The multi-parameter water quality monitor is primarily used for monitoring and early warning in the control of various surface waters, wastewater, drinking water, and treatment processes for wastewater and water supply. The main application fields and scope include: early warning and monitoring of drinking water contamination due to leakage accidents, environmental pollution, or human sabotage; intelligent guidance for key process controls such as aeration volume and detention time for multiple units in treatment facilities across various industrial sectors and domestic wastewater; routine monitoring of critical sections of surface water bodies such as rivers, lakes, and reservoirs; and water quality testing in pipelines and groundwater.
The multi-parameter water quality monitor operates based on the principle of ultraviolet-visible spectroscopy. The substances in the medium can be measured as they reduce the intensity of the light beam passing through it. The light beam is emitted from a light source, passes through the medium, and then its intensity within a specific wavelength range is measured by a detector. Each molecule dissolved in the medium absorbs light at specific wavelengths. The concentration of substances in the medium of a water quality multi-parameter detector is determined by the sample's absorbance, with higher concentrations leading to more significant light beam attenuation.
Absorbance or absorbency represents the ratio of the intensities of two light beams: one measures the intensity of the beam after it passes through a medium, and the other measures the intensity after it passes through a reference medium (deionized water). As the concentration increases, the absorption of the beam increases linearly.
Product Features of Multi-Parameter Water Quality Monitor:
1. Multi-parameter: Offers real-time monitoring data with up to 8 parameters per monitoring point, including residual chlorine, total chlorine, conductivity, turbidity, pH, ORP, and temperature and pressure.
2. Analytical Technology: Utilizing state-of-the-art colorimetric techniques to analyze residual chlorine and total chlorine in water samples.
3. New Smart Touchscreen Interface: The SmartONE touch-based human-machine interface allows users to easily access all menu options and features.
4. Self-sustaining: Automatic calibration, self-cleaning, and bubble elimination mechanisms ensure provision during each online measurement.
5. Operational Efficiency: With its unique cuvette, self-cleaning capabilities, and remote maintenance, SmartONE requires reagent replacement only every two months, boasting an ultra-low reagent consumption rate.
6. Online and Remote Access: View parameter analysis and calibrate and identify quality issues from mobile devices or web views, anytime, anywhere.





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