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Online Codcr Water Quality Monitor Chemical Oxygen Demand Analyzer 30min Period

    Buy cheap Online Codcr Water Quality Monitor Chemical Oxygen Demand Analyzer 30min Period from wholesalers
     
    Buy cheap Online Codcr Water Quality Monitor Chemical Oxygen Demand Analyzer 30min Period from wholesalers
    • Buy cheap Online Codcr Water Quality Monitor Chemical Oxygen Demand Analyzer 30min Period from wholesalers

    Online Codcr Water Quality Monitor Chemical Oxygen Demand Analyzer 30min Period

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    Certification : IOS9001, CE
    Model Number : AG-C07
    Brand Name : JUGE
    Price : USD2000-7000
    Delivery Time : 5-8 working days
    Payment Terms : Online order,T/T
    Supply Ability : 100 Unit/Week
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    Online Codcr Water Quality Monitor Chemical Oxygen Demand Analyzer 30min Period

    Online Codcr Water Quality Monitor Chemical Oxygen Demand Analyzer
    >>Application

    This method is suitable for wastewater with a chemical oxygen demand (COD) ranging from 10 to 5000 mg/L and chloride ion (Cl-) concentrations below 2 g/L. Based on actual user requirements, it can also be applied to wastewater with chloride ion (Cl-) concentrations below 20 g/L.



    >>Technical parameters

    1. Method Basis: National Standard HJ 828-2017 "Water Quality-Determination of Chemical Oxygen Demand-Potassium Dichromate Method".
    2. Measurement Range: 10-5000 mg/L.
    3. Indication Error: ≤±8% for concentrations <100 mg/L; ≤±5% for concentrations ≥100 mg/L.
    4. Repeatability: ≤5%.
    5. Measurement Cycle: Minimum digestion time of 30 minutes; adjustable between 10-30 minutes based on actual water samples.
    6. Sampling Cycle: Interval measurement (adjustable from 20-9999 minutes) or fixed-point measurement modes.
    7. Calibration/Verification Cycle: Adjustable at any interval (1-99 days) and time.
    8. Maintenance Cycle: ≥168 hours; each maintenance takes ~1 hour.
    9. Reagent Consumption: <0.5 yuan/sample.
    10. Output: RS-232, 4-20 mA, RS-485.
    11. Environmental Requirements: Temperature-controlled indoor environment (5-40°C recommended); humidity 45-85%.
    12. Power Supply: AC220±10% V, 50±1% Hz, 5A.
    13. Dimensions: H1500 × W500 × D450 (mm).
    14. Additional Features:

    • Data retention during alarm or power failure;
    • Touchscreen display and command input;
    • Automatic residual reactant discharge and state recovery after power restoration or abnormal reset.

    >>Feature

    Unique Design: This product features a distinctive design that ensures lower failure rates, reduced maintenance requirements, minimal reagent consumption, and higher cost-effectiveness compared to similar products.

    1. Selector Valve Assembly:

      • Enables flexible reagent sampling timing and diverse channel configurations.
      • Minimizes dead volume for easy maintenance and extended service life.
    2. Micro-Dosing Unit:

      • Utilizes a visual photoelectric system for precise reagent measurement, eliminating quantitative errors caused by peristaltic pump tube wear.
      • Achieves accurate micro-dosing with 0.7 mL per dose, significantly reducing reagent usage.
    3. Sample Introduction Unit:

      • Employs a peristaltic pump with negative pressure suction, creating an air buffer zone between reagents and the pump tube to prevent corrosion.
      • Simplifies and enhances flexibility in reagent mixing.
    4. Sealed Digestion Unit:

      • Operates under high-temperature and high-pressure conditions to accelerate reactions.
      • Eliminates corrosion risks from volatile gases in open systems.
    5. Reagent Tubing:

      • Uses imported modified PTFE (polytetrafluoroethylene) transparent tubing with an inner diameter >1.5 mm to minimize clogging by particulate matter in water samples.

    >>Analytical Principle
    The mixture of the water sample, potassium dichromate digestion solution, silver sulfate solution (added as a catalyst to enhance oxidation of linear aliphatic compounds), and concentrated sulfuric acid undergoes high-temperature digestion. During this process, the dichromate ions oxidize organic matter in the solution, causing a visible color change. The analyzer detects this colorimetric shift and converts it into a corresponding COD (Chemical Oxygen Demand) value for output.
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