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Caustic Analyzer

  • The Caustic Analyzer (Wave-CS001) uses highly stable sensing elements, paired with SAF 2205 and 316L composite probes, to ensure long-term structural stability in high-temperature caustic environments.The response time of the sensor is controlled within 1.0 second, in accordance with the recommended process requirements of a flow rate of 1.8-2.7m/s, to ensure the immediacy and representativeness of the sampling data.
  • Faced with high temperature conditions ranging from 95 ℃ to 105 ℃ and an operating pressure of 2.5MPa, the analyzer can withstand temperatures of -40 ℃ to 160 ℃ throughout the entire process, and the pressure level meets the 25KG standard.All liquid receiving components have passed corrosion resistance tests to prevent signal distortion caused by caustic corrosion. Shielded cables are used to connect sensors and transmitters, reducing the impact of electromagnetic interference. The 4-20mA analog output signal is stably transmitted to the DCS system, ensuring that remote data transmission is not distorted.
  • The system is equipped with an intelligent diagnostic module that can monitor the surface scaling status of the probe in real time. Throughout the entire operating cycle, the data trend is continuously traceable, and the SQL database records each reading. It supports historical review and alarm tracing, ensuring long-term reliability of the measurement.
  • Sonic Density Meter (Trason Series)
  • The WavesMetric Clamp-on Density Meter is a product that utilizes the principle of acoustic impedance to measure density. It features a "non-nuclear" acoustic ceramic probe, where the acoustic signal interacts with the slurry contact surface, undergoing energy penetration and reflection. When the density of the slurry changes, the acoustic impedance value also changes. Through software analysis of the ultrasonic impedance signal, the slurry density value is calculated. The new Trason Sonic Density Meter probe is made of ceramic material. Its measuring surface is flush with the inner wall of the pipeline, without penetrating into the interior of the pipeline. This minimizes the impact of scouring and wear from the slurry, extending its service life. Additionally, it poses no risk of blocking the pipeline, making it safer and more reliable in industrial applications. The sensor probe is installed in a clamp-on flange and mounted on the medium pipeline. The sensor probe is connected to the transmitter via a communication cable, and the transmitter is equipped with an HMI touch screen for ease of operation.
  • • Non-nuclear technology, no radiation, no need to obtain any licenses • Measurement accuracy is not affected by the diameter of the pipeline • The probe is made of ceramic material, which is resistant to wear, corrosion, and scouring • Easy to install, without the need for cutting or welding pipes • High precision and high repeatability • Applicable to various types of slurries • Human-machine interface, easy to operate • Supports multiple optional communication methods • Support remote diagnosis function • Support data recording function



Advantages

• Accuracy ±3g/L • Can be installed and used on large-diameter pipelines • It has been calibrated before leaving the factory, making on-site comparison simple and eliminating the need for repeated calibration • No need for specialized personnel for debugging • Lightweight • The use of UHPE material for the mating wafer effectively prevents abrasion from the slurry • No special installation or usage license required • No potential safety hazards

Features

Technical Parameters

This is a contact Sonar Sludge Level Monitoring System, utilizing an immersive sonar probe that directly contacts the slurry/sludge medium. It accurately measures the sludge-clear water interface height in solid-liquid separation scenarios such as thickeners, sedimentation tanks, and tailings ponds, providing reliable data for process control.

Sonar Sludge Level Monitoring System

Features


Strong Anti-Interference Ability: Unaffected by medium color, turbidity, bubbles, or light High Precision & Stability: Sonar echo algorithm adapts to interface fluctuations under complex working conditions All-Digital Output: Supports multiple protocols for easy integration with DCS/PLC systems Corrosion-Resistant Design: Probe and housing materials are suitable for acidic, alkaline, and highly mineralized media Convenient Installation: Bracket-type installation, no need for production shutdown, quick deployment

High-Precision Alumina Analyzers

Discover innovative measurement solutions with our advanced technology analyzers.
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WavesMetric's alumina analyzers have significantly streamlined our testing processes, providing unmatched accuracy and reliability in various applications. Their innovative technology has transformed how we approach measurement, ensuring consistent results every time.

Precision Measurement Solutions

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01294 313222
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