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Oil-in-Water Analyzer, Online Monitoring

Based on the UV absorption method, this instrument determines petroleum content in water through n-hexane extraction and photometric detection. It is suitable for environmental water quality monitoring, industrial wastewater analysis (e.g., electroplating/chemical industries), and rapid detection of petroleum hydrocarbons.

Features:
1. High Precision and Stability: Repeatability error ≤5%, Zero drift: ±5%. Ensures reliable and consistent data accuracy under varying conditions.
2. Fully Automated Workflow​: Integrates extraction, separation, and detection into a seamless process. Measurement completion within ≤35 minutes, minimizing manual intervention.
3. Strict Reagent Management​: Provides dedicated reagent configuration guidelines. Maintains detection consistency (e.g., extractant transmittance requirement >90%).
Availability:
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  • LFS-2002(Oil)

1. High-Precision Gas Separation Detection Technology  

Utilizing a closed-loop gas purge system, the acidified hydrogen sulfide gas is efficiently separated and directed into the absorption solution, avoiding volatilization loss and cross-contamination common in traditional methods. The optical system is equipped with a 395nm narrow-band interference filter and temperature-compensated light path, ensuring stable absorbance measurement. The deviation compared to actual water samples is ≤10%, complying with the GB/T16489-2008 standard requirements.


2. Fully Automated Reagent Management and Calibration  

Integrated multi-channel peristaltic pumps and precision valve assemblies enable automatic reagent addition, pipeline cleaning, and standard sample verification. Zero/span calibration is performed every 24 hours, with real-time reagent level monitoring and early warnings. Remote adjustment of injection volumes (0.5-5mL adjustable) is supported, reducing manual intervention frequency by over 70%.


3. Industrial-Grade Corrosion-Resistant Flow Path Design  

Flow path components in contact with samples are made of corrosion-resistant materials such as PTFE and fluororubber. Key valves feature self-cleaning functionality. Reagents are stored in separate compartments, and standard solutions require a 50% stabilizer additive to extend shelf life. This design adapts to high-humidity, corrosive gas environments in wastewater treatment plants, achieving a mean time between failures (MTBF) of ≥1,440 hours.


4. Multi-Layer Safety Protection Mechanisms  

Leak detection and emergency shutdown functions are equipped for highly corrosive reagents like nitric acid and phosphoric acid. The operation interface clearly displays personal protection requirements. Upon detecting abnormal pipeline pressure or reagent depletion, the system automatically enters a safe state and alerts maintenance personnel via audible and visual alarms.


1.Measuring Range: 0-20mg/L (Expandable)

2.Accuracy: ±10%

3.Repeatability: ≤5%

4.Detection Limit: ≤0.02mg/L

5. Analysis Time:≤30 minutes

6. Zero Drift: ±5%

7. Data Output: 4-20mA/RS-485

1.Real-time sulfide monitoring in electroplating/chemical wastewater discharge outlets

2.Optimization of biological desulfurization processes in municipal WWTPs

3.Tracing sulfide pollution sources in rivers/lakes with continuous data logging

4.Early warning for sulfide anomalies in drinking water sources


Frequent Questions
  • 1. How to mitigate interference from high-turbidity samples?
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    Built-in 0.45μm filter with optional centrifugal pre-treatment, plus dual-wavelength compensation ensures ≤5% error at turbidity ≤100NTU.
  • 2. How to determine reagent replacement intervals?
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    AI predicts consumption based on pump runtime and level sensors, sending alerts 7 days in advance (200mL acid/month under 6 tests/day).
  • 3. Does it support third-party platform integration?
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    It is compatible with Modbus RTU/TCP and HJ212-2017 protocols, with API for private cloud platform integration.
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