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Titlebook: Analysis of Reaction and Transport Processes in Zinc Air Batteries; Daniel Schröder Book 2016 Springer Fachmedien Wiesbaden 2016 Zinc Air

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https://doi.org/10.1007/978-3-658-12291-1Zinc Air Battery; Modeling and Simulation; X-ray Tomography; Imaging; Impedance Spectroscopy; Discharge P
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978-3-658-12290-4Springer Fachmedien Wiesbaden 2016
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https://doi.org/10.1007/978-3-319-12928-0e techniques for this thesis, with all parameters and experimental set-ups used, is introduced. The experimental analysis in this thesis is conducted to reveal detailed information e.g. on the cell potential and the solid and liquid species volumes in ZABs. However, not every experimental set-up is
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https://doi.org/10.1007/978-94-015-9093-8olyte. A model-based analysis is applied in this chapter of the thesis to assess the implications of flooding on the air electrode overpotential, and the oxygen distribution within the air electrode. This chapter is based on the publications [72], [73], and [74].
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https://doi.org/10.1007/978-94-015-9093-8thin the cell but is taken from the surrounding air. This requires on the one hand an open air electrode concept for ZABs, but makes on the other hand the entire system susceptible to the surrounding air [1]. Passaniti et al. present a comprehensive overview, and state experimental results on the im
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One-Dimensional Kinetic Problems,ctive subchapters aim to assess the challenges that arise from the fact that ZABs are half-open to the surrounding air. The model approach and the simulations conducted in this chapter are based on a previously published journal article [85], and are extended by several simulations.
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