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exhaust emissions Applications

  • Exhaust Gas Emissions

    Hiden gas analysis systems provide for high sensitivity, wide dynamic range, real-time analysis of almost any gas/vapour. Hiden’s application specific gas analysis systems are tailored to meet the specific application requirements, & include a range of special sampling, vacuum pumping & vacuum accessories. Hot zone sampling accessories are included for evolved gas analysis from furnaces, & thermo gravimetric analysers, TGA, for example. Thermal analysis methods are vital for catalysis characterization. For thermal analysis including TPD/TPO/TPR studies, Hiden gas analysis systems include enhanced pumping for hydrogen and special close coupled sampling to the TPD/TPO/TPR reactor for optimum thermal analysis response. In Biogas applications the simultaneous analysis of H2S, CO2, water vapour & CH4 in the PPM to 100% concentration range provides vital ininformation for process development and process monitoring...

    By Hiden Analytical based in Warrington, UNITED KINGDOM.

  • Stack Testing for Rod Mill Exhaust Stack

    STEEL INDUSTRY: Conducted particulate testing and continuous emission monitoring of a rod mill exhaust stack. In addition, testing was performed to determine emissions associated with a slow cooling pen associated with ball mill production.

    By AirSource Technologies, Inc. based in Shawnee, KANSAS (USA).

  • Emissions testing for engines

    Rich-burn engine exhaust, when uncontrolled, can have wide concentration ranges and both CO and NOX can fluctuate significantly. The on-board CO dilution system will automatically set-up for optimum testing, perfect for a rich burn engine. Lean-burn engines have different exhaust characteristics, but NO2 can make up a significant portion of the total NOX measurement. The 350 measures both NO and NO2 for proper lean-burn engine set-up. Due to high concentration, replaceable interference filters keep the sensors stable and your readings accurate. High exhaust pressures and heavy particulate loading are easily controlled with the special pressure relief valve (standard) on the engine probe configuration.

    By Testo Inc. based in Sparta, NEW JERSEY (USA).

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    VOC emission treatment for flexographic industry

    As for VOC emission treatment, each Industry has its own technical requirements. As a technology supplier, we at Tecam Group are familiar with the production processes and requirements of Flexographic manufacturers, and have a deep understanding of the technology they require for exhaust air emission treatment, and specifically, for Volatile Organic Compounds VOC emission treatment.

    By Tecam Group based in Llinars del Vallès, SPAIN.

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    VOC emission treatment for chemical industry

    As for VOC emission treatment, each Industry has its own technical requirements. As a technology supplier, we at Tecam Group are familiar with the production processes and requirements of Chemical manufacturers, and have a deep understanding of the technology they require for exhaust air emission treatment, and specifically, for Volatile Organic Compounds VOC emission treatment.

    By Tecam Group based in Llinars del Vallès, SPAIN.

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    VOC emission treatment for pharmaceutical industry

    As for VOC emission treatment, each Industry has its own technical requirements. As a technology supplier, we at Tecam Group are familiar with the production processes and requirements of Pharmaceutical manufacturers, and have a deep understanding of the technology they require for exhaust air emission treatment, and specifically, for Volatile Organic Compounds VOC emission treatment.

    By Tecam Group based in Llinars del Vallès, SPAIN.

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    Emission control & air dedusting for calcination processes

    In calcination processes, solid intermediates and products are regularly handled in fine powder form. (ex: kaolin or metakaulin). There is a need to separate these very fine powders from the exhaust streams of calciners, fluid bed dryers or incinerators, often at critical temperature conditions 

    By Advanced Cyclone Systems, S. A. based in Porto, PORTUGAL.

  • Marine And Offshore Emissions Monitoring & Analysis

    The need to demonstrate environmental responsibility is key for today’s marine and offshore industries. Fuels and exhaust gas emissions are subject to international, regional and national controls and Charterers, as well as the public, demand high standards of performance and reliability.

    By Procal - Parker Hannifin Corp based in Peterborough, UNITED KINGDOM.

  • Opacity monitoring for continuous emissions

    The history of air pollution regulation dates back as far as the 13th century when in 1273, Edward I (Longshanks) of England prohibited the burning of sea coal in London. The smoke produced by its combustion was considered detrimental to human health. By the late 19th and early 20th centuries, regulations were being passed that sought to control air pollution predominantly for smoke and odour control. Traditionally, regulators were concerned with the visual impact of the discharge from a stack or chimney. Therefore, emission limits were expressed in terms of colour or opacity. Modern methods for opacity measurement still use the darkness of the stack gases to measure the amount of smoke or dust emitted within the exhaust gases.

    By DynOptic Systems Ltd based in Brackley, UNITED KINGDOM.

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    Gas monitoring instruments and systems for engine emissions measurements

    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.

    By Gasmet Technologies Oy based in Helsinki, FINLAND.

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    VOC emission treatment for automotive auxiliary industry

    As for VOC emission treatment, each Industry has its own technical requirements. As a technology supplier, we at Tecam Group are familiar with the production processes and requirements of Automotive manufacturers, and have a deep understanding of the technology they require for exhaust air emission treatment, and specifically, for Volatile Organic Compounds VOC emission treatment.

    By Tecam Group based in Llinars del Vallès, SPAIN.

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    VOC emission treatment for petrochemical industry

    As for VOC emission treatment, each Industry has its own technical requirements. As a technology supplier, we at Tecam Group are familiar with the production processes and requirements of Petrochemical manufacturers, and have a deep understanding of the technology they require for exhaust air emission treatment, and specifically, for Volatile Organic Compounds VOC emission treatment.

    By Tecam Group based in Llinars del Vallès, SPAIN.

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    Emission control & air dedusting for steel and ferrous alloys

    teel and ferrous alloys production happens in industrial manufacturing processes which involve high temperature exhaust streams, often at more than 900 ºC. Typically, the gas flows into a gas conditioning tower to cool down to approximately 200 ºC, before entering into an ESP. These flue gases from steel or ferrous alloys kilns are also very maintenance demanding for bag filters and the very small size of the particles limit the use of usual dedusters such as regular cyclones and multicyclones as pre-separators. Bag filter failure is consequently a very common problem for clients in this industry. 

    Client`s needs include a very robust dedusting system, either serving as end-stage collector avoiding the need to cool down flue gases, or strongly minimizing the loads of aggressive material to bag filters. 

    By Advanced Cyclone Systems, S. A. based in Porto, PORTUGAL.

  • PLAZKAT systems for treatment of emissions in the petrochemical industry

    Today, the reduction of atmospheric emissions produced by the gas processing and petrochemical industries is an acute problem. The most widely used technique of exhaust gas treatment comprises complete burning, even though this method does not provide an adequate degree of treatment. Therefore, in this case PLAZKAT systems are a more effective solution for removing aromatic hydrocarbon from the emissions.

    By Plasma Air Systems Corporation based in Harju Maakond, ESTONIA.

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    Emission control & air dedusting for fuel oil boilers

    For PM emission control in high temperature exhaust streams, such as fuel oil boilers, usual dedusters such as bag filters are very maintenance demanding. Particularly, diesel and fuel particulates are very sticky and clog to filter elements, unless protection reagents are used. Flue gas cooling is also needed in front of the filter when temperatures are higher than 200 ºC. On the other hand, regular cyclones and multicyclones are frequently not able to reduce emissions to present emission limits.

    By Advanced Cyclone Systems, S. A. based in Porto, PORTUGAL.

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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.

  • PLAZKAT systems for treatment of emissions from motor and railroad vehicles

    PLAZKAT Aero systems are used to treat emissions from motor and railroad vehicles. It has been found that exhaust gases from internal combustion engines (ICE) contain over 250 ingredients. Major components include carbon oxides, nitrogen oxides and hydrocarbons.

    By Plasma Air Systems Corporation based in Harju Maakond, ESTONIA.

  • Thermal structures for emissions / after treatments industry

    Every year emissions standards become more stringent. More stringent standards often require elevated exhaust temperatures. Thermal Structures products have been developed specifically to deal with these increased temperatures. By isolating and managing elevated exhaust temperatures, Thermal Structures enables operators to meet more stringent emissions standards without risking damage to sensitive components. Our products help to make environmental resposibility an easy choice.

    By Thermal Structures, Inc. based in Corona, CALIFORNIA (USA).

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    Air pollution control for the printing, laminating & converting industry

    Achieving cost effective local regulatory compliance in the printing and converting industry requires a complete understanding of both regulatory standards and the printing process. Through experience, Anguil has developed unparalleled expertise in meeting your unique requirements. We understand the effects of water versus solvent-based inks on the line, elimination of odors and toxic fumes from dryers and oven tunnel exhausts, and the capture of fugitive emissions. Over 300 successful printing installations worldwide, in plants just like yours, have shown Anguil to be a Proven Solutions Provider.

    By Anguil Environmental Systems, Inc. based in Milwaukee, WISCONSIN (USA).

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    Gas monitoring instruments and systems for semiconductor manufacturing

    In the semiconductor manufacturing industry, various perfluorinated compounds (PFCs) are used. The emissions of the PFC compounds into the ambient air are reduced by scrubbing of the exhaust gases from the process. In this process, the Gasmet™ FTIR Gas Analyzers can be used to measure the emissions into the atmosphere and also monitor the efficiency of the scrubbers. Typically monitored PFCs in the exhaust gas include carbon tetrafluoride CF4, trifluoromethane CHF3, and hexafluoroethane C2F6.

    By Gasmet Technologies Oy based in Helsinki, FINLAND.

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