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Eksperimentalna analiza vpliva sestave reformnega plina na delovanje visokotemperaturne gorivne celice s protonsko izmenjevalno membrano
ID Kukenberger, Urban (Author), ID Sekavčnik, Mihael (Mentor) More about this mentor... This link opens in a new window

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Abstract
Ker shranjevanje in transport čistega vodika predstavljata tehnološki in logistični problem, se kot primerna alternativa ponuja metanol. S procesom reformiranja se metanol pretvori v reformni plin, ki poleg vodika vsebuje tudi nečistoče in glavni sta ogljikov dioksid (CO₂) in ogljikov monoksid (CO). Te nečistoče neugodno vplivajo na učinkovitost delovanja, zato je raziskava usmerjena v tehnologijo HT-PEMFC, ki zaradi obratovanja pri povišanih temperaturah bolje tolerira prisotnost omenjenih inhibitorjev. Izvedena je primerjava odziva dveh različnih membransko elektrodnih sklopov (MEA): s pred-dopirano in s post-dopirano PBI membrano. Glavni cilj raziskave je eksperimentalno ovrednotiti vpliv različnih deležev CO₂ in CO na elektrokemične karakteristike gorivne celice. Metodologija obsega sistematično izvajanje meritev ob dovajanju inhibitorjev pri obratovalnih temperaturah 160 °C in 170 °C. Za karakterizacijo in ločevanje notranjih mehanizmov izgub so uporabljene metode: polarizacijske krivulje, elektrokemična impedančna spektroskopija (EIS) ter analiza distribucije relaksacijskih časov (DRT).

Language:Slovenian
Keywords:HT-PEMFC, vodik, reformni plini, pred-dopirane membrane, post-dopirane membrane, inhibitorji
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[U. Kukenberger]
Year:2026
Number of pages:XX, 92 str.
PID:20.500.12556/RUL-182036 This link opens in a new window
UDC:621.357:62-622(043.2)
COBISS.SI-ID:277024259 This link opens in a new window
Publication date in RUL:23.04.2026
Views:154
Downloads:151
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Secondary language

Language:English
Title:Experimental analysis of the effect of reformate gas composition on high-temperature proton exchange membrane fuel cell performance
Abstract:
Since the storage and transport of pure hydrogen present technological and logistical challenges, methanol serves as a suitable alternative. Through the reforming process, methanol is converted into reformate gas, which, in addition to hydrogen, contains impurities, primarily carbon dioxide (CO₂) and carbon monoxide (CO). These impurities negatively affect operational efficiency, therefore, this research focuses on High Temperature Proton Exchange Membrane Fuel Cell (HT-PEMFC) technology, which better tolerates the presence of these inhibitors due to operating at elevated temperatures. A comparison of the response of two different membrane electrode assemblies (MEAs) is conducted: one with a pre-doped and the other with a post-doped PBI membrane. The main objective of the research is to experimentally evaluate the impact of varying fractions of CO₂ and CO on the electrochemical characteristics of the fuel cell. The methodology entails systematic measurements during the introduction of inhibitors at operating temperatures of 160 °C and 170 °C. To characterize and separate the internal loss mechanisms, the following methods are employed: polarization curves, electrochemical impedance spectroscopy (EIS), and distribution of relaxation times (DRT) analysis.

Keywords:HT-PEMFC, hydrogen, reformate gas, pre-doped membrane, post-doped membrane, inhibitor

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