TOC Analyzer EZL-TOC102 offers a wide measurement range of 0 to 10,000 mg/L, making it ideal for analyzing highly contaminated wastewater. It uses gas flow control technology to deliver precise and consistent measurement results. Its automatic leakage detection system ensures safer operation and eliminates errors to enhance device protection and accuracy. Equipped with an optional autosampler to enable unattended, high-throughput sample analysis. Our TOC Analyzer EZL-TOC102 is widely used in laboratories, pharmaceutical, and environmental monitoring. 

Measurement Range 0 to 10000 mg / L
Detection Limit 5 µg / L
Digestion Mode Wet Chemical Oxidation by UV
Detector NDIR
Parameters TOC, TIC, TOC, NPOC
Gas Requirement Nitrogen, ≥ 99.995 %
Application Liquid Sample
Repeatability 3 %
Maximum Salinity 85 g / L
Power AC 110 / 220 V, 50 / 60 Hz, 100 W
Operation Mode PC Control
  • High-temperature catalytic combustion   
  • Advanced PC Software  
  • Fast analysis capability 
  • Integrated auto sampling  
  • Compact system design 

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AS-W20 Autosampler

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AS-S200 Autosampler
  • TOC Analyzer EZL-TOC102 features precise gas flow control technology, ensuring optimal combustion efficiency. It is widely used in pharmaceutical and environmental monitoring to detect and control organic pollution. 

Frequently Asked Questions

The TOC Analyzer EZL-TOC102 measures the Total Organic Carbon (TOC) content in liquid samples. It helps determine the level of organic contamination in water used in various industries. This includes pharmaceutical-grade water, wastewater, environmental samples, and process water. With advanced NDIR detection and gas flow control, it delivers high-precision results, ensuring compliance with industry standards and regulatory guidelines such as those set by the U.S. FDA and environmental agencies.

Ezilab’s TOC Analyzer EZL-TOC102 uses a unique NDIR detector, providing high sensitivity and stability for reliable readings. It features automatic leakage detection to prevent operator errors and enhance performance. Additionally, it employs precise gas flow control to ensure consistent combustion and oxidation processes, minimizing variability. The modular system design and advanced software allow easy calibration, monitoring, and audit trails, supporting 21 CFR Part 11 compliance and ensuring data integrity across all operations.

Our TOC Analyzer EZL-TOC102 is fully suited for use in regulated industries such as pharmaceuticals and biotechnology. It offers an optional CFR-compliant software module that supports 21 CFR Part 11 requirements, including electronic signatures, secure data logging, and audit trails. These features ensure that electronic records are traceable, tamper-proof, and compliant with FDA regulations, making the analyzer an ideal choice for quality control and validation processes in GMP-compliant laboratories and manufacturing environments.

Ezilab’s TOC Analyzer EZL-TOC102 can analyze a wide range of liquid samples for organic carbon content. This includes ultrapure water, surface water, groundwater, wastewater, process water, and pharmaceutical water for injection (WFI). It is also applicable in the food, beverage, and petrochemical industries for monitoring cleaning processes, effluent discharge, and ingredient purity. Its high versatility makes it a valuable tool in both routine quality control and advanced research applications requiring organic contamination analysis.

The TOC Analyzer EZL-TOC102 features a modular design for easy operation and maintenance, reducing downtime and simplifying training. It includes a user-friendly PC software interface with clear navigation and reporting tools. The optional autosampler boosts productivity by enabling automated, unattended sample analysis. Real-time monitoring, automatic leak detection, and a responsive user interface help users achieve fast, accurate results with minimal manual intervention making it suitable for both skilled technicians and routine lab users.

Our TOC Analyzer EZL-TOC102 uses an efficient UV oxidation method that eliminates the need for costly reagents, carrier gases, or catalysts, significantly lowering consumable expenses. Its precise gas flow control reduces waste, while the optional autosampler minimizes labor costs by allowing unattended operation. The system’s robust NDIR detector ensures long-term stability, reducing calibration frequency and maintenance downtime. Together, these features provide accurate, reliable TOC measurements while keeping operational and maintenance costs low.