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      •   صفحهٔ اصلی
      • نشریات انگلیسی
      • Iranian Journal of Hydrogen & Fuel Cell
      • Volume 3, Issue 3
      • مشاهده مورد
      •   صفحهٔ اصلی
      • نشریات انگلیسی
      • Iranian Journal of Hydrogen & Fuel Cell
      • Volume 3, Issue 3
      • مشاهده مورد
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      Experimental Study on a 1000W Dead-End H2/O2 PEM Fuel Cell Stack with Cascade Type for Improving Fuel Utilization

      (ندگان)پدیدآور
      Alizadeh, EbrahimKhorshidian, MajidMasrori Saadat, Seyed HosseinRahgoshay, Seyed MajidRahimi-Esbo, Mazaher
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      نوع مدرک
      Text
      Research Paper
      زبان مدرک
      English
      نمایش کامل رکورد
      چکیده
      Proton exchange membrane fuel cells (PEMFCs) with a dead-ended anode and cathode can obtain high hydrogen and oxygen utilization by a comparatively simple system. Nevertheless, the accumulation of the water in the anode and cathode channels might cause a local fuel starvation degrading the performance and durability of PEMFCs. In this study, a brand new design for a polymer electrolyte membrane (PEM) fuel-cell stack is presented which can achieve higher fuel utilization without using hydrogen and oxygen recirculation devices such as hydrogen pumps or ejectors that consume parasitic power and require additional control schemes. In this manuscript the basic concept of the proposed design is presented. Concept of the proposed design is to divide the cells of a stack into several stages by conducting the outlet gas of each stage to a separator and reentering it into the next stage in a multistage construction of anode and cathode electrodes. In this design, a higher gaseous flow rate is maintained at the outlet of the cells, even under dead-end conditions resulting in a reduced purge-gas emissions by avoiding the accumulation of liquid water in the cells. Moreover, fluctuation of voltage in hydrogen and oxygen cells at dead-end mode is investigated. Furthermore the utilization factor of hydrogen and oxygen at different power is presented. Overall, the result shows that the proposed design has the same polarization curve as open-end mode one, resulting in a higher PEMFC performance.
      کلید واژگان
      Purge time
      Cascade type stack
      Utilization factor
      Polarization curve
      Mechanical Engineering

      شماره نشریه
      3
      تاریخ نشر
      2016-08-01
      1395-05-11
      ناشر
      Iranian Research Organization for Science and Technology
      سازمان پدید آورنده
      Malek Ashtar University of Technology, Fuel Cell Technology Research Laboratory
      Malek Ashtar University of Technology, Fuel Cell Technology Research Laboratory
      Malek Ashtar University of Technology, Fuel Cell Technology Research Laboratory
      Malek Ashtar University of Technology, Fuel Cell Technology Research Laboratory
      Malek Ashtar University of Technology, Fuel Cell Technology Research Laboratory

      شاپا
      2383-160X
      2383-1618
      URI
      https://dx.doi.org/10.22104/ijhfc.2017.421
      http://ijhfc.irost.ir/article_421.html
      https://iranjournals.nlai.ir/handle/123456789/330158

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