthate Mining Process Flotation Reagent for Beneficiation Chemical Sulfide Ore Factory
 
Company Profile

Sipx Sodium Isopropyl Xanthate Mining Process Flotation Reagent for Beneficiation Chemical Sulfide Ore Factory
Certifications

Sipx Sodium Isopropyl Xanthate Mining Process Flotation Reagent for Beneficiation Chemical Sulfide Ore Factory
FAQ
 

Understanding Sodium Ethyl Xanthate (NaEX)

Sodium Ethyl Xanthate (NaEX) is a pivotal organic compound renowned in the mining industry for its role as a collector in the froth flotation process. This process is essential for separating valuable sulfide minerals from waste materials, ensuring efficient mineral extraction.

Mechanism of Sodium Ethyl Xanthate in Froth Flotation

NaEX operates by chemisorbing onto the sulfide mineral surfaces, making them hydrophobic. This hydrophobicity allows air bubbles to adhere to the mineral particles, lifting them to the surface of the flotation cell, thereby forming a mineral-enriched froth.

Environmental Impact of Sodium Ethyl Xanthate

Among xanthates, NaEX is often regarded as more environmentally friendly due to its reduced toxicity and biodegradability. However, it remains a chemical agent and mandates careful handling to ensure safety.

Primary Applications of Sodium Ethyl Xanthate

NaEX is predominantly employed in the flotation of sulfide ores, including copper, lead, and zinc. Additionally, it is instrumental in R&D for pioneering new flotation methodologies.

Optimal Storage Conditions for Sodium Ethyl Xanthate

To maintain NaEX's efficacy, store it in a cool, dry, and well-ventilated area, away from direct sunlight and heat. Ensure containers are tightly sealed to prevent contamination and evaporation.

Safety Measures When Handling Sodium Ethyl Xanthate

Always wear appropriate PPE, such as gloves and safety goggles, when handling NaEX. Avoid any skin or eye contact. If contact occurs, rinse immediately with water and seek medical attention if needed.

Compatibility of Sodium Ethyl Xanthate with Other Reagents

NaEX is versatile and can be effectively combined with other flotation reagents like frothers and modifiers to meet specific separation objectives.

Optimal pH Range for Sodium Ethyl Xanthate Performance

For peak performance, NaEX should be utilized in an alkaline environment, ideally with a pH level exceeding 7.

Determining the Appropriate Dosage of Sodium Ethyl Xanthate

The ideal dosage of NaEX is contingent upon factors such as ore type, particle size, and desired separation efficiency. Conducting small-scale tests is recommended to ascertain the precise dosage for your unique application.

Shelf Life of Sodium Ethyl Xanthate

While NaEX doesn't have a strict expiry date, its effectiveness may diminish if not stored correctly. Using the product within the recommended storage conditions and timeframe ensures optimal performance.

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