Direct mass flow measurement of Syngas

| Information and Communication Technology

TGF600 Thermal Mass Flow Meters
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The TGF600 thermal mass flow meter from Bell Flow Systems can be used for the direct flow measurement of Syngas in generators and other applications.

Syngas (synthesis gas) is a combination of hydrogen, carbon monoxide, small quantities of carbon dioxide and other trace gases. Syngas is the result of gasification of various carbon-containing fuels to produce a gaseous product with heating value. This is what we know as Syngas.

To meter the flow of Syngas, the use of thermal mass flow meters is considered to be the most suitable and TGF600 flow meters from Bell Flow Systems are being fitted to environmentally sound Syngas engines manufactured in the UK. They generate substantially less noise and lower emissions than equivalent diesel engines, as a result creating clean, on-demand electricity. TGF600 flow meters accurately measure the consumption of Syngas by the generators.

Bell Flow Systems offers the new TGF600 Series range of air/gas flow meters for Syngas. Combining state-of-the-art electronics technology with application-proven precision flow sensors, the TGF600 is designed for extremely demanding plant operating environments.

Why Use Thermal Mass Flow Meters For Syngas?

Incorporating Comate’s latest sensor filming technology, the TGF600 offers stable flow rate measurement as low as 0.3 Nm/s in pipe sizes from DN25 to DN6000. Models in the range are designed to provide temperature-compensated direct mass flow measurement of air and gases both in small and large diameter pipes, stacks and ducts in power generation, industrial air and gas supply, and compressed air monitoring. This is in addition to a wide variety of industrial applications.

The range features the TPA600 circuit board, which introduces faster and more powerful processing than its predecessors. Plus clean two-line LCD readouts show comprehensive process information to users with both analogue and digital signal outputs of flow rate and sensor status diagnostics.

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