Austrian Madu infrared flue gas analyzer officially launched

PHOTON portable infrared flue gas analyzer

Infrared method NDIR analysis: CO, CO2, CH4, SO2, NO, NO2, N2O

The infrared flue gas analyzer PHOTNM uses the latest high-tech technology, and its outstanding performance is currently the best in the market.

The high-power dry cooler PGD-100 ensures the harsh conditions required by the infrared method to measure the accuracy and stability of the entire process. Of course, the instrument must also be equipped with a gas heating line to ensure that the sampled gas is not condensed to reduce the loss of the measured gas. Its modular structure can be constructed according to the specific needs of users. In addition, each sensor in this volume system can be set and adjusted according to customer needs. This type of analytical instrument can be used for any process control application. In addition to infrared sensors, the analyzer can be equipped with electrochemical or bias sensors up to 9 measuring components to measure O2, H2S, NO2, H2, etc.

basic configuration

Gas concentration measurement

The following gases can use non-dispersive infrared light technology (NDIR):

CO, CO2, CH4, NO, SO2, NO2, N2O

Oxygen (O2) measurement, optional electrochemical, paramagnetic or bias method

Electrochemical measurement: H2, H2S, please contact us for other information.

Measurement of other parameters

Flue gas temperature, support K, J, S, E thermocouple

Pressure, partial pressure measurement, resolution up to 0.1 Pa

Atmospheric pressure measurement with a resolution of 0.1hPa

Calculation

Calculate CO2 concentration (measure CO2 directly without configuration)

Calculate all relevant combustion parameters

Absolute mass concentration and relative mass concentration of all measured components

Absolute mass concentration and relative volume concentration of all measured components

Measurement data processing and display

Memory can hold 1M group data

Cyclic measurement (zero calibration-measurement-wait)

Periodic measurement, repetition period: 24 hours

Multi-point measurement

Display all measured and calculated data, average value, average time interval can be: 2, 10, 20, 30, 60, 120, and 180 seconds

Single or continuous measurement data storage, a group of data can include all measured and calculated data

Computer software that can handle reading and online communication

Software features

Automatic zero point calibration when starting up

All parameters can be set freely

With 10 built-in fuel parameters

Can edit fuel parameters by yourself

The function of the instrument is continuously and automatically monitored. In addition to the audible alarm, detailed related information can be displayed under the "Control List"

Complete compensation for gas sensor interaction and temperature drift

With environmental pressure compensation for infrared sensors

Hardware features

Built-in computer control based on WinCE operating system

Continuously store reading data logger. Storage data can be transferred to computer via USB

Memory card for all instrument usage and parameter settings

Compilable features allow simple program writing by a computer (PC)

Built-in clock / date, use independent battery.

Power supply: 110 ... 230 VAC, 50-60Hz

Display: color liquid crystal (LCD) display, 640 x 480 pixels

Touch screen operation menu

External USB printer-optional configuration

Computer (PC) interface RS232C, used for communication and data transmission with the dryer

Working parameter

Dimensions (W x H x D): 500 x 410 x 180 mm

Weight specification: about 9.5 kg

Display 640 x 480 pixels

Power supply: 110 / 230VAC50 / 60Hz

Diaphragm sampling pump

Operating temperature: 10 ° C to 50 ° C

Storage temperature: -20 ° C to +55 ° C

Measurement technical parameter table

parameter
method
Range
Resolution
Accuracy
Minimum detection value
Response time (T90)
Infrared sensor
CO-carbon monoxide
SO2-sulfur dioxide,
NO-nitric oxide,
NO2-nitrogen dioxide
N2O-nitrous oxide
Infrared principle
0..2000ppm
1 ppm
± 3ppm or 3% of reading
1 ppm
45 seconds
Infrared principle
0..100%
0.1%
± 0.3% or 3% of reading
0.1%
45 seconds
CO2-carbon dioxide,
CH4-methane
Infrared principle
0..5% minimum
0.01%
± 0.03% or 3% of reading
0.01%
45 seconds
Infrared principle
0..100%
0.1%
± 0.3% or 3% of reading
0.1%
45 seconds
Oxygen measurement technology
O2-Oxygen
Principle of Electrochemistry
0..25%
0.01%
0.20% or 2% of reading
0.01%
45 seconds
O2-Oxygen
Paramagnetic sensor
0..25%
0.01%
0.20% or 2% of reading
0.01%
45 seconds
O2–Oxygen
Principle of bias
0..100%
0.1%
0.20% or 2% of reading
0.1%
45 seconds
Electrochemical sensors
NO2-nitrogen dioxide
Principle of Electrochemistry
0..1000 ppm
1 ppm
± 5 ppm or 5% of reading
5 ppm
45 seconds
H2S-hydrogen sulfide
Principle of Electrochemistry
0..5000 ppm
1 ppm
± 5 ppm or 5% of reading
5 ppm
45 seconds
H2-Hydrogen
Principle of Electrochemistry
0 ... 1000 ppm
1 ppm
± 5 ppm or 5% of reading
5 ppm
45 seconds
Temperature measurement
Tgas-flue gas temperature
Thermocouple
-10 ... 1000,1200,
1600 ° C
0.1 ° C
± 2 ° C or 1.5% of reading
1 ° C
30 seconds
Tamb-atmospheric temperature
Thermal resistance
-10: 100 ° C
0.1 ° C
± 1 ° C or 1.5% of reading
1 ° C
30 seconds
Other measured values
pressure
DMS bridge
-20 hPa ... + 20hPa
0.1 Pa
± 2 Pa or 5% of reading
0.1 Pa
10 seconds
Partial pressure
DMS bridge
-20 hPa ... + 20hPa
0.1Pa
± 2 Pa or 5% of reading
0.1Pa
10 seconds
Atmospheric pressure
DMS bridge
800 ... 1200hPa
0.1hPa
± 2 Pa or 5% of reading
0.1hPa
10 seconds
Calculation parameters
Lambda-excess air
Calculated
1..10
0.01
0.01
0.01
5 seconds
qA-combustion loss
Calculated
0..100%
0.1%
0.1%
0.1%
5 seconds
Eta-efficiency
Calculated
0..100%
0.1%
0.1%
0.1%
5 seconds

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