PG-300 series

Portable Gas Analyzer PG-300

Portable Gas Analyzer

The PG-300 is a compact and lightweight gas analyzer designed to measure up to five different gas components simultaneously. Its ability to provide precise measurements has been proven in both field and laboratory applications. Excep standard measurement components, the PG-300 series can provide measurement of GHGs such as methane (CH4) and nitrous oxide (N2O), facilitating GHG research and emission monitoring. With a 20% reduction in weight compared to previous PG model, the addition of shock-resistant side guards, and IP42 Ingress Protection as option the PG-300 is a robust analyzer suitable for field use. For more demanding monitoring applications like gas turbines, boilers, and incinerators, an optional preconditionong utilities such as electronic cooler, drain separator, drain pot are available for long-term measurements. The versatility of the PG-300 series makes these analyzers suitable for investigating environmental issues, testing stack emission, evaluating catalyst performance, and controlling process gas streams. 

 

Introduction of Portable Gas Analyzer PG-300 (1:10)

The documentary of University of California, Irvine, Combustion Lab. (3:16)

Division: Combustion
Manufacturing Company: HORIBA, Ltd.
  • The analysis principle for each gas component in PG-300 is as following.
    The NOx detector uses a cross-modulation Chemiluminescence Detection (CLD) Method. The SO2, CO and CH4 detector uses a cross-modulation Non-Dispersive Infrared Absorption (NDIR) Method. CO2 detector uses Non-Dispersive Infrared Absorption (NDIR) Method. The O2 detector can be selected from 3 different types: Galvanic, Zirconia or Paramagnetic Methods. In terms of high accuracy and high degree of selectivity in analysis, the PG-300 is comparable with large-scale continuous gas analyzers and specialized units. 

  • Cross-modulation mechanism involves alternating the introduction of sample gas and reference gas into the same gas cell by switching a solenoid valve at regular time intervals. Since clean reference gas (air) is fed into the sample cell in between each sample gas measurement, the gas cell remains clean, which significantly reduces the span drift, and contributes into long-time stability. One more advantage of cross-modulation to the chopper method lies in its smaller zero drift and elimination of the need for optical adjustment. 

  • Models equipped with methane (CH4) measurement capabilities, are well-suited for a wide range of applications, including biomass combustion, fuel cell,  greenhouse gas (GHG) research and development, as well as GHG emission monitoring. 

  • Easy operation ensured by user-friendly color LCD touch screen. The analyzer equipped with several useful functions, including screen capture, a color trend graph, and an inbuild operation guide.  

  • Warm-up time is reduced by half camparing with previous model, allowing it to be ready for measurements in just 30 minutes. Additionally, incorporated timer function enables the equipment to automatically start warming up at a specified time set by the user. The combination of these advanced features not only saves time in terms of readiness but also facilitates efficient measurements. 

  • The NOx  converter's 95% efficiency ensures high precision of measurements. 

  • Energy efficient design with up to 35% reduction in power consumption compared to our previous model. 

  • The front panel of the analyzer is featured with SD™ memory card slot, allowing for quick and convenient data storage. Additionally, an Ethernet interface is provided, enabling seamless connectivity to a local network environment. This facilitates real-time data communication. 

  • Multi languages and Global certificates 
    <Languages>  English, Chinese, Korean, German, French, Russian, and Japanese
    <Certificates>  TÜV(EU), China, Korea, Japan, MCERTS(UK), GOST(Russia)

  • Upgrade to IP42 version (Optionally available)
    A special rear cover is attached to prevent intrusion of water droplets and solid matter inside the analyzer. The cover offers protection against light rain and facilitates application at field.   
    IP=Ingress protection
    IP42 means protection against solid objects of 1 mm diameter and greater, and vertically falling water drops when enclosure is titled up to 15 degrees. Wiping off water drops on the measuring spots are necessary in order to obtain accurate value.

  • The PG-300 can be utilized as a backup unit or for cross-checking purposes of the Stack Gas Analyzer ENDA series and other non-HORIBA gas analyzers. It can be conveniently deployed to different locations, use branched sampling line and perform continuous measurement up to 5 days* as back up unit. 

    *The duration of continuous measurement may vary depending on the sample gas conditions and application.  

▶ Stack Gas Analysis System ENDA-5000

<Software>

The PG-350 software allows your PG to be connected on any network. The software runs in the Windows environment (Vista, XP, 7 and above) and provides a simple interface to acquire data and record CSV files.

Additionally you can control the NO and NOX line selection valve to switch automatically during your acquisition.

All component values are shown as well as a large graphic display.

You can select your mode in the solenoid menu:

- Manual NOX
- Manual NO
- Auto NO/NOX

The graph time range can be selected from 3 to 480 min.

You can install the software and license file on unlimited computers.
Contact your local sales office to get a license file (based on PG MAC address)
To use multiple PG-300 units, use multiple installations of the software in different folders.
Run simultaneously two or more instances of PG software from the different folders, connect and record data from as many PG-300's as are connected on the network.

 

Related Industries

 

Related Applications
 NOxSO2CO CO2O2 CH4N2O

Standard
models

PG-320

 

    
PG-325     
PG-330    
PG-335    
PG-337    
PG-340   
PG-350  

CH4
 models

PG-324     
PG-344   
PG-344 (Carbon Neutral)   
       Analysis Principle 
NOx

Cross-Modulation Chemiluminescence Detection Method 

SO2  ,CO, CH4

Cross-Modulation Non-Dispersive Infrared Absorption Method

O2Galvanic, Zirconia or Paramagnetic Method
Ranges (Standard models)
NOx0-25/50/100/250/500/1000/2500 ppm
N2O

C range: 0-100/200/500/1000 ppm
D range: 0-500/1000/2000/5000 ppm

SO2

0-200/500/1000/3000 ppm

CO0-200/500/1000/2000/5000 ppm 
CO20-10/20/30 vol%
O2

0-5/10/25 vol% *
*For paramagnetic method, please contact HORIBA representative in your area for the details

Ranges (CH4 models)
CH40-2000/5000ppm
CO0-2000/5000ppm 
CO20-5/10/20vol%
O2

0-5/10/25vol%* 
*For paramagnetic method, please contact HORIBA representative in your area for the details

Ranges (PG-344 Carbon Neutral)
CH4C range: 0-200/500/1000/2000 ppm
D range: 0-500/1000/2000/5000 ppm
N2OC range: 0-100/200/500/1000 ppm
D range: 0-500/1000/2000/5000 ppm
CO20-5/10/20 vol%
O2

0-5/10/25 vol% (Zirconia Method, or Galvanic Method) 0-10/25 vol% (Paramagnetic Method (Dumbbell type))

 

 Standard ModelCH4 Model
Repeatability±0.5% of full scale (NOx:≧100ppm range / CO: ≧1000ppm range)
±1.0% of full scale (Except above)

±1.0% of full scale

Linearity±2.0% of full scale
Drift±1.0% of full scale / day (For SO2 analyzer only: ±2.0% of full scale / day)
Response Time
(Td+T90)
Analyzers except SO2 analyzer: 45 sec. or less (From sample inlet)
SO2 analyzer: 180 sec. or less (From sample inlet)
Sample Gas
Flow Rate
Approx. 0.5L/min. 
DisplayMeasurement (3 or 4 digit display), range flow rate, etc.
OutputDC 4-20 mA (non-insulated) or 0-1 V (non-insulated) [optional] / Ethernet
Warm-up Time30 min. ±2.0% of full scale / 2 hours
Data SavingSDTM memory card / SDHCTM memory card
Ambient Temperature0°C-40°C  <32°F-104°F>
Ambient Humidity

Maximum 80% R.H. 
For temperature up to 31°C decreasing linearly to 50% at 40°C

Upper limit of N2O concentration: Less than 1 ppm, Upper limit of CH4 concentration: Less than 2 ppm
Please exhaust sampling gas sufficiently far from the equipment to avoid increase the concentration of N2O and CH4 in the operating environment.

PowerAC 100V to 240V ±10% (maximum 250 V), 50/60 Hz
Power ConsumptionApprox. 160VA in a steady state, maximum 220VA
Dimentions(With side guards)
300(W) x 520(D) x 260(H) mm <11.8"(W) x 20.5"(D) x 10.2"(H)>
(Without side guards)
260(W) x 520(D) x 260(H) mm <10.2"(W) x 20.5"(D) x 10.2"(H)
WeightApprox. 13kg - 15kg <29lb ~ 33lb>
Environmental ratingIP42 (Optionally available)
Sample Gas Condition

Temperature: Ambient temperature
Moisture: Below the ambient temperature saturation
Dust: 0.1g/Nm3 or less
Pressure: ±0.98 kPa
Non-existence of any gas that reacts with corrosive gas or measured gas

・SD is a trade mark for SD-3C, LLC.
・TAKE GREAT CARE WHEN HANDLING SAMPLE GASES CONTAINING TOXIC OR FLAMMABLE GASES. TAKE MEASURES SUCH AS PROVIDING ADEQUATE VENTILATION, INSTALLING GAS DETECTORS, AND REMOVING IGNITION SOURCES IN THE WORKING AREA.
・THE PG-300 SERIES IS NOT EXPLOSION-PROOF. DO NOT USE THIS PRODUCT IN A HAZARDOUS LOCATION OR FOR MEASUREMENT OF SAMPLE GASES IN EXPLOSIVE ATMOSPHERES (MIXTURE OF A COMBUSTIBLE GAS AND AIR WITHIN THE FLAMMABILITY LIMITS). HORIBA, LTD. AND ITS AFFILIATES ARE NOT LIABLE FOR EMERGENCIES CAUSED BY LEAKAGE OR MISHANDLING OF SUCH GASES. 

Real-Time Gas Measurement in Fuel Cells for Household and Commercial Use
Real-Time Gas Measurement in Fuel Cells for Household and Commercial Use
Real-time Measurement of Generated Gas from Safety Testing of Rechargeable Batteries
Real-time Measurement of Generated Gas from Safety Testing of Rechargeable Batteries
Nitrous Oxide Monitoring for Greenhouse Gas Reduction
Nitrous Oxide Monitoring for Greenhouse Gas Reduction
Monitoring of SO2 for Flue Gas Desulfurization
Monitoring of SO2 for Flue Gas Desulfurization

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