Environmental Monitors AQM60. Air Quality Station. Cost-effective Solutions for Air Quality Monitoring

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1 Environmental Monitors AQM60 Air Quality Station Cost-effective Solutions for Air Quality Monitoring All rights reserved Page 1 of 32

2 Table of Contents Overview and Key Benefits... 3 Typical Applications... 4 Key Features... 5 Component Overview... 6 Analytic GSS Technology... 7 Ozone (O 3 ) Module... 8 Nitrogen Dioxide (NO 2 ) Module... 9 Nitrogen Oxides (NOx) Module Carbon Monoxide (CO) Module Sulphur Dioxide (SO 2 ) Module Hydrogen Sulphide (H 2 S) Module Volatile Organic Compounds (PID) Module Carbon Dioxide (CO 2 ) Module Non-methane Hydrocarbon (NMHC) Module Particle Monitor (PM 10 PM 2.5 PM 1 TSP) Particle Profiler Wind Speed and Direction Sensors Multi-Sensor Weather Stations Solar Radiation Sensor Noise Meter and Calibrator Data Acquisition System (DAS) Communication Solutions Cellular IP Gateway ecloud Web Based Data Tool Gas Module Calibration AirCal Installation Examples (1) Installation Examples (2) Installation Examples (3) All rights reserved Page 2 of 32

3 Compact Air Quality Station Overview Air quality concerns everybody and directly impacts on our environment and personal well-being. Monitoring air quality in the microenvironment is critical for understanding epidemiological effects, for transportation and urban planning, for environmental impact assessments, and for making decisions about air pollution mitigation strategies. Aeroqual Environmental Monitors are compact and designed for low-cost and easy deployment in an air quality monitoring network. The AQM60 station offers long term quantitative, time integrated atmosphere measurement with excellent correlation to reference methods. Conventional air quality stations by comparison are expensive, bulky, power-hungry, and require a rigorous calibration and maintenance program. Such limitations often make them unsustainable for micro-scale and high-density monitoring. The AQM60 station has a flexible instrument platform configurable to measure common air pollutants including ozone (O 3 ), nitrogen dioxide (NO 2 ), nitrogen oxides (NOx), carbon monoxide (CO), sulphur dioxide (SO 2 ), volatile organic compounds (VOC), hydrogen sulphide (H 2 S), non-methane hydrocarbons (NMHC), carbon dioxide (CO 2 ) and other gases, plus particulate matter (TSP, PM 10, PM 2.5, PM 1 ), meteorological parameters (air temperature, relative humidity, wind speed/direction etc) and environmental noise. AQM60 air quality station with integrated AirCal 8000 system Key Benefits Quantitative atmosphere measurement for high quality information (decisions) Compact instrument design for network deployment with a small footprint Lower capital cost for affordable profiling, trending and assessments Reliable operation ensures low cost of ownership All rights reserved Page 3 of 32

4 Typical Applications Urban Monitoring Local Area Air Quality Networks Community Exposure Microenvironment Monitoring Epidemiological Studies Hotspot Screening Exceedance Monitoring Environmental Impact Assessments Near Road Monitoring Motorways and Highways Inner City Street Canyons Toll Plazas and Bridges Traffic Management Mitigation Strategy Monitoring Road and Weather Information Systems (RWIS) Perimeter Monitoring Power Generation Plants Petrochemical Refineries Wastewater Treatment Plants Waste Sites and Landfills Point Source Pollution Emitters Airports, Ports, Rail Yards Construction Sites Exceedance Monitoring Open Space Monitoring Natural Parks and Reserves Forest Services Crop Research Remote Monitoring Mitigation Strategy Monitoring Natural Environment Studies All rights reserved Page 4 of 32

5 Key Features Continuous automatic measurement of multiple gases and particulates NIST traceable factory calibration using USEPA and EU Reference Method instruments (2008/50/EC) Excellent linearity and sensitivity Low zero and span drift Climate-controlled compact enclosure for pole or wall installation All fluoropolymer sample inlet Long-life brushless DC diaphragm sampling pump Single-board computer with RS232 communication protocol Internal data storage via versatile Secure Digital (SD) card Continuous digital display of multiple parameters PC connection via USB plus software for configuration and data logging Programmable data logging frequency PC data reporting in units of ppm and mg/m 3 Remote diagnostics Flexible and modular instrument platform Built-in zero air scrubber as standard Calibrate using Ambient Reference gas equipment Wide range of remote communication options (GSM, GPRS, RF, Bluetooth, TCP/IP) Left: a compact AQM60 air quality station (inside red circle) operates alongside a conventional air quality station at a near-road monitoring site in the United Kingdom. By comparison, the AQM60 station has a lower capital cost, is cheaper to operate, has a smaller footprint, requires less maintenance, and can easily be deployed within a low-cost high density air quality network. All rights reserved Page 5 of 32

6 Component Overview TSP Inlet Sharp Cut Cyclone (PM 10, PM 2.5 or PM 1 ) and PM inlet tube with heater Air Sampling Inlet Fluoropolymer sample inlet Solar Radiation Shields and lockable door External USB Port Thermal Management System (TMS) with AC compressor and power module Standard Configuration Any combination of 1-6 gas modules, particle monitor and various meteorological sensors Dimensions (H x W x D) Enclosure and TMS 850 x 460 x 310 mm With brackets and cowlings 900 x 555 x 400 mm Height with PM inlet installed 1300 mm Weight Kg depends on instrument configuration Operating Environment Range -20 to +55 C Thermal Management System (AC compressor cooler and internal heater) Power Requirements VAC (contact Aeroqual for 12VDC option) W depends on instrument configuration Conformity Power Supply : EN55015, EN55022 Class B, EN ,3, EN ,3,4,5,6,8,11, ENV50204, EN61547, EN , EN ; UL1012, UL ; TUV EN Gas Modules : Part 15 FCC Rules, 2004/108/EC; EN : 2001, EN : 2001 Particle Monitor and Profiler : Class 1 laser; IEC :1998; 72/23/EEC; EN ; EN :1996; US 21 CFR Gas Treatment Module Long-life BLDC sampling pump and PTFE manifold PTFE inlet filter Particle Monitor Optical mass detector with heated inlet and sharp cut cyclones for PM 10, PM 2.5 or PM 1 PM Flow Module Sampling pump and flow control Communications Space reserved for communication solutions e.g. GSM/GPRS modem, Cellular IP modem, Ethernet device server, RF modem etc. Control Module 4-line display, Secure Digital (SD) card and RS232-USB converter External USB Port Thermal Management System (TMS) Ventilation fans and compressor below Gas Modules O 3, NO 2, NOx, CO, SO 2, H 2 S, VOC, CO 2, NMHC etc TMS Control Module May include interface module for meteorological sensors Internal active heating Power management Power module installed below Exhaust air All rights reserved Page 6 of 32

7 Analytic GSS Technology Analytic Gas Sensitive Semiconductor (GSS) technology is exclusive to Aeroqual. It is a combination of smart measurement techniques and mixed metal oxide semiconductor sensors that exhibit an electrical resistance change in the presence of a target gas. Theory in Practice This resistance change is caused by a loss or a gain of surface electrons as a result of adsorbed oxygen reacting with the target gas. If the oxide is an n-type, there is either a donation (reducing gas) or subtraction (oxidizing gas) of electrons from the conduction band. The result is that n-type oxides increase their resistance when oxidizing gases such as NO 2 and O 3 are present while reducing gases such as CO and hydrocarbons lead to a reduction in resistance. The converse is true for p-type oxides where electron exchange due to gas interaction leads either to a rise (oxidizing gas) or a reduction (reducing gas) in electron holes in the valence band. This then translates into corresponding changes in electrical resistance. Quantitative response is achieved as the magnitude of change in electrical resistance is a direct measure of the concentration of the target gas present. Optimized Performance by Design Since the surface reaction causes the change in electrical resistance in the sensing oxide, maximizing the surface area intensifies the response to gas. Aeroqual gas sensors consist of highly porous oxide layers, which are printed onto 2.0 x 2.0 mm alumina chips. The electrodes are co-planar and located at the oxide/chip interface (see diagrams). A heater track is also applied to the chip to ensure the sensor runs hot which minimizes interference from humidity and increases the speed of response. The microstructure of the oxide, its thickness and its running temperature are optimized to improve selectivity. Catalytic additives, protective coatings and activated-carbon filters are also applied to enhance selectivity. Aeroqual s GSS technology is the culmination of more than 25 years of materials research perfecting material formulations and optimizing sensor driver algorithms. Advanced Metal Oxide Semiconductor materials are manufactured to the optimum physical form for each specific gas (e.g. WO 3, doped Cr 2 O 3, MoO 3 ). Selectivity is achieved through smart instrument design and drift is minimized through proprietary micro-processor control of sensor operation and the use of optimized sensor materials. Aeroqual GSS sensor-based gas modules utilize active sampling and are designed to offer reference comparable accuracy, very low detection limits (ppb levels for O 3, NO 2, and NOx), and high reliability in a cost-effective and flexible package. These instruments have tracked reference analyzers for periods of months, without recalibration. They are ideal for deployment as low-cost devices to extend the spatial coverage of air quality monitoring networks and provide a higher quality of data and information on any given day. Platinum heater track printed underside alumina substrate Gold electrodes printed top side of alumina substrate Sensing oxide deposited onto electrode structure Sensor layer structure Platinum wires attach the sensor to gold-plated binding posts Specially shaped nozzles are designed for different sampling methods Examples of GSS sensors for specific gases, scrubbers and sampling systems All rights reserved Page 7 of 32

8 Ozone (O 3 ) Module Specifications Principle: AQMLZ Gas Sensitive Semiconductor (GSS) Calibrated range: 0 to 0.5 ppm (0-1 mg/m 3 ) Limit of detection: ppm (0.002 mg/m 3 ) Resolution: ppm (0.002 mg/m 3 ) Precision: ppm (0.004 mg/m 3 ) Zero drift/24 hours: Span drift/24 hours: Response time (T 80 ): Sample flow rate: Zero calibration: Span calibration point: Electrical connections: Power consumption: <0.002 ppm <5% reading <120 s LPM (modulated) Internal zero air scrubber (or external calibration system) ppm O 3 (balance air) 12 VDC power, GND, 2-wire RS485, 0-5 V analog (option) 3 W Conformity: 2004/108/EC; EN : 2001, EN : 2001 Part 15 FCC Rules Effect of interference gases: The table below shows typical responses to interference gases in a sample. Individual results may vary. Interference Gas O 3 Module Reading (ppm) Ammonia 10 ppm Butane 10 ppm 0 Carbon monoxide 10 ppm 0 Carbon dioxide 1000 ppm 0 Chlorine 1 ppm 0.05 Ethanol 5 ppm Hydrogen 50 ppm 0 Hydrogen sulphide 1 ppm Isobutylene 10 ppm 0 Methane 100 ppm 0 Nitrogen dioxide 0.1 ppm <0.005 Ozone 0.1 ppm 0.1 Perchloroethylene 20 ppm 0 Propane 100 ppm 0 Sulphur dioxide 1 ppm 0 Toluene 5 ppm 0 All rights reserved Page 8 of 32

9 Nitrogen Dioxide (NO 2 ) Module Specifications Principle: AQMNW Gas Sensitive Semiconductor (GSS) and selective scrubbers Calibrated range: 0 to 0.2 ppm (0.4 mg/m 3 ) NO 2 Limit of detection: ppm (0.002 mg/m 3 ) Resolution: ppm (0.002 mg/m 3 ) Precision: ppm (0.009 mg/m 3 ) Zero drift/24 hours: Span drift/24 hours: Response time (T 80 ): Sample flow rate: Zero calibration: Span calibration point: Electrical connections: Power consumption: <0.005 ppm <10% reading <180 s LPM Internal zero air scrubber (or external calibration system) ppm NO 2 (balance air) 12 VDC power, GND, 2-wire RS485, 0-5 V analog (option) 7 W Conformity: 2004/108/EC; EN : 2001, EN : 2001 Part 15 FCC Rules Effect of interference gases: The table below shows typical responses to interference gases in a sample. Individual results may vary. Interference Gas NO 2 Module Reading (ppm) Ammonia 10 ppm Butane 10 ppm 0 Carbon monoxide 10 ppm 0 Carbon dioxide 1000 ppm 0 Chlorine 1 ppm 0.2 Ethanol 5 ppm Hydrogen 50 ppm 0 Hydrogen sulphide 1 ppm Isobutylene 10 ppm 0 Methane 100 ppm 0 Nitrogen dioxide 0.1 ppm 0.1 Ozone 0.1 ppm 0 Perchloroethylene 20 ppm 0 Propane 100 ppm Sulphur dioxide 1 ppm 0 Toluene 5 ppm All rights reserved Page 9 of 32

10 Nitrogen Oxides (NOx) Module Specifications Principle: Calibrated range: AQMNX Gas Sensitive Semiconductor (GSS) with NO converter and selective scrubbers 0 to 0.5 ppm (0-1 mg/m 3 ) NOx Limit of detection: ppm (0.002 mg/m 3 ) Resolution: ppm (0.002 mg/m 3 ) Precision: ppm (0.009 mg/m 3 ) Zero drift/24 hours: Span drift/24 hours: Response time (T 80 ): Sample flow rate: Zero calibration: Span calibration point: Electrical connections: Power consumption: <0.005 ppm <10% reading <180 s LPM Internal zero air scrubber (or external calibration system) ppm NO 2 or NO (balance air) 12 VDC power, GND, 2-wire RS485, 0-5 V analog (option) 7 W Conformity: 2004/108/EC; EN : 2001, EN : 2001 Part 15 FCC Rules Effect of interference gases: The table below shows typical responses to interference gases in a sample. Individual results may vary. Interference Gas NOx Module Reading (ppm) Ammonia 10 ppm Butane 10 ppm 0 Carbon monoxide 10 ppm 0 Carbon dioxide 1000 ppm 0 Chlorine 1 ppm 0.2 Ethanol 5 ppm Hydrogen 50 ppm 0 Hydrogen sulphide 1 ppm Isobutylene 10 ppm 0 Methane 100 ppm 0 Ozone 0.1 ppm 0 Perchloroethylene 20 ppm 0 Propane 100 ppm Sulphur dioxide 1 ppm 0 Toluene 5 ppm All rights reserved Page 10 of 32

11 Carbon Monoxide (CO) Module Specifications Principle: Calibrated range: AQMECM Gas Sensitive Electrochemical (GSE) 0 to 25 ppm (0-30 mg/m 3 ) CO Limit of detection: 0.1 ppm (0.1 mg/m 3 ) Resolution: 0.01 ppm (0.01 mg/m 3 ) Precision: 0.2 ppm (0.25 mg/m 3 ) Zero drift/24 hours: Span drift/24 hours: Response time (T 80 ): Sample flow rate: Zero calibration: Span calibration point: Electrical connections: Power consumption: <1 ppm <10% reading <120 s LPM Internal zero air scrubber (or external calibration system) 5 ppm (balance air) 12 VDC power, GND, 2-wire RS485, 0-5 V analog (option) 2 W Conformity: 2004/108/EC; EN : 2001, EN : 2001 Part 15 FCC Rules Effect of interference gases: The table below shows typical responses to interference gases in a sample. Individual results may vary. Interference Gas CO Module Reading (ppm) Ammonia 10 ppm <0.1 Butane 10 ppm <0.1 Carbon monoxide 10 ppm 10 Carbon dioxide 1000 ppm 0 Chlorine 1 ppm 0 Ethanol 5 ppm 0 Hydrogen 50 ppm 25 Hydrogen sulphide 1 ppm <0.1 Isobutylene 10 ppm 0 Methane 100 ppm 0 Nitrogen dioxide 0.1 ppm 0 Ozone 0.1 ppm 0 Perchloroethylene 20 ppm 0 Propane 100 ppm <0.1 Sulphur dioxide 1 ppm <0.5 Toluene 5 ppm 0 All rights reserved Page 11 of 32

12 Sulphur Dioxide (SO 2 ) Module Specifications Principle: AQMESO Gas Sensitive Electrochemical (GSE) Calibrated range: 0 to 10 ppm (0-30 mg/m 3 ) SO 2 Limit of detection: 0.01 ppm (0.03 mg/m 3 ) Resolution: 0.01 ppm (0.03 mg/m 3 ) Precision: 0.03 ppm (0.08 mg/m 3 ) Zero drift/24 hours: Span drift/24 hours: Response time (T 80 ): Sample flow rate: Zero calibration: Span calibration point: Electrical connections: Power consumption: <0.03 ppm <10% reading <120 s LPM Internal zero air scrubber (or external calibration system) 1 ppm SO 2 (balance air) 12 VDC power, GND, 2-wire RS485, 0-5 V analog (option) 2 W Conformity: 2004/108/EC; EN : 2001, EN : 2001 Part 15 FCC Rules Effect of interference gases: The table below shows typical responses to interference gases in a sample. Individual results may vary. Interference Gas SO 2 Module Reading (ppm) Ammonia 10 ppm <0.01 Butane 10 ppm 0 Carbon monoxide 10 ppm 0.1 Carbon dioxide 1000 ppm 0 Chlorine 1 ppm Ethanol 5 ppm 0 Hydrogen 50 ppm 0.1 Hydrogen sulphide 1 ppm 0 Isobutylene 10 ppm <0.3 Methane 100 ppm 0 Nitrogen dioxide 0.1 ppm Ozone 0.1 ppm Perchloroethylene 20 ppm 0 Propane 100 ppm <0.5 Sulphur dioxide 1 ppm 1 Toluene 5 ppm <0.15 All rights reserved Page 12 of 32

13 Hydrogen Sulphide (H 2 S) Module Specifications Principle: Calibrated range: AQMEHS Gas Sensitive Electrochemical (GSE) 0 to 10 ppm (0-15 mg/m 3 ) H 2 S Limit of detection: 0.01 ppm (0.02 mg/m 3 ) Resolution: 0.01 ppm (0.02 mg/m 3 ) Precision: 0.03 ppm (0.04 mg/m 3 ) Zero drift/24 hours: Span drift/24 hours: Response time (T 80 ): Sample flow rate: Zero calibration: Span calibration point: Electrical connections: Power consumption: <0.03 ppm <10% reading <120 s LPM Internal zero air scrubber (or external calibration system) 1 ppm H 2 S (balance air) 12 VDC power, GND, 2-wire RS485, 0-5 V analog (option) 2 W Conformity: 2004/108/EC; EN : 2001, EN : 2001 Part 15 FCC Rules Effect of interference gases: The table below shows typical responses to interference gases in a sample. Individual results may vary. Interference Gas H 2 S Module Reading (ppm) Ammonia 10 ppm <0.01 Butane 10 ppm <0.05 Carbon monoxide 10 ppm <0.1 Carbon dioxide 1000 ppm 0 Chlorine 1 ppm -0.1 Ethanol 5 ppm <0.1 Hydrogen 50 ppm <0.75 Hydrogen sulphide 1 ppm 1 Isobutylene 10 ppm <0.15 Methane 100 ppm 0 Nitrogen dioxide 0.1 ppm <-0.01 Ozone 0.1 ppm <-0.01 Perchloroethylene 20 ppm 0 Propane 100 ppm <0.15 Sulphur dioxide 1 ppm <0.1 Toluene 5 ppm <0.1 All rights reserved Page 13 of 32

14 Volatile Organic Compounds (PID) Module Specifications Principle: Calibrated range: AQMPD Photo Ionization Detector (PID) 0 to 20 ppm (0-50 mg/m 3 ) VOC Limit of detection: 0.01 ppm (0.02 mg/m 3 ) Resolution: 0.01 ppm (0.02 mg/m 3 ) Precision: 0.02 ppm (0.04 mg/m 3 ) Zero drift/24 hours: Span drift/24 hours: Response time (T 80 ): Sample flow rate: Zero calibration: Span calibration point: Electrical connections: Power consumption: <0.02 ppm <10% reading <120 s LPM Internal zero air scrubber (or external calibration system) 5 ppm isobutylene (balance air) 12 VDC power, GND, 2-wire RS485, 0-5 V analog (option) 2 W Conformity: 2004/108/EC; EN : 2001, EN : 2001 Part 15 FCC Rules Effect of interference gases: The table below shows typical responses to interference gases in a sample. Individual results may vary. Interference Gas VOC (PID) Module Reading (ppm) Ammonia 10 ppm 1 Butane 10 ppm 0.5 Carbon monoxide 10 ppm 0 Carbon dioxide 1000 ppm 0 Chlorine 1 ppm 0 Ethanol 5 ppm 0.5 Hydrogen 50 ppm 0 Hydrogen sulphide 1 ppm 0.3 Isobutylene 10 ppm 10 Methane 100 ppm 0 Nitrogen dioxide 0.1 ppm 0 Ozone 0.1 ppm 0 Perchloroethylene 20 ppm 0 Propane 100 ppm 0 Sulphur dioxide 1 ppm 0 Toluene 5 ppm 10 All rights reserved Page 14 of 32

15 Carbon Dioxide (CO 2 ) Module Specifications Principle: AQMCD Non Dispersive Infrared (NDIR) Calibrated range: 0 to 2000 ppm ( mg/m 3 ) CO 2 Limit of detection: 6 ppm (10 mg/m 3 ) Resolution: 1 ppm (1 mg/m 3 ) Precision: 10 ppm (10 mg/m 3 ) Zero drift/24 hours: Span drift/24 hours: Response time (T 80 ): Sample flow rate: Zero calibration: Span calibration point: Electrical connections: Power consumption: <10 ppm <10% reading <120 s LPM Internal zero air scrubber (or external calibration system) 1000 ppm CO 2 (balance air) 12 VDC power, GND, 2-wire RS485, 0-5 V analog (option) 2.5 W Conformity: 2004/108/EC; EN : 2001, EN : 2001 Part 15 FCC Rules All rights reserved Page 15 of 32

16 Non-methane Hydrocarbon (NMHC) Module Specifications Principle: Calibrated range: AQMVN Gas Sensitive Semiconductor (GSS) 0 to 25 ppm (0-60 mg/m 3 ) NMHC Limit of detection: 0.1 ppm (0.2 mg/m 3 ) Resolution: 0.1 ppm (0.2 mg/m 3 ) Precision: 0.2 ppm (0.4 mg/m 3 ) Zero drift/24 hours: Span drift/24 hours: Response time (T 80 ): Sample flow rate: Zero calibration: Span calibration point: Electrical connections: Power consumption: <0.2 ppm <10% reading <120 s LPM Internal zero air scrubber (or external calibration system) 5 ppm isobutylene (balance air) 12 VDC power, GND, 2-wire RS485, 0-5 V analog (option) 3 W Conformity: 2004/108/EC; EN : 2001, EN : 2001 Part 15 FCC Rules All rights reserved Page 16 of 32

17 Particle Monitor (PM 10 PM 2.5 PM 1 TSP) Specifications Principle: Sample method: Application: Particle sizes: AQMPM10 / AQMPM25 / AQMPM1 / AQMTSP Nephelometer using forward light scattering via laser diode detector. The particle monitor measures the amount of light scattered from particles in the air. Particle mass density (µg/m 3 ) is proportional to the amount of reflected light. Traceable cyclone designs are used to provide well-defined aerodynamic cuts which determine the mass concentration of a specific particle size range (PM 10, PM 2.5 and PM 1 ). BLDC diaphragm pump Calibrated range: 0 to 2000 µg/m 3 Sensitivity: 1 µg/m 3 Resolution: 1 µg/m 3 Precision: Accuracy: ±8% Sample period: Particulate matter in ambient air TSP, PM 10, PM 2.5, PM 1 (interchangeable sharp cut cyclones) 3 µg/m 3 (or 2% of reading) 1 s Units of measure: µg/m 3 Sample flow rate: Inlet heater: Zero calibration: Span check: Electrical connections: Power consumption: 2 LPM Available as standard Auto-zeroing built-in Manual span check switch and 47 mm gravimetric reference filter (option) 12 VDC power, GND, 2-wire RS485, 0-5 V analog (option) 12 W (with heater) Conformity: Class 1 laser; IEC :1998; 72/23/EEC; EN ; EN :1996; US 21 CFR All rights reserved Page 17 of 32

18 Particle Profiler Specifications Principle: Sample method: Application: Measuring ranges: AQMPP8 Optical Particle Counter (OPC) using forward light scattering via laser diode. The particle profiler counts individual particles by counting the pulses of reflected light from a particle using fast electronics. The magnitude of the reflected light is also used to size the particles and bin them into specific size channels. A built-in proprietary algorithm containing geometric and particle density components, is then used to calculate mass from the number size distribution. BLDC diaphragm pump Particle size/distribution in ambient air 0.3 µm to 10 µm (eight selectable sizes) Concentration: Sensitivity: 0.3 µm Resolution: Accuracy: Sample period: Simultaneous TSP, PM 10, PM 2.5, PM 1 0 to 100,000 PPL (particles per litre) 0 to 5000 µg/m µg/m 3 1 PPL 0.1 µg/m 3 Count: ±10% to calibration aerosol Mass: ±10% to gravimetric filter Units of measure: Counts per litre and µg/m 3 Sample flow rate: Inlet heater: Calibration: Electrical connections: Power consumption: 1 s 1 LPM Available as option Factory service using NIST traceable standards and 47 mm gravimetric reference filter (option) 12 VDC power, GND, 2-wire RS485, 0-5 V analog (option) 6 W (without heater) Conformity: Class 1 laser; IEC :1998; 72/23/EEC; EN ; EN :1996; US 21 CFR All rights reserved Page 18 of 32

19 Wind Speed and Direction Sensors AQMR1 Description: Specifications: AQMR1 Gill WindSonic 2-axis ultrasonic wind sensor For full details visit the company website Wind Speed Range Accuracy Resolution Wind Direction 0-60 m/s 12 m/s 0.01 m/s Range (no dead band) Accuracy 12 m/s Resolution 1 Mechanical External construction & protection Size & Weight Environmental Operating range LURAN S KR 2861/1C ASA/PC; IP x 160 (mm) ; 0.5 Kg -35 C to +70 C; <5% to 100% RH AQMR2 Description: Specifications: AQMR2 NovaLynx 200-WS-02B Combination three cup anemometer and wind vane sensor For full details visit the company website Anemometer Turning radius 3 to centre of cup Speed threshold 1.2 mph Transducer type Reed switch, magnet activated Speed Constant 1.25 mph = 1pps, 75mph=60hz Measurement range 0-99 mph (typical) Accuracy 1mph or ± 3% Wind Vane Azimuth accuracy ± 3% Bearing type Bushing Potentiometer gap 5 approx Distance constant 1.5 Damping ratio 0.4 Vane threshold 1.2 mph Measurement range azimuth Time constant 2 sec Turning radius 10 1/2 All rights reserved Page 19 of 32

20 Multi-Sensor Weather Stations AQMR25 Description: Specifications: AQMR25 Vaisala Weather Transmitter WXT520 Measures wind speed and direction; liquid precipitation; barometric pressure; air temperature; and relative humidity For full details visit the company website Wind Speed and Direction Speed Measurement range Accuracy Direction Measurement range Accuracy Liquid Precipitation Rainfall output resolution accuracy Rainfall duration output resolution Rain intensity range output resolution Barometric Pressure Measurement range Accuracy Air Temperature Measurement range +20 C (+68 F) Relative Humidity Measurement range Accuracy 0-60 m/s ±0.3 m/s or ±3% (0-35 m/s); ±5% (36-60 m/s ) ±3 cumulative accumulation after latest reset 0.01 mm, inches 5% counts each 10 s increment when droplet detected 10 s one-minute running average in ten-second steps mm/h 0.1 mm/h, 0.01 inches/h hpa ±0.5 0 to 30 C (+32 to +86 F); ±1 -52 to +60 C (-60 to +140 F) -52 to +60 C (-60 to +140 F) ±0.3 C (±0.5 F) %RH ±3 %RH (0-90 %RH); ±5 %RH ( %RH) AQMR39 Description: Specifications: AQMR39 Gill MetPak II Weather Station Measures wind speed and direction; air temperature; relative humidity; barometric pressure and dew point For full details visit the company website Wind Speed Range Accuracy Resolution Wind Direction Range Accuracy Resolution Air Temperature Range Accuracy Resolution Relative Humidity Range Accuracy Resolution Barometric Pressure Range Accuracy Resolution Dew Point Accuracy Resolution 0-60 m/s (134 mph) 12 m/s 0.01 m/s (0.02 mph) 0 to No dead band 12 m/s 1-35 C to +70 C ±0.1 C 0.1 C (0.1 F) %RH ± C 0.1 %RH hpa ±0.5 hpa ±0.1 hpa ±0.15 C (23 C ambient 20 C dew point) 0.1 C (0.1 F) All rights reserved Page 20 of 32

21 Solar Radiation Sensor AQMR28 Description: Specifications: AQMR28 NovaLynx SZ Silicon pyranometer For full details visit the company website Sensor High stability silicon voltaic detector Accuracy ± 5% typical under natural daylight conditions Sensitivity 100 µa per 1000 Wm² typical Resolution 0.01 m/s Linearity Max deviation of 1% up to 3000 Wm² Stability < ± 2% change over a one year period Response time 10 µs Temperature dependence 0.15% per C max Cosine correction Cosine corrected up to 80 angle of incidence Azimuth <± 1% error over 360 at 45 elevation Tilt no error induced from orientation Operating temperature 40 C to +65 C (-40 F to +149 F) Sensor housing Weatherproof anodized aluminum case with acrylic diffuser and stainless steel hardware Size & Weight 3" Dia x 1.4" H; 1 lb All rights reserved Page 21 of 32

22 Noise Meter and Calibrator AQMR26 and AQMR27 Description: Specifications: AQMR26 and AQMR27 ACO Pacific Outdoor environmental noise meter: Type 1 compliant For full details visit the website AQMR26 SLARM SA6000 Alarm, Display, History and Control available Programmable dbspl Alarm Settings, Leq Periods, F/S response A, C and Lin(Z) Weighting Curve Selection True RMS detection with >100 db Dynamic range Standard 20 to 120 dbspl, 40 to 140 dbspl Optional to <20 dba and > 175 dbspl Type 1 microphone Frequency response 8 Hz to 18 khz Sensitivity -26dB Dynamic range 14dBA to 145 db (equivalent to Bruel and Kjaer Type 4155/4189) Remote Mic/Preamp - to > 300 feet Cable 30 feet ODM outdoor microphone housing assembly WSI-80T 80ppi water resistant windscreen AQMR27 SPL Calibrator 1 khz All rights reserved Page 22 of 32

23 Data Acquisition System (DAS) Control Module Description: Specifications: AQMCM included in AQM60 station base AQM60 Control Module with display and data logging Processor Display Single-board-computer (SBC) Liquid crystal display (LCD); 4-line x 20-character Continuous Data Gas concentration; particle concentration; temperature; humidity; wind speed; wind direction; noise; and other values per integrated sensor Storage Media Sampling Frequency Communication Protocol Secure Digital (SD) card; 2 GB (expandable) 2 to 256 minutes (programmable) RS232 Refer to User Guide Interfaces RS232 / DB9; System BUS; 12 VDC out (700 ma); external USB port Power consumption 5 W Software Programs Description: Specifications: AQMR60 included in AQM60 station base AQM60 Configuration and PC data logging software Purpose Media Functions Database PC Requirements Protocol Compatibility AQM Software is designed to be a simple interface for communicating with the AQM60 station via a PC CD-ROM Poll data and display in either tabular or graphical format; unit conversion ppm to mg/m 3 ; view historical data sets; export data to spreadsheets; configure sensors and sampling frequency; initiate zero calibration routine; modify gain factors; adjust instrument performance; diagnostics and setup for GSM/GPRS modem connection for remote operation Open source HSQLDB Java database and Java V1.5 (supplied with software) CD-ROM Drive; RS232 / USB port; Windows OS version 2000 or later; 100 Mb spare hard drive space; 256 Mb RAM; 1 GHz processor speed Refer to User Guide Other third-party DAS software programs may be integrated with the AQM60 station. Refer to Aeroqual for advice All rights reserved Page 23 of 32

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