air sampling system Applications

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Air sampling & monitoring systems for government sector

by HI-Q Environmental Products Company     based in San Diego, CALIFORNIA (USA)

HI-Q serves the needs of various government agencies with a wide range of application-specific, customized air sampling products. HI-Q works directly with governmental agencies such as the Environmental Protection Agency (EPA), Department of Energy (DOE), Department of Defense (DOD) & Department of Homeland Security (DHS) to develop situation specific, cutting edge air sampling products to help recognize potential threats. Since September 11, 2001, HI-Q continues to have an ongoing relationship with the EPA & DHS by continually working on government-funded projects for the development of airborne biohazard collection systems.

Air sampling & monitoring systems for defense/military sector

by HI-Q Environmental Products Company     based in San Diego, CALIFORNIA (USA)

From portable hand held battery operated to rugged field deployable, military organizations worldwide rely of HI-Q air sampling systems & accessories during research, development, test and evaluation (RDT&E) and for reliable protection of personnel from Nuclear Biological Chemical Threats. HI-Q’s emergency response air sampling kits have offered the Defense & Military Industries a way of recognizing, determining and identifying the presence of harmful Biological & Nuclear Threats.

Air sampling & monitoring systems for commercial nuclear industry

by HI-Q Environmental Products Company     based in San Diego, CALIFORNIA (USA)

Since 1973, HI-Q has directly and successfully served the commercial nuclear industry worldwide with reliable, High Quality (HI-Q), continuous duty air sampling equipment, systems and accessories. For over 30 years, our products, professional design capability, and consumables have been used in remote & internal air monitoring programs including stack sampling system designs which implement the “shrouded probe” per ANSI N13.1 1999 design specifications.

Air sampling & monitoring systems for energy/utilities industry

by HI-Q Environmental Products Company     based in San Diego, CALIFORNIA (USA)

Finding efficient ways to generate, deliver and consume energy resources while reducing pollution is an ongoing quest for the Energy & Utility Industries. HI-Q has developed instrumentation geared toward monitoring emissions and the dispersal of pollutants from power plants and industrial facilities. HI-Q base-line & stack sampling equipment has been used in studies to identify and track the spread of pollutants around the globe.

Air sampling & monitoring systems for fire & police service

by HI-Q Environmental Products Company     based in San Diego, CALIFORNIA (USA)

Fire service and law enforcement workers frequently face unknown chemical and biological hazards. Internal emergency response personnel must assess the situation before committing a rescue or control team. Today, the Threat of biological agents is real.  Accurate situation assessment is of paramount importance when responding to an emergency or control situation. HI-Q’s emergency response air sampling kits have offered Fire and Police emergency response teams a way of recognizing, determining and identifying the presence of harmful Biological & Nuclear Threats.

Air sampling for emergencies

by Casella     based in Kempston, UNITED KINGDOM

Deployable battery operated monitoring systems for measurement of dusts (PM10, PM2.5), gases and vapours. Generally used for measurements of site boundaries or chemical incidents

Air sampling & monitoring systems for universities, colleges & professional schools

by HI-Q Environmental Products Company     based in San Diego, CALIFORNIA (USA)

HI-Q realizes and supports the efforts of higher education with a variety of air sampling equipment, systems and accessories.  Many of instruments are used as teaching aids for future Health Physicists, Radiation Safety Officers, Industrial Hygienist, Environmental Engineers and other industrial disciplines.

Air sampling & monitoring systems for occupational health & safety industry

by HI-Q Environmental Products Company     based in San Diego, CALIFORNIA (USA)

HI-Q considers the responsibility for worker health and safety to be of paramount importance. This is a responsibility that requires good documentation of facts. Many studies are conducted to evaluate workplace health and safety conditions as they relate to workers exposure to radiation, chemicals, and biological hazards during the normal work day. HI-Qs wide line of air sampling equipment, systems and accessories are used in the monitoring then documentation of these workplaces.

Air sampling & monitoring systems for emergency response & first responsder`s team

by HI-Q Environmental Products Company     based in San Diego, CALIFORNIA (USA)

From portable hand held battery operated to rugged field deployable air sampling systems, Emergency Response and First Responder Team’s worldwide rely of HI-Q air sampling systems & accessories during emergency response situations for reliable protection of personnel from Nuclear Biological Chemical Threats. HI-Q’s emergency response air sampling kits have offered First Responders and other Emergency Response teams a way of recognizing, determining and identifying the presence of harmful Biological & Nuclear Threats.

Air sampling & monitoring systems for biomedical, chemical & pharmaceutical industry

by HI-Q Environmental Products Company     based in San Diego, CALIFORNIA (USA)

HI-Q Environmental Product Company provides air sampling instrumentation & systems for several niche applications in a number of disciplines in the broad area of `Life Sciences`. In the Biomedical, Chemical, & Pharmaceutical industries, HI-Q has marketed instrumentation for certain applications for many years. Our ambient, in-door breathing level air samplers, commonly known in the industry as `Goose-Neck` or `Giraffe` air samplers have been instrumental in analyzing workplace exposure. HI-Q has also developed accurate pre & post heap filtration stack sampling systems to aid laboratories in inventory control & atmospheric exposure monitoring for chemicals such as Radio Iodine.

Gas monitoring instruments and systems for process NOx measurement

by Gasmet Technologies Oy     based in Helsinki, FINLAND

Nitric acid HNO3 is an important intermediate reagent for production of several important end products, such as fertilizers, explosives, dyestuffs/pigments, pesticides, pharmaceuticals, photographic materials, plastics, and synthetic fibers. At nitric acid manufacturing plants, the Gasmet™ FTIR Gas Analyzer can be used to measure several gaseous components from the process stream for purposes of process control. A single system can be used to measure the high levels of nitrogen monoxide NO and nitrogen dioxide NO2, as well as water vapor H2O, nitrous oxide N2O, carbon monoxide CO, carbon dioxide CO2 and ammonia NH3. The fixed installation products for these purposes are the Gasmet™ CEM II measurement system, and the Gasmet™ FCX Gas Analyzers, both of which utilize the FTIR measurement technique for simultaneous multicomponent analysis of the sample gas.

Capabilities of the Adsorbent Tube Injector System (ATIS™)

by Sigma-Aldrich Co., LLC     based in Bellefonte, PENNSYLVANIA (USA)

The Adsorbent Tube Injector System (ATIS) was developed at Supelco® by R&D Scientists, as a tool to assist in our comprehensive adsorbent research for thermal desorption tubes. The ATIS provides an efficient means of transferring calibration standards in either the gas or liquid phase onto the adsorbent packed tubes. The ATIS employs the technique of flash vaporization to vaporize the sample in a continuous flow of inert gas; the inert gas carries the sample to the tube. The sample pathway of the ATIS is constructed of glass and stainless steel. The calibration standard is injected by a syringe through a replaceable septum in the center of the injection glassware, which is heated. After enough time has elapsed, typically less than five minutes, the tube is removed from the ATIS and analyzed using the appropriate analytical technique for that adsorbent tube.

Gas monitoring instruments and systems for engine emissions measurements

by Gasmet Technologies Oy     based in Helsinki, FINLAND

The exhaust gas from combustion engines is a complex mixture of gases and particulate matter. The composition of the gas may change rapidly. Multicomponent analysis of exhaust gases can be performed with a Gasmet™ FTIR Gas Analyzer with a response time (T90) of one second. The winning combination is the result using of a small volume gas sample cell, a powerful sample pump and a fast detector with liquid nitrogen cooling. The analyzer, sampling system and computer can be assembled on a cart for use in a dynamometer laboratory, or the portable version can be used for roadside tests.

Measurement of methyl bromide in ambient air for monitoring workplace exposure limits in fumigation facilities

by MOCON - Baseline     based in Lyons, COLORADO (USA)

The Series 8900 Methyl Bromide Monitoring System provides an automated, direct measurement of Methyl Bromide in ambient air. This instrument can meet and exceed the requirements for ambient methyl bromide monitoring. It is utilized in fumigation facilities and industrial plants to detect potential worker exposure to methyl bromide, resulting from mechanical failure, human error or product off gassing. Multipoint sampling options allow the analyzer to monitor multiple sample locations for greater coverage.

Airport Environmental Monitoring

by Chelsea Technologies Group     based in West Molesey, UNITED KINGDOM

Water pollution from airport run-off is increasingly coming under public and government scrutiny. As environmental regulations tighten, the ability to monitor for aviation fuel contamination from runway run-off has become essential.

Monitoring sites at airports can be extremely challenging often with no power or telephone lines available and with limited access for maintenance. Chelsea’s robust UviLux Hydrocarbon Sensor with its low power consumption and high accuracy is ideally suited for this application. Installed at various locations around the airport, deployed with it’s own integrated anti-biofouling system, utilising the GSM network, the monitoring sites send data to a secure ftp site, where any internet enabled device can access the data. In this way the systems act as any early warning system allowing any hydrocarbon discharge to be detected in real-time.

Optional environmental monitoring features include remote control to allow the user to turn equipment on and off, change the sample rate and detection range. There is also a facility to allow SMS text and email alarm notifications triggered by user-defined set-points together with customised web pages, data displays and automated data downloads via an ftp server.

Airport runoff can contain high concentrations of various pollutants, in particular polycyclic aromatic hydrocarbons (PAHs) and polychlorinated biphenyls (PCBs), the environmental levels of which have to be monitored. An understanding of the magnitude of contamination due to airport runoff water is important for the effective management of airport infrastructure. Chelsea’s robust UviLux Hydrocarbon Sensor with its low power consumption and high accuracy is ideally suited to the airport environment.

Low concentrations monitoring of benzene and aromatic hydrocarbons (BTEX) for pollution control and environmental monitoring

by Environnement S.A     based in Poissy, FRANCE

With over 15 years of experience in the measurement of volatile organic compounds (VOC), Environment SA announces the VOC72M, a new generation analyzer for the measurement of BTEX compounds by gas chromatography with photo-ionization detector (PID). The VOC72M can handle up to 40 compounds and eight configurations for analysis. This compact and fully automated analyzer with wide voltage range specifications (90-240V) provides equivalent performance to the laboratory chromatographs and is particularly suited to fixe or mobile ambient air quality monitoring laboratories. The VOC72M is fitted with a PID detector new generation, much more sensitive, more stable and whose lamp does not need to be cleaned; the analyzer integrates flow control fittings a 3 levels security system built on and uses only one gas (nitrogen). This robust and low maintenance instrument performs all the functions (sampling, analysis and data management) in a simple and completely autonomous mode. It is a particular

Mercury monitoring for mercury flux measurement

by Tekran Instruments Corporation     based in Knoxville, TENNESSEE (USA)

The Tekran 2537 has been used in numerous published studies to measure the deposition or evasion of mercury from natural or contaminated surfaces (i.e. flux measurements). It is anticipated that many mercury flux measurements will be needed in the future to assess the impact of climate change on mercury cycling in the environment. There are two basic ways to do mercury flux measurements. First, the dynamic flux chamber method utilizes a custom enclosure, with controlled air flow, to measure the inlet and outlet concentration over a selected surface to determine the flux over time. Alternatively, the micrometeorological gradient method uses measured concentrations at two levels above a surface. The perfect tool for both flux measurement methods is the Tekran 1110 Two Port Sampler, so the Tekran 2537 can automatically switch between two distinct sampling points. Ask us how we can help you setup a mercury flux system.

Independent particle characterization services for environmental industries

by Particle Technology Labs     based in Downers Grove, ILLINOIS (USA)

Particle size, particle concentration and other physical characterization analyses are critical to many environmental applications. Regulatory agencies in the environmental sphere demand strict compliance to standards and discharge regulations. Physical testing of samples for parameters such as particle size and concentration can give insight to the process control engineer on how effective and compliant a discharge handling system is operating. Particulate loading from both air emissions and waste water discharge are monitored in many industry sectors and PTL testing provides valuable supporting data in this monitoring process.

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