• Ambient and continuous Air Quality Monitoring System (Reference Method)

Ambient Air Quality Monitoring is essential for local authorities as well as for major public and private industries to understand and prevent air pollution and assess emission sources, air quality monitoring involves the measurement of pollution in ambient conditions. Monitoring the air quality is important in protecting the health of populations and is performed by Ambient Air Quality Monitoring Stations (AAQMS) that are totally integrated with gas analyzers, particulate monitors, calibration equipment, data loggers and data reporting software. Al Ghalowa provide a totally integrated air quality monitoring system or network of systems for all its worldwide clients

Real-time gas analyzers are available for the measurement of all major organic and inorganic pollutants including Oxides of Nitrogen (NOx), Sulphur Dioxide (SO2), Ozone (O3), Carbon Monoxide (CO), Hydrogen Sulphide (H2S), Ammonia (NH3), Benzene (C6H6), Carbon Dioxide (CO2), BTEX and VOC’s.

Add in advanced calibration systems, data-logging, internet data distribution and maintenance contracts and it becomes clear that making Al Ghalowa Company your environmental partner will exceed your expectation in a cost effective manner.

System Integration into Air Pollution Monitoring Stations

The 19”-rack design of the Ambient Air Analyser allows implantation in various types of monitoring systems. The flexible assembly enables racks for clean rooms, cabinets, containers, stations and mobile laboratories, which can include sampling systems and data acquisition.

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Mobile Ambient Air Pollution Monitoring

HORIBA individually equippes various trailers, vans or trucks according to the customer’s request. Next to the analysers, sampling systems and data aquisition, evena workspace, including furniture and PC, is implemented. Independent from external power supply, HORIBA’s Mobile Ambint Air pollution Monitoring is a truly a turn key solution.

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AB – 370 Series

   APNA-370 Ambient NO, NO2, NOX continuously monitor

The APNA-370 continuously monitors atmospheric NO, NO2 and NOxconcentrations using a cross-flow modulated semi decompression chemiluminescence method. The APNA-370 employs an independent, internal dry-method sampling device to achieve the highest levels of sensitivity and accuracy. The dry method, due to its minimal maintenance requirements and capability of continuous monitoring and instantaneous analysis of gas in its unaltered state, has been a preferred method for monitoring the atmospheric pollution.

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   APNA-370 Ambient NO, NO2, NOX continuously monitor

The APNA-370 continuously monitors atmospheric NO, NO2 and NOxconcentrations using a cross-flow modulated semi decompression chemiluminescence method. The APNA-370 employs an independent, internal dry-method sampling device to achieve the highest levels of sensitivity and accuracy. The dry method, due to its minimal maintenance requirements and capability of continuous monitoring and instantaneous analysis of gas in its unaltered state, has been a preferred method for monitoring the atmospheric pollution.

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APHA-370 Ambient THC monitor

The APHA-370 continuously monitors atmospheric THC, NMHC, and CH4concentrations using a cross-flow modulated selective combustion type method combined with a hydrogen ion detection method. The APHA-370 employs an independent, internal dry-method sampling device to achieve the highest levels of sensitivity and accuracy.

APOA-370 Ambient Ozone monitor

The APOA-370 continuously monitors atmospheric ozone concentrations using a cross flow modulated ultraviolet absorption method. The APOA-370 employs an independent, internal dry-method sampling device to achieve the highest levels of sensitivity and accuracy. The dry method, due to its minimal maintenance requirements and capability of continuously monitoring and instantaneously analyzing gases in their unaltered state, has been a preferred method for monitoring the atmospheric pollution.

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APMA-370 Ambient Carbon Monoxide monitor

The APOA-370 continuously monitors atmospheric ozone concentrations using a cross flow modulated ultraviolet absorption method. The APOA-370 employs an independent, internal dry-method sampling device to achieve the highest levels of sensitivity and accuracy. The dry method, due to its minimal maintenance requirements and capability of continuously monitoring and instantaneously analyzing gases in their unaltered state, has been a preferred method for monitoring the atmospheric pollution.


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APSA-370 Ambient Sulfur Dioxide monitor

The APSA-370 is a device for the continuous monitoring of atmospheric SO2 using UV fluorescence. The APSA-370 employs an proprietary, internal dry-method sampling device to achieve the highest levels of sensitivity and accuracy. The dry-method, due to its minimal maintenance requirements capability of continuous monitoring and instantaneous analysis of gas in its unaltered state, has been a preferred method for monitoring the atmospheric pollution

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APDA-370 Ambient Dust Monitor

APDA-370 Air pollution monitor for Suspended Particulate Matter (SPM) ensure the long term stability and self-diagnostic capabilities as well as efficient collection of fluorine resin tape..

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APSA-370/CU-1 Ambient Hydrogen Sulfide Monitor

APSA-370/CU-1 Ambient H2S monitor measures SO2 converted H2S through oxidation catalyst based on Ultra Violet Fluorescence. In order to reduce measurement error by water concentration fluctuatin in ambient, humidifier is set at sample line. It enables long-term stability according to stabilizing catalytic reaction

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APNA-370/CU-2 Ambient Ammonium Monitor

APNA-370/CU-2 Ambient Ammonium Monitor measures increased nitrogen oxide (NOx) raected through oxide catalyst treatment as Ammonia (NH3) concentration with chemiluminescent (CLD) method. HORIBA’s original Cross-flow modulation method ensures long-term stability and reliable measuring value with 5ppb for min. detectable sensitivity.

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Horiba CO2 Analyzer  VA-3000

VA-300 is a Co2 analyzer using Non-dispersive infrared (NDIR) modules to measure gases such as CO2

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GC 5000 BTX

The GC 5000 BTX has been developed for the continuous monitoring of emission and immission levels of organic pollutants in ambient air in the range of C4-C2. The instrument is characterized by its compact design and its outstanding detection sensitivity in the ppt range

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TE-5170 high volume (TSP) air sampler

he featuring a mass flow controller (MFC) for accurate and consistent particulate sampling.  The mass flow controller adjust the motor speed as the filter media collects particulate to  maintain a constant flow rate throughout the entire sample duration.  The system utilizes a stainless steel filter holder for use with standard 8″ x 10″ filter paper. The anodized aluminum shelter and robust electrical components allow the system to operate a continuous 24 hour sample.

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HORIBA APMC-370 Multipoint Multigas Calibrator

HORIBA Europe‘s APMC-370 is designed to calibrate gas analyzers manually, remotely controlled or automatically, installed in air pollution monitoring stations, for quality assurance in the laboratory and also for the production of gas analyzers

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IOX-370 IO-Expander

The I/O Expander takes as a central component of Immission measuring station the calculation of averages, controlling function controls and saving data. The raw data are analog, serial or read in via Ethernet. Automatically when certain events occur, a message by SMS or e-mail will be sent. The transmission of measurement data in the control center is via a modem or network. For configuration and visualization software IOVIS Lite is included. Furthermore, the stored values can with the integrated Web interface requested from any browser.

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Data acquisition with IOVIS

IOVIS is a windows software for configuration, data acquisition visualization of the I/O- Expander, and providing quick and easy access to stored data.

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IDAZRW Reporting Program

THE software IDAZRW represents an Air Quality Control System, containing functions for data transmission between the Measurement Network Control Center and connected measuring stations, for data recording into a database, for data management and analysis of periodically recorded environmental measurement data

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Data Communication

Complete Data Communication system for receiving the data from AQM monitoring stations and configuration remotely

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PG-350E Portable Gas Analyzer

The PG-350E achieves measurement performance equal to laboratory equipment in a highly portable package. As part of the PG-300 series, the PG-350E is a compact stack gas analyzer that can simultaneously measure up to five separate gas components. The approximately 20% lighter body from the previous PG-250-model is optionally protected by rugged side guards, which prevent the analyzer from shocks and damages. PG-350E covers NOX, SO2, CO, CO2 and O2 – measurement and is operating according to: DIN EN 15267 – 3, DIN EN 14181 and

approved as Standard Reference Method (SRM) for:

CO (DIN EN 15058)

O2 (DIN EN 14789)

NOX (DIN EN 14792)

The field concious design supports whatever the measurement scene is. An optional electronic cooler unit is available for long-term measurement under tough environments such as gas turbines, boilers, and incinerators facilities.

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MULTI-COMPONENT AIR QUALITY MONITOR

The  ETL  One and ETL 3000  are the  new  All-In-One  air  quality  monitoring solution  designed  and  manufactured  by  Unitec  for  indicative measurement (as defined by European Directive 2008/50/EC). The  ETL  One  is  a  multiparametric  station  equipped  with Unitec  SENS-IT  for  continuous  gas  and  dust  monitoring  with high precision and accuracy, featured by easy use and very low ownership costs.

Features

–  HIGH QUALITY DATA WITH UNITEC SENS-IT SENSORS

–  GAS PARAMETERS: CO, NO2, O3, C6H6, CH4, SO2, H2S, NH3, VOC, CO

–  DUST PARAMETERS: PM10, PM2.5, PM1.

–  DIRECT OUTDOOR INSTALLATION

–  EASY TO INSTALL, CONFIGURE AND SET UP

–  LOW PRICE

–  LOW POWER CONSUMPTION

Applications

– URBAN AIR QUALITY

–  ROADSTREET POLLUTION

– INDUSTRIAL AREA AIR QUALITY

– FENCELINE MONITORING

– LANDFILL MONITORING

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Compact multi-gas Monitoring Equipment (Non Reference Method)