summary:
The JCAQ-9 air pollution environmental monitoring instrument is a highly integrated instrument developed to monitor six pollutant parameters, PM2.5, PM10, CO, SO2, NO2, O3, as well as 12 parameters including air temperature, relative humidity, wind speed, wind direction, atmospheric pressure, and rainfall, in response to the increasingly severe environmental protection situation. The main function is to combat conventional pollution in the air
24-hour continuous online monitoring of factors and meteorological auxiliary parameters, providing the analyzed data to the environmental protection bureau as a reference for air quality and assisting in environmental decision-making. In addition, optional options include hydrogen sulfide, volatile organic pollutants, sunlight radiation, noise, etc.
Applicable fields:
The JCAQ-9 air pollution environmental monitoring instrument can be applied to urban grid environmental monitoring and control, smart streetlights, scenic area environmental monitoring, factories or mines, construction sites (dust monitoring), urban roads, highways, public places and other places related to air quality monitoring.
Product features:
1. Standard PM2.5 monitoring PM10、NO2、SO2、O3、CO、 Twelve parameters including temperature, humidity, wind speed, wind direction, atmospheric pressure, and rainfall, with beautiful appearance, powerful functions, high integration, and RS485 communication;
2. High precision, reliable performance, suitable for outdoor and industrial environments;
3. Realize various parameter collection, optional with our wireless data collector, automatically upload data to the network platform, and view data in real-time on the mobile client;
4. Real time monitoring of atmospheric environment data, low cost, suitable for grid deployment;
5. Small size, modular design, flexible layout;
6. Optional GPS positioning to achieve device tracking function;
7. The data collection adopts a 32-bit high-speed processing chip, which is stable and anti-interference.
Product parameters:
Monitored Parameters |
range |
resolution |
accuracy |
configuration |
PM2.5 |
0-1000ug/m³ |
1ug/m³ |
± 10% measurement value |
standard configuration |
PM10 |
0-1000ug/m³ |
1ug/m³ |
± 10% measurement value |
standard configuration |
carbon monoxide |
0-12.5ppm |
≤10ppb |
±1.5%F.S |
standard configuration |
sulfur dioxide |
0-2000ppb |
≤10ppb |
±1.5%F.S |
standard configuration |
nitrogen dioxide |
0-2000ppb |
≤10ppb |
±1.5%F.S |
standard configuration |
ozone |
0-2000ppb |
≤10ppb |
±1.5%F.S |
standard configuration |
temperature |
-40-60℃ |
0.1℃ |
±0.3℃(25℃) |
standard configuration |
relative humidity |
0-100%RH |
0.1% |
±3%RH |
standard configuration |
|
wind speed |
0-60m/s |
0.01m/s |
(0-30m/s) ± 0.3m/s or ± 3% (30-60m/s) ± 5% |
standard configuration |
wind direction |
0-360° |
0.1° |
±2° |
standard configuration |
atmospheric pressure |
300-1100hpa |
0.1hpa |
±0.5hpa(0-30℃) |
standard configuration |
rainfall |
0-200mm/h |
0.2mm |
Error ± 10% |
standard configuration |
notes |
Optional H2S, noise, sunlight radiation, AQI index, UV radiation index, noise |
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Technical parameters:
Detection Principle |
PM2.5 PM10: measured by laser method; CO、SO2、NO2、O3: Electrochemical principle; Wind speed and direction: ultrasonic principle; Rainfall: optical principle; |
Power supply range |
DC12-24V |
work consume |
< 1.2w@12V |
signal output |
Default 485 output, MODBUS protocol expandable function: GPS positioning |
Scalable parameters |
H2S、 Noise, sunlight radiation, AQI index, UV radiation index, noise level output, etc |
work environment |
Temperature -40-70 ℃ Humidity 5-90% RH |
Installation method |
Bracket fixation |
Shell material |
ASA material |
protection grade |
IP65 |
Adding Functionality |
Can add data collectors (network port, GPRS wireless communication) Fixed brackets (1.5m, 3m) can be added to form a complete monitoring station; Can increaseB/SArchitecture software platform, mobile phoneAPPClient software(Limited to Android version));Solar power supply system can be added. |
remarks:
The four types of pollutants can be converted into ug/m ³ using the following conversion factors: coefficient N=(ug/m ³)/ppb
gas |
NO2 |
SO2 |
CO |
O3 |
Coefficient N |
2.054 |
2.857 |
1.25 |
2.143 |
