About Zirconia Based Oxygen Analyzer
Professionals can use Zirconia Based Oxygen Analyzer in the facility for measuring flue gas oxygen. This reliable measurement instrument has long operational life. It is a robust and rugged measurement instrument is ready to use once you receive it. In comparison to other measurement instruments, this instrument is known to improve both, performance & operation cost. With Safety-Enhanced and Low-Maintenance Design, this Zirconia Based Oxygen Analyzer makes optimum use of fuel and gives fast response and accurate results. It is an IIC, IP 66, T6, Zone 1&2, CIMFR approved instrument.
Reliable long life flue gas oxygen measurement
- Rugged, Robust & Ready to use solution
- Improves performance & operation cost
- Used with any fuel, high accuracy, fast response
- Efficient fuel consumption
- Safety-Enhanced and Low-Maintenance Design
- Ex-d Group: IIC, IP 66, T6, Zone 1&2, CIMFR appv
Specification of Zirconia Based Oxygen Analyzer:
- Sensor principle : Zirconia
- Measuring Range : 0 to 25%V/V & optional 0 to 100%V/V
- Response time : < 15 sec for T90
- Probe length : Up to 435 mm or longer (as per request)
- Output : 4-20 mA, RS 485 MODBUS RTU
- Operating Temp. : Up to 400 C ( Optional 700 C with PT TUBE )
- Probe Fixing : Flange 6, Thickness 15mm
- Cable Gland : NPT
- Housing : Ex-d Group: IIC, IP 66, T6, Zone 1&2, CIMFR appd
Superior Performance in High-Temperature ApplicationsWith a robust SS 316 body and an in-situ probe rated for Zone 1, IIC classification, the Zirconia Based Oxygen Analyzer delivers reliable oxygen measurement in harsh, high-temperature process gas conditions. Its 0.5% accuracy ensures precise monitoring, enhancing safety and process efficiency for demanding industrial environments.
Easy Installation and Versatile Connection OptionsFeaturing a standard 3/4" NPT connection and a 6-inch flange, this analyzer integrates seamlessly with existing process setups. Its variable probe length (435 mm) allows customization for different installation requirements, making it suitable for a wide range of industrial process control applications.
Durable Design and User-Friendly OperationConstructed from corrosion-resistant SS 316 with an IP66 enclosure, the analyzer withstands challenging environments. The in-situ operation method simplifies usage, reducing maintenance needs while ensuring continuous and accurate oxygen monitoring during critical industrial processes.
FAQ's of Zirconia Based Oxygen Analyzer:
Q: How does the Zirconia Based Oxygen Analyzer function in high-temperature process gas environments?
A: This analyzer employs a zirconia sensor to monitor oxygen levels directly within high-temperature process gases. Its in-situ design ensures real-time, continuous measurement for effective process control.
Q: What are the main benefits of using this oxygen analyzer in industrial applications?
A: The analyzer provides highly accurate (0.5%) and reliable oxygen readings, optimizing combustion, improving process efficiency, and enhancing safety in high-temperature environments such as furnaces and reactors.
Q: When should I use this analyzer for my process control needs?
A: It's ideal for applications where precise oxygen monitoring is crucial-especially in high-temperature process gas streams such as those found in chemical, petrochemical, or metallurgical industries.
Q: Where can this Zirconia Based Oxygen Analyzer be installed?
A: Designed to fit with a 3/4" NPT connection and a 6-inch flange, it can be installed directly into process pipelines or reaction vessels, particularly in hazardous Zone 1, IIC classified areas.
Q: What is the recommended process for installing and operating the analyzer?
A: Begin by securing the analyzer using the provided NPT or flange connection. Ensure electrical wiring (230 V AC, 50 Hz) is correctly configured, then initiate in-situ measurements following the manufacturer's guidelines for optimal performance.
Q: How does the material construction benefit the analyzer's performance?
A: The use of SS 316 stainless steel provides superior resistance to corrosion and mechanical stress, ensuring longevity and reliability in demanding industrial settings.