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Development and characterization of a miniaturized flame ionization detector in ceramic multilayer technology for field applications

 
: Lenz, Christian; Neubert, Holger; Ziesche, Steffen; Förster, Jan; Koch, Christian; Kuipers, Winfred; Deilmann, Michael; Jurkow, Dominik

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Volltext (PDF; )

Procedia Engineering 168 (2016), S.1378-1381
ISSN: 1877-7058
Eurosensors Conference <30, 2016, Budapest>
Bundesministerium für Bildung und Forschung BMBF
Zivile Sicherheit; 13N13271
FIDEX - Autonomer Mikroflammenionisationsdetektor für den Explosionsschutz in zivilen Kanalisationsnetzen
Englisch
Zeitschriftenaufsatz, Konferenzbeitrag, Elektronische Publikation
Fraunhofer IKTS ()
flame ionisation detector; µFID; ceramic multilayer technology; LTCC; field application; portable detector

Abstract
A new type of a miniaturized flame ionization detector (μFID) for industrial and environmental field applications is presented. It is fabricated in Low Temperature Cofired Ceramics (LTCC) using multilayer technology. The developed solution integrates the fluidic structure with feed pipes, reaction chamber and exhaust and the electrical structure with electrodes for ignition and measurement as well in a monolithic ceramic component. The novel μFID was characterized using a varying methane concentration in a nitrogen sample gas. An absolute sensitivity of 9.4 mC/gC combined with a reduced gas consumption of 20 ml/min hydrogen in comparison to conventional FID systems were achieved.

: http://publica.fraunhofer.de/dokumente/N-435002.html