Wet Method Total Organic Carbon TOC Analyzer TOC-U200
Applications
Drinking water, surface water, rivers and lakes, tap water, industrial wastewater, domestic wastewater, chemical wastewater, pharmaceutical plant water, and water used in scientific research and experiments.
Main Features
- Wet digestion method based on the principle of ultraviolet persulfate oxidation and non-dispersive infrared (NDIR) detection.
- TOC concentrations in water samples ranging from 0.001 mg/L - 100.0 g/L.
- User-Friendly 12" touchscreen LCD with visible detection curves for easy operation.
- High-reflectivity gold-plated chamber
- Highly focused NDIR infrared light source
- Highly sensitive infrared sensor
- Multiple Detection Modes: TC, TIC, TOC, NPOC can be measured within the same reactor.
- Leading Electromagnetic Metering Pump
- Three-Channel Electronic Cold Trap
- Automatic Cutoff Technology for Furnace Overheating
- Real-Time Monitoring of Temperature, Pressure, and Flow
- Optional Online Module for real-time monitoring and Auto-sampler for labor and time savings
- Convenient Data Storage, Retrieval, and Password Protection.
- Free Installation and Training,
- Cost-Effective Consumable Supplies ensure a worry-free purchase
- Lifetime free after-sales support
- Product standard: EP, USP, HJ 501-2009 national environmental protection standard, and JJG 821-2005 metrological verification regulations.
Specifications
| Digestion Method |
UV persulfate oxidation (Wet method) |
| Detection Range |
0.001-100.0mg/L |
| Accuracy |
±5% |
| Repeatability |
≤3% |
| Measurement Modes |
TC,IC,TOC,NPOC |
| Maximum Salt Tolerance |
100g/L |
| Analysis Time |
3~8min |
| Detector |
NDIR (Non-Dispersive Infrared Detection) |
| Operation Mode |
Main Unit + PC |
| Display |
12" LCD with touch screen |
| Dimensions(LxWxH,mm) |
420x365x380 |
| Weight (Kg) |
21 |
| Power Supply |
AC220V±10% / 50Hz |
About Wet digestion method based on the principle of ultraviolet persulfate oxidation and non-dispersive infrared (NDIR) detection.
In this process, water samples are fully oxidized and decomposed into CO2 through ultraviolet persulfate oxidation. CO2, under the action of a carrier gas, is dried, purified, and then enters the non-dispersive infrared detector (NDIR), yielding the total carbon concentration in the water sample.