Multi-Parameter Drinking Water Analyzer
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pH: The pH value is determined by collecting the potential difference between a reference electrode and a glass hydrogen ion-selective electrode, along with the thermistor value. The temperature is obtained from the thermistor, and the potential is converted to a pH value using the Nernst equation: E = E₀ − 2.303 × t ×…

Scientific China
Store| Manufacturer | FPI |
|---|---|
| Product Category | Physicochemical Parameter Sensor |
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Description
Multi-Parameter Drinking Water Analyzer
Product overview
pH:
The pH value is determined by collecting the potential difference between a reference electrode and a glass hydrogen ion-selective electrode, along with the thermistor value. The temperature is obtained from the thermistor, and the potential is converted to a pH value using the Nernst equation:
E = E₀ − 2.303 × t × log(C_H⁺)
Residual Chlorine:
A constant potential is applied between the measuring and reference electrodes. Two platinum electrodes (working and counter electrodes) form a micro-current measurement system with the reference electrode. Hypochlorous acid undergoes a redox reaction on the surface of the working electrode, and the resulting current is measured. The residual chlorine concentration is then calculated based on the correlation between current intensity and chlorine concentration. Simultaneously, temperature and pH of the water are measured and used for signal compensation to obtain an accurate residual chlorine concentration.
Low Turbidity:
A laser beam is directed vertically from air into the water, where it is scattered by suspended particles. A photodetector positioned at a 90-degree angle to the incident light captures the scattered light. The turbidity analyzer converts the intensity of the scattered light into a turbidity value based on a calibration curve that correlates light intensity with turbidity concentration.
Key features
- Optical and electrochemical monitoring technologies – reagent-free and environmentally friendly
- Stable flow design in the detection cell ensures measurement accuracy is unaffected by external hydraulic fluctuations
- Inlet flow monitoring with automatic alarms for abnormal sampling and automatic recognition of invalid data
- Supports multiple measurement modes: fixed-point, periodic, continuous, and remote control
- Miniaturized design with small footprint and low water consumption, reducing daily operational costs
- Built-in RS485 communication interface, adaptive to controllers for easy system integration
Applications
- Tap water
- Secondary water supply
- Swimming pools
- Membrane-filtered water
Technical and application details
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Ordering and configuration
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