Description
- Reagent-Free Operation: Eliminates the need for costly and potentially hazardous reagents, reducing operational costs and simplifying maintenance.
- UV Oxidation: Employs UV oxidation to convert organic carbon into carbon dioxide.
- Differential Conductivity Detection: Measures the change in conductivity of the water sample before and after UV oxidation to determine the TOC concentration.
- High Sensitivity: Capable of measuring very low levels of TOC, making it suitable for critical applications such as pharmaceutical water and semiconductor manufacturing.
- Fast Response Time: Provides rapid and continuous TOC measurements, enabling real-time monitoring and process control.
- Compact and Robust Design: Compact and rugged design for easy installation and operation in various environments.
- Compliance with Standards: Meets the requirements of various international standards, including USP and EP 2.2.44.
Applications:
- Pharmaceutical Water Systems: Monitoring the quality of purified water used in pharmaceutical manufacturing processes.
- Semiconductor Manufacturing: Ensuring the purity of water used in semiconductor fabrication.
- Power Generation: Monitoring water quality in power plants.
- Biotechnology: Monitoring water quality in biotechnology applications.
Benefits:
- Reduced Operating Costs: Reagent-free operation eliminates the need for costly reagents, reducing operating expenses.
- Improved Efficiency: Fast response times and continuous monitoring enable real-time process control and optimization.
- Enhanced Reliability: Eliminates the potential for reagent errors and simplifies maintenance.
- Improved Data Quality: Provides accurate and reliable TOC measurements for critical applications.
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