EziLab X-ray Fluorescence Sulfur in Oil Analyzer EZL-XRF101 provides rapid sulfur measurement for petroleum products, petrochemical quality control, fuel compliance analysis, and laboratory research applications. Concentration range spans 5 ppm to 50,000 ppm with stable XRF sulfur analyzer accuracy, while testing time ranges between 30 and 130 seconds for efficient routine workflows. Compact dimensions allow easy placement in laboratory environments, and USB output enables simple data export across standard reporting systems. The analyzer operates across wide temperature and humidity conditions without additional environmental controls. EziLab's Lab Equipment and petroleum testing equipments list the full XRF sulfur analyzer and petroleum sulfur measurement selection for refinery and quality control use.



Quantity:
$27412
Measurement Range 5ppm to 50,000ppm
Sample Cups 50
Working Temperature -20˚C to +50˚C
Humidity Less than equal to 90 %
Testing time 30 to 130 seconds
Detection Limit 20 ppm
External Output USB2.0
Power Supply 110-120V/50 Hz
Dimensions (L× H ×D) 212 × 258 × 258mm
Weight 4.5kg
  • Quick testing operation

  • Advanced detection system

  • Multi-sample compatibility

  • Durable system design

  • Flexible sample handling

Sample Cup

50 pieces

Sample Cup / Film Assembly Tools

1 Set

X-Ray Film

1 Bag

  • X-ray Fluorescence Sulfur in Oil Analyzer EZL-XRF101 offers rapid and precise sulfur measurement in petroleum products, coal chemicals, and related materials supporting continuous quality control in petrochemical labs.

Frequently Asked Questions

The X-ray Fluorescence Sulfur in Oil Analyzer EZL-XRF101 ensures accurate and repeatable results, making it highly suitable for daily use in petroleum labs. The instrument minimizes sample preparation, allowing laboratories to save time while maintaining precision. It provides quick sulfur content readings that help labs monitor product quality and meet regulatory compliance. The analyzer’s design is user-friendly, ensuring even routine technicians can operate it effectively without specialized training.

Our X-ray Fluorescence Sulfur in Oil Analyzer EZL-XRF101 is built to deliver consistent measurements across a wide range of petroleum-based samples. The system allows operators to set different testing durations, balancing speed and accuracy as required by industrial workflows. Its robust performance ensures laboratories can rely on the results for quality certifications and compliance checks. This makes it a dependable tool for continuous quality monitoring in refineries, chemical plants, and fuel distribution facilities.

The X-ray Fluorescence Sulfur in Oil Analyzer EZL-XRF101 incorporates shielding and built-in safety mechanisms to protect users from unnecessary exposure. The instrument automatically controls its operating state, ensuring that electrical and analytical components remain within safe parameters. This provides peace of mind for laboratories that need to run continuous or unattended operations. Safety features are designed to meet laboratory standards, allowing staff to focus on analysis without added risks.

The X-ray Fluorescence Sulfur in Oil Analyzer EZL-XRF101 offers flexibility by accommodating petroleum products, coal chemicals, and related samples. Laboratories can adjust test times depending on whether rapid screening or high-accuracy results are required. This adaptability makes it suitable for both research applications and production monitoring. Its versatility ensures laboratories do not need separate instruments for different testing scenarios, saving cost and space.

Our X-ray Fluorescence Sulfur in Oil Analyzer EZL-XRF101 is designed to withstand frequent operation without performance loss. The system’s durability and stability make it suitable for labs that run multiple tests daily, such as refineries or large research centers. Automated functions reduce operator workload and enable consistent results over extended periods. Its reliability ensures that even under high demand, laboratories can depend on uninterrupted testing.