ch4 gas measurement Applications

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Single Gas Monitoring - Pipeline Monitoring

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

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.

Single Gas Monitoring - Variable Locations

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

Application: Measurements of a single gas in variable locations. Example: the detection of CH4 hotspots in landfill.

Integrated real-time gas analysis solution for emissions industry

by CIC Photonics, Inc.     based in Albuquerque, NEW MEXICO (USA)

Pollutant emissions from industrial smoke stacks are a major national concern due to both health concerns and climate change. As a consequence, there are at least tens of gas analyzer manufacturers in the U.S. alone that compete in that market and have done so for years. What CIC Photonics brings to that competitive field is its expertise derived from its Combustion Efficiency Solution and its high performance IRGAS Systems. The IRGAS-CEM provides real-time and simultaneous measurements of the multitude of toxic combustion products, including CO, CO2, NOx, SOx, CH4, CxHy, H2S, etc. The EP-IRGAS-SPA is also applicable for fast time responses.

Multigas Monitoring in Various Locations

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

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

Biogas Monitoring for the Renewable Energy Industry

by AppliTek NV - Environmental Analysis Division     based in Nazareth, BELGIUM

AppliTek`s solutions in this field concentrate on the process efficiency of anaerobic digesters. Many existing digesters give unnecessary problems, which arise due to inadequacies in the process or process control system. AppliTek has developed a unique instrument to measure and control the key processes in the anaerobic fermentation. Compact gas analyzers with proprietary technology can be implemented to check the biogas yield.

Parameters: Volatile Fatty Acids - Alkalinity - pH - Bicarbonate

Gas parameters: CH4 - CO2 - O2 - H2S

Biogas monitoring

by Banner Engineering Corp.     based in Diegem, BELGIUM

meet governmental regulations, it is important to accurately monitor methane gas production, removal, venting, and burning. Knowledge of both methane flow and temperature at the flare stack can define when CH4 is being emitted to the atmosphere. The DX99 FlexPower™ Nodes can be installed in EX area with a Zone 0 ATEX certification. Use the analogue input to determine methane production levels and flow and use the thermocouple model to measure the temperature of a vent to verify the continuous combustion of methane.

Sensor for Biogas

by Edinburgh Instruments Ltd     based in Livingston, UNITED KINGDOM

Anaerobic Digestion plants produce various gas components from a source material (or feedstock) that can be composed either solely or as a mixture of slurries, purpose-grown crops, food and organic waste material. The composition of the gas produced varies depending upon the feedstock and the Anaerobic digestion process itself. As a consequence, it is normal to measure various components of the resultant gas produced to evaluate the efficiency of the Anaerobic Digestion process. Furthermore, due to the flammable nature of Methane (CH4), and the risk of asphyxiation, most plants feature ambient air monitoring to protect personnel from any unplanned accumulation of leaked gas. CH4 is the gas component fuel, which is the intended end product of the anaerobic digestion process. In biogas plants, the concentration of CH4 in a working plant varies between 50%-75%, which is well above the Upper Explosive Limit (UEL).

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