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source emissions monitoring Applications

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    Fence-Line Monitoring of Fugitive Emissions

    The Opsis open path monitoring system is an excellent tool for monitoring air quality, fugitive emissions and gas leaks at industrial sites. By arranging monitoring paths strategically at locations outside the borderline of an industrial area, fugitive emissions and gas leaks will effectively be detected. By combining the measured gas data with meteorological parameters information such as where the pollution sources are located and the strength of the emissions can be calculated, using the EnviMan software.

    By Opsis AB based in Furulund, SWEDEN.

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    Emissions Monitoring for Airports

    Opsis systems provide high-performance monitoring of the emission activities within an airport. The rapid system allows on-line monitoring of the emissions from each aircraft at take-offs and landings, monitoring of fugitive emissions from stationary sources and differing of the airport sources from the surrounding pollution sources.

    By Opsis AB based in Furulund, SWEDEN.

  • Air monitoring equipments for material emissions and product testing

    A wide variety of products that are used in our indoor environments may emit harmful substances, raising health and safety concerns in homes, offices, public places and vehicles. There is increasing demand to reduce VOC emissions from indoor sources, backed by European legislation. REACH regulation is a European initiative for the Registration, Evaluation, Authorisation and Restriction of Chemical Substances. It was implemented to protect human health and the environment from harmful emissions of chemicals into the air we breathe. The REACH regulation places the responsibility on manufacturers and importers to test their products and provide safety information to the purchaser, end user or consumers.

    By Gradko International Ltd based in Winchester, UNITED KINGDOM.

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    Measurement solution for Perflurocarbon (PFC) emissions from aluminium industry

    The aluminium industry is the major source of perflurocarbon (PFC) emissions to the atmosphere, which are a major contributor to global warming. PFCs have greenhouse gas effects up to 10000 times that of CO2. Emissions have been reduced over the last 20 years, but further reductions are harder to achieve as all the mechanisms for PFC production are not known. In order to better understand the production of PFC on an industrial level, laboratory studies have been carried out using a small scale cell.

    By Protea Limited based in Middlewich, UNITED KINGDOM.

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    Measurement solution for accurate continuous formaldehyde measurement formaldehyde in emissions and ambient air applications

    Formaldehyde (HCHO) is the simplest aldehyde species and is present, or generated by, many sources (both natural and industrial). It is classed as a substance that is toxic and harmful to human health.

    By Protea Limited based in Middlewich, UNITED KINGDOM.

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    Ambient air and emissions monitoring of Polycyclic Aromatic Hydrocarbons – airmoC10-C20+

    Polycyclic Aromatic Hydrocarbons (PAHs) are a group of over 100 different chemicals that are known to be formed typically during incomplete combustion of organic matter at high temperature. Their major sources in the atmosphere include industrial processes, vehicle exhausts, waste incinerations, and domestic heating emissions. Due to their carcinogenic/mutagenic effects, 16 PAHs are currently listed as priority air pollutants.

    By Chromatotec Group based in Val de Virvée, FRANCE.

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    Gas Detection Solutions for GHG Monitoring

    Most sources of fugitive emissions are from multiple points rather than single point sources. So, open path area or perimeter monitoring provides more meaningful fugitive emissions data than an array of point sensors or a program of grab sampling. Point measurements may underestimate emissions because of missing locations with high gas concentrations, or conversely overestimate because they are located in areas of high concentrations. Grab sampling programs typically check only a small percentage of potential leak locations and extrapolate results to an entire facility. Wide margins of uncertainty are associated with such extrapolations. Open path monitoring provides continuously updated, real-time, integrated emissions across a facility boundary.This provides a complete picture of the fugitive emissions across that boundary,enabling identification of specific operations and times that give rise to higher emissions, and so enabling these emissions to be properly managed and controlled.

    By Boreal Laser Inc. based in Edmonton, ALBERTA (CANADA).

  • Air Quality & Emission Management Issues

    • Development of documents substantiating the volumes of emissions of pollutants into the air from stationary sources for enterprises, organizations and private entrepreneurs; • Inventory of air pollutants emissions from stationary sources; • Preparing, maintenance support of documentation for receiving a Permit for Emissions of Pollutants into the Air from Stationary Sources (PEPASS) *, issued by the Departments of Environment and Natural Resources of the regional state administrations of Ukraine; • Development and registration of dust and gas cleaning equipment passports; • Monitoring of the dust and gas cleaning equipment effectiveness; • Quality control of the implementation of projects of Maximum Permissible Emissions (MPE); • Calculation of fees for environmental pollution (environmental tax) on the basis of amount of emission of pollutants into the air.

    By PP `Tehnologia O` based in Vinnytsia, UKRAINE.

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    Fence-line Monitoring

    The OPSIS open-path monitoring system is an excellent tool for monitoring the air quality, fugitive emissions and gas leaks at industrial sites. By arranging monitoring paths strategically at locations outside the borderline of an industrial area, fugitive emissions and gas leaks will effectively be detected. By combining the measured gas data with meteorological parameters information such as where the pollution sources are located and the strength of the emissions can be calculated, using the EnviMan software.

    By Opsis AB based in Furulund, SWEDEN.

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    Single Gas Monitoring - Pipeline Monitoring

    Application: measurements of single gas species over pipeline or similar extremely long emission source. Application: measuring CH4 emissions from a natural gas pipeline through a large densely populated and congested area.

    By Boreal Laser Inc. based in Edmonton, ALBERTA (CANADA).

  • Continuous Monitoring of Wastewater

    The Sorbisense method allows for efficient monitoring of the sewage system and can help reduce costs of operation and environmental impact. The method is particularly well suited for tracking the source of periodic discharges, the identification of faulty pipe connections of the measuring of values in the recipient. The method also allows for measurements in dynamic sources - such as emissions from roads, roofs, parking lots and overflow

    By SORBISENSE based in Tjele, DENMARK.

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    Measurement solution for formaldehyde FTIR measurement

    Reciprocating internal combustion engines burning natural gas are a source of formaldehyde emissions. There are strict tolerances imposed on operators of engines to ensure that formaldehyde is removed effectively and that formaldehyde emissions are below published limits. The only instrumental method for formaldehyde monitoring is FTIR, following procedures such as US EPA Method 320 and Environment Agency TGN M22. Protea’s FTIR gas analysers have been specifically designed to follow these methods and our FTIR analyser have been proven in formaldehyde emission measurements over many years.

    By Protea Limited based in Middlewich, UNITED KINGDOM.

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    Multigas Monitoring in Various Locations

    Application: Measurements of multiple gas species in various locations. Example: Measuring NH3 emissions and CH4 emissions monitoring from agricultural sources.

    By Boreal Laser Inc. based in Edmonton, ALBERTA (CANADA).

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    Ambient air monitoring by FID detection – airmoVOC BTEX

    Urban pollution is a problem that concerns more and more people in charge of public health. In large cities, car emissions are an important source of atmospheric pollution. This problem is growing as the traffic keeps on increasing. BTEX compounds are present in car emissions. It is therefore important to be able to analyze them with short analysis cycle duration and on a continuous and automatic way.

    By Chromatotec Group based in Val de Virvée, FRANCE.

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    Mercury monitoring for aircraft research measurement

    An examination of the literature shows that the Tekran 2537 is the choice for measurements of mercury aboard research aircraft. Several research groups in Europe and North America have used the Tekran 2537 on an aircraft platform for point source plume studies, free troposphere speciation characterization, vertical profiles, characterizing emission source regions and even the stratosphere (http://www.caribic-atmospheric.com/instrum/hg.html). Normally, the Tekran 2537 requires simple modifications for aircraft studies. Ask us to point you to past research, collaborating research groups and technical information if you are interested in mercury aircraft studies.

    By Tekran Instruments Corporation based in Knoxville, TENNESSEE (USA).

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    Ambient air quality monitoring at airports

    To measure the ambient air quality at airports is a challenge. The monitoring site needs to be representative for background levels and not dependant on changes in local traffic. A large number of gaseous components need to be measured with high accuracy and high availability. The OPSIS DOAS system provides the user with a fast system that gives high availability at low cost. The impact of aircraft take-offs and landings can easily be followed on-line. The OPSIS system can also monitor fugitive emissions from other sources at the airport.

    By Opsis AB based in Furulund, SWEDEN.

  • Meteo and Wind Monitoring Wind Energy Sector

    The Renewable Energy market is expanding rapidly to reduce the dependency on traditionial energy sources and to reduce CO2 emissions in the future. Mierij Meteo offers sensors and system for many applications in the Renewable Energy market. Mierij Meteo supplies wind sensors for wind turbine control, Automatic Weathers Station for forecasting and robust and accurate sensors for research and power curve measurements (MET masts). By using Mierij Meteo sensors and systems you will ensure optimal of your wind turbines. With our MET masts you will get the most reliable data to help make your investment in renewable energy become more profitable.

    By Mierij Meteo b.v based in De Bilt, NETHERLANDS.

  • EPR waste minimisation monitoring for wastewater treatment industry

    The EPR regulations have replaced the IPPC regulations and are effective from May 2009 for qualifying companies within the industrial sector and October 2009 within the water sector. They will progressively require industry to minimise waste, reduce product loss and implement improved process control. The legislation will require the operator to self monitor processes and discharges, to demonstrate effective control with particular emphasis on EPR compliance and prevention. The regulating Agency will operate a point scoring system to assess operators under the OMA-3 program and this will be used to identify how well a company is managing their processes and possibly identify areas for improvement. The Environmental Permitting Regulations require industry to install instrumentation (MCERTS approved where available) to report water quality. EPR compliance monitoring may include automatic water sampling, flow measurement, pH, turbidity and TOC water analysis. Industry will need to identify point of source emissions, take steps to correct inefficient control and alarm unacceptable process deviations. Although the legislation focuses on environmental improvement, good housing keeping also makes a lot of sense. Optimisation of process control minimises waste, reduces treatment costs and ultimately saves money.

    By Pollution & Process Monitoring Ltd based in Sevenoaks, UNITED KINGDOM.

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