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Effect of Temperature on the Performance Factors and Durability of Proton Exchange Membrane of Hydrogen Fuel Cell: A Narrative Review
Author(s) -
Md.A. Salam,
Md Shehan Habib,
Paroma Arefin,
Kawsar Ahmed,
Md. Sahab Uddin,
Tareq Hossain,
Nasrin Papri
Publication year - 2020
Publication title -
material science research india
Language(s) - English
Resource type - Journals
eISSN - 2394-0565
pISSN - 0973-3469
DOI - 10.13005/msri/170210
Subject(s) - proton exchange membrane fuel cell , durability , renewable energy , hydrogen fuel , economic shortage , hydrogen , materials science , process engineering , environmental science , nuclear engineering , fuel cells , automotive engineering , engineering , chemical engineering , electrical engineering , chemistry , composite material , linguistics , philosophy , organic chemistry , government (linguistics)
Hydrogen fuel cell technology is now being extensively researched around the world to find a reliable renewable energy source. Global warming, national calamities, fossil-fuel shortages have drawn global attention to environment friendly and renewable energy source. The hydrogen fuel cell technology most certainly fits those requisites. New researches facilitate improving performance, endurance, cost-efficiency, and overcoming limitations of the fuel cells. The various factors affecting the features and the efficiency of a fuel cell must be explored in the course of advancement in a specific manner. Temperature is one of the most critical performance-changing parameters of Proton Exchange Membrane Fuel Cells (PEMFC). In this review paper, we have discussed the impact of temperature on the efficiency and durability of the hydrogen fuel cell, more precisely, on a Proton Exchange Membrane Fuel Cell (PEMFC). We found that increase in temperature increases the performance and efficiency, power production, voltage, leakage current, but decreases mass crossover and durability. But we concluded with the findings that an optimum temperature is required for the best performance.

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