<p>This book is a comprehensive review of high-temperature polymer electrolyte membrane fuel cells (PEMFCs). PEMFCs are the preferred fuel cells for a variety of applications such as automobiles, cogeneration of heat and power units, emergency power and portable electronics. The first 5 chapters of
High Temperature Polymer Electrolyte Membrane Fuel Cells : Modeling, Simulation, and Segmented Measurements
โ Scribed by Christian Siegel
- Publisher
- Logos Verlag Berlin
- Year
- 2015
- Tongue
- English
- Leaves
- 182
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
A three-dimensional computational fluid dynamics model of a high temperature polymer electrolyte membrane fuel cell, employing a high temperature stable polybenzimidazole membrane electrode assembly doped with phosphoric acid, was developed and implemented using a commercially available finite element software. Three types of flow-fields were modeled and simulated. Selected simulation results at reference operating conditions were compared to the performance curves and to segmented solid-phase temperature and current density measurements. For the segmented measurements, an inhouse developed prototype cell was designed and manufactured. The segmented cell was successfully operated and the solid-phase temperature and the current density distribution were recorded, evaluated, and discussed. Sequentially scanned segmented electrochemical impedance spectroscopy measurements were performed to qualitatively support the observed trends. These measurements were used to identify and determine the causes of the inhomogeneous current density distributions. An equivalent circuit model was developed, the obtained spectra were analyzed, and the model parameters discussed. This work helps to provide a better understanding of the internal behaviour of a running high temperature polymer electrolyte membrane fuel cell and presents valuable data for modeling and simulation. For large fuel cells and complete fuel cell stacks in particular, well designed anode and cathode inlet and outlet sections are expected to aid in achieving flatter quantities distributions and in preventing hot spots over the membrane electrode assembly area, and to develop proper start-up, shut-down, and tempering concepts.
โฆ Subjects
Proton exchange membrane fuel cells-Reliability.
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<p>Topics in Number 49 include: โข In-depth review of the durability issues in PEFCs โข Understanding and mitigation of degradation in the polymer membrane and electrocatalyst โข Summary of experimental diagnostics and modeling studies of cold start โข Methods for distributed diagnostics of species, tem
<p>Topics in Number 49 include: โข In-depth review of the durability issues in PEFCs โข Understanding and mitigation of degradation in the polymer membrane and electrocatalyst โข Summary of experimental diagnostics and modeling studies of cold start โข Methods for distributed diagnostics of species, tem