Enviro Solutions Technology Co.,Ltd

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NDIR Sensor Process Gas Analyser O2 CO CO2 H2 CH4 Gas Analyzer15s Response Time

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Enviro Solutions Technology Co.,Ltd
City:wuhan
Country/Region:china
Contact Person:MissYe
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NDIR Sensor Process Gas Analyser O2 CO CO2 H2 CH4 Gas Analyzer15s Response Time

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Brand Name :ESEGAS
Model Number :ESE-IR-600
Delivery Time :7-10 working days
Product Name :Process gas analyser
Measurement Gas :CH4/CO/CO2/H2/O2
Accuracy :0.01%
Measurement Range :0-100% or customized
Operating Temperature :-20 to 60℃
Response Time :15s
Application :Industrial
Technology :NDIR sensor
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Process CH4 Analyzers NDIR sensor O2 CO CO2 H2 methane gas analyser Hydrogen gas analyser

Process CH4 analyzers are instruments specifically designed to measure the concentration of methane (CH4) gas in industrial processes. Methane is a primary component of natural gas and is widely used in various applications, including energy generation, heating, and industrial processes. Monitoring CH4 levels is important for process control, safety, and environmental compliance.


Here are some key points about process CH4 analyzers:


1. Measurement Principle: Process CH4 analyzers utilize various detection technologies to measure methane concentrations. Common methods include infrared (IR) absorption spectroscopy and catalytic combustion. IR analyzers rely on the absorption of infrared light by methane molecules, while catalytic combustion analyzers measure the heat of combustion of methane in a catalytic sensor. Both methods provide accurate and real-time measurements.


2. Features: Process CH4 analyzers are designed for continuous monitoring in industrial settings and offer features suitable for process control. These may include:


- Robust Construction: Process analyzers are typically built to withstand harsh industrial environments, with durable housings and components.
- Remote Monitoring and Control: Some analyzers have the capability to be integrated into a control system or network, allowing for remote monitoring and control of CH4 levels.
- Data Logging and Reporting: Process analyzers may have built-in data logging capabilities to store measurement data over time. They can also generate reports and provide data for compliance purposes.
- Alarm Systems: Process analyzers often feature configurable alarms that can be set to trigger when CH4 concentrations exceed predefined thresholds, alerting operators to potential safety or process issues.
- Calibration and Maintenance: Regular calibration and maintenance are necessary to ensure accurate and reliable measurements. The frequency of calibration and maintenance depends on the specific analyzer and manufacturer's recommendations.


3. Measurement Range and Accuracy: Process CH4 analyzers have specific measurement ranges and accuracies tailored for industrial applications. The measurement range can vary depending on the model and can cover a wide range of CH4 concentrations, from low parts-per-million (ppm) levels up to high percentages by volume. The accuracy of the measurements is specified by the manufacturer and can vary between models.


4. Safety Considerations: When working with methane and process CH4 analyzers, it is important to follow proper safety protocols. This includes ensuring adequate ventilation, implementing gas detection systems, and incorporating appropriate gas leak detection and emergency shutdown systems in the industrial process.


It's important to note that specific process CH4 analyzer models may have additional features and specifications, so it is recommended to consult the manufacturer's documentation or user manual for detailed information on a particular device.

Process gas analyzer is an important tool in process safety and quality control. It helps to monitor and optimize the chemical composition of process gases. The gas analyzer market is segmented by type, technology, application, and geography.

Our gas analyzers high-stability infrared detector and TDL technology for the simultaneous measurement of CO, CO2, and CH4. These gases are suitable for challenging applications such as syngas and gasification atmospheres. In addition, analyzers may use a compensated thermal conductivity cell for H2. Electrochemical O2 sensors may also measure percent levels of oxygen in the sample gas stream.

INFRARED NDIR DETECTOR
GAS Lowest Range Highest Range LR resolution HR resolution Accuracy FS
CO 0-5% 0-100% 0,001 % 0,01 % ≤ ±2%
CO2 0-5% 0-100% 0,001 % 0,01 % ≤ ±2%
CH4 0-5% 0-100% 0,001 % 0,01 % ≤ ±2%
CnHm 0-10% 0,001 % 0,01 % ≤ ±2%
THERMAL CONDUCTIVITY DETECTOR (TCD)
H2 0-20% 0-100% 0,01% 0,01% ≤ ±3%
ELECTROCHEMICAL DETECTOR (ECD)
O2 0-25% 0,01 % 0,01 % ≤ ±3%
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