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Rare Earth Smelting Raw Material Testing Carbon Sulfur Analyzer 220V 50Hz

Place of Origin China
Brand Name MORITA
Model Number QR-9000S
Minimum Order Quantity 1 PC
Packaging Details wooden case
Delivery Time 15 days
Payment Terms T/T
Supply Ability 100 pcs per month

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Product Details
Detection Method Infrared Absorption Method Software Data Analysis And Reporting Software
Power Supply 220V, 50Hz
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50Hz Carbon Sulfur Analyzer

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220V Carbon Sulfur Analyzer

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220V carbon sulphur analyser

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Measurement range Cω(C): 0.000001%~99.999999% (≤10% or ≥10% expandable to 99.9999%)Sω(S): 0.000001%~99.999999%(≤10% or ≥10% expandable to 99.9999%)
Analytical precision C:≤RSD0.5%. S:RSD≤1.0%
Sensitivity 0.1PPM
Analysis time 25-60s (normally 35s)
Analytic error meet standard: JJG395-2016 (C: ISO9556, S: ISO4935)
Oscillation frequency 20MHz
Burning power 2.5KVA—7.5KVA( adjustable)
Working environment Indoor temperature: 10℃~30℃Relative humidity: 75%
Voltage AC220V±5%, Frequency:50H±2%
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Measurement range Cω(C): 0.000001%~99.999999% (≤10% or ≥10% expandable to 99.9999%)Sω(S): 0.000001%~99.999999%(≤10% or ≥10% expandable to 99.9999%)
Product Description
High-Frequency Infrared Carbon And Sulfur Analyzer QR-9000S For Rare Earth Smelting Raw Material Testing
 
The QR-9000S High-Frequency Infrared Carbon and Sulfur Analyzer is a high-precision analytical tool designed to measure the carbon and sulfur content in raw materials used in rare earth smelting. With outstanding accuracy (C: ≤ RSD 0.5%) and high sensitivity (0.1 PPM), the QR-9000S ensures the highest quality control for rare earth metals and materials. The analyzer’s broad sulfur measurement range (0.000001% to 99.999999%) makes it especially suitable for detecting even the smallest sulfur impurities, which is critical for the smelting process of rare earth materials.
 
Key Features and Benefits
 
Precision and Sensitivity: The QR-9000S delivers superior precision with a carbon analysis accuracy of ≤ RSD 0.5% and sulfur precision of ≤ RSD 1.0%. The analyzer’s sensitivity of 0.1 PPM ensures even trace amounts of sulfur and carbon are detected, which is crucial in rare earth smelting where purity is vital.
 
Wide Sulfur Measurement Range: The analyzer can measure sulfur content in the range of 0.000001% to 99.999999%, making it adaptable for various types of raw materials used in rare earth smelting. This wide range ensures that the QR-9000S can detect both extremely low and high concentrations of sulfur.
 
Fast and Efficient Analysis: The QR-9000S offers rapid results with an analysis time of just 25-60 seconds. This quick turnaround time enables manufacturers to conduct real-time quality control, improving overall efficiency and reducing production downtime.
 
Advanced Infrared Detection: Featuring a platinum infrared light source and high-precision pyroelectric infrared detector, the QR-9000S ensures stable, reliable, and accurate results under varying environmental conditions.
 
User-Friendly Interface: The analyzer comes with intuitive software that supports both Chinese and English interfaces, allowing operators to easily configure settings, review results, and perform diagnostics. The software also enables automatic tracking and adjustment, minimizing the potential for human error.
 
Durable and Cost-Effective: With a robust modular design and durable high-frequency combustion system, the QR-9000S is designed for long-term, continuous use in industrial settings. It requires minimal maintenance, ensuring lower operational costs over time.
 
Applications in Rare Earth Smelting Raw Material Testing
 
The QR-9000S High-Frequency Infrared Carbon and Sulfur Analyzer is ideally suited for testing raw materials used in the rare earth smelting process. Rare earth elements are essential in various high-tech applications, such as electronics, renewable energy, and aerospace industries. Ensuring the purity of rare earth materials during smelting is crucial for achieving optimal performance and meeting industry standards.
 
The analyzer is particularly important in monitoring carbon and sulfur levels in ores, concentrates, and other materials used in the production of rare earth metals. Excess sulfur can contaminate rare earth metals, negatively affecting their chemical properties and performance. By accurately measuring carbon and sulfur content, the QR-9000S helps prevent defects, ensuring the smelting process is efficient and the final rare earth materials meet the required specifications for downstream applications.
 
Advantages
 
Improved Smelting Efficiency: The accurate analysis of sulfur and carbon content ensures that raw materials meet the necessary purity levels, enhancing the efficiency of the smelting process and preventing defects.
 
Quick and Efficient Testing: The fast analysis time (25-60 seconds) allows for continuous monitoring of raw materials, increasing production efficiency and reducing delays in quality control.
 
Cost-Effective: The durable design, low maintenance requirements, and high reliability of the QR-9000S make it a cost-effective solution for long-term use in the rare earth smelting industry.
 
Reliable and Stable Performance: The advanced infrared detection system ensures that the QR-9000S provides accurate, stable, and reproducible results, even in challenging industrial environments.
 
Technical Specifications
Specification Value
Measurement Element C and S
Measurement Range C: 0.000001% – 99.999999% (expandable)
S: 0.000001% – 99.999999% (expandable)
Analytical Precision C: ≤ RSD 0.5%, S: ≤ RSD 1.0%
Sensitivity 0.1 PPM
Analysis Time 25-60s (typically 35s)
Oscillation Frequency 20 MHz
Burning Power 2.5 KVA – 7.5 KVA (adjustable)
Working Environment 10°C – 30°C, 75% relative humidity
Voltage AC220V ± 5%, Frequency: 50Hz ± 2%
Communication USB data exchange technology
Conclusion
 
The QR-9000S High-Frequency Infrared Carbon and Sulfur Analyzer is a vital tool for testing raw materials used in rare earth smelting. By accurately measuring the carbon and sulfur content, it helps ensure that rare earth materials meet stringent purity standards, enhancing the efficiency and quality of the smelting process. Its fast analysis time, high precision, and cost-effective design make it the ideal solution for rare earth manufacturers seeking to maintain the highest quality control standards.