Matches in SemOpenAlex for { <https://semopenalex.org/work/W2883787478> ?p ?o ?g. }
- W2883787478 endingPage "709" @default.
- W2883787478 startingPage "699" @default.
- W2883787478 abstract "Abstract The recycling of proton exchange membranes is very important based on both economic and environmental issues. In this study, recast Nafion membranes from commercial Nafion membrane and also used membrane electrode assemblies (MEAs) sources were prepared using different recycling techniques. The dissolution methods were performed in a high temperature and pressure reactor. At first, the three different dissolution methods were used to resolve the Nafion membranes and then the obtained solutions were cast. The prepared different recast Nafion membranes were evaluated by water uptake measurement, swelling behaviors, ion exchange capacity, proton conductivity at different temperatures, scanning electron microscopy, chemical and mechanical stability. The results showed the different recast Nafion membranes had appropriate water uptake, proton conductivity, chemical and mechanical stability level than commercial Nafion membrane. In the next step, the optimum method was chosen and used for recycling of the membrane of the well-worn membrane electrode assembly (MEA). The same characterization methods were used for characterization of recycled Nafion membrane. The physicochemical characterization results of recycled Nafion membrane showed promising characteristics. The comparison of results showed the recycled Nafion membrane from used MEA had the same characteristics as recast Nafion membrane." @default.
- W2883787478 created "2018-08-03" @default.
- W2883787478 creator A5040414749 @default.
- W2883787478 creator A5065133026 @default.
- W2883787478 creator A5081292717 @default.
- W2883787478 date "2018-10-01" @default.
- W2883787478 modified "2023-10-12" @default.
- W2883787478 title "Preparation, characterization, and electrochemical properties investigation of recycled proton exchange membrane for fuel cell applications" @default.
- W2883787478 cites W1168370331 @default.
- W2883787478 cites W1540003881 @default.
- W2883787478 cites W1963637964 @default.
- W2883787478 cites W1975324969 @default.
- W2883787478 cites W1977545971 @default.
- W2883787478 cites W1984091184 @default.
- W2883787478 cites W1990166752 @default.
- W2883787478 cites W1994655256 @default.
- W2883787478 cites W1998668084 @default.
- W2883787478 cites W2010922597 @default.
- W2883787478 cites W2015631884 @default.
- W2883787478 cites W2016741445 @default.
- W2883787478 cites W2021222315 @default.
- W2883787478 cites W2022624667 @default.
- W2883787478 cites W2025256095 @default.
- W2883787478 cites W2027076716 @default.
- W2883787478 cites W2027589874 @default.
- W2883787478 cites W2029898176 @default.
- W2883787478 cites W2036930712 @default.
- W2883787478 cites W2040966524 @default.
- W2883787478 cites W2041907375 @default.
- W2883787478 cites W2048092956 @default.
- W2883787478 cites W2051073669 @default.
- W2883787478 cites W2067126321 @default.
- W2883787478 cites W2067719646 @default.
- W2883787478 cites W2068014967 @default.
- W2883787478 cites W2069484415 @default.
- W2883787478 cites W2071684704 @default.
- W2883787478 cites W2072234787 @default.
- W2883787478 cites W2073962729 @default.
- W2883787478 cites W2074859802 @default.
- W2883787478 cites W2078220681 @default.
- W2883787478 cites W2084567778 @default.
- W2883787478 cites W2086588513 @default.
- W2883787478 cites W2086624029 @default.
- W2883787478 cites W2094989924 @default.
- W2883787478 cites W2139741171 @default.
- W2883787478 cites W2173686135 @default.
- W2883787478 cites W2211563576 @default.
- W2883787478 cites W2227358328 @default.
- W2883787478 cites W2292938450 @default.
- W2883787478 cites W2338584301 @default.
- W2883787478 cites W2346167435 @default.
- W2883787478 cites W2393407731 @default.
- W2883787478 cites W2402849770 @default.
- W2883787478 cites W2504127020 @default.
- W2883787478 cites W2515582193 @default.
- W2883787478 cites W2558978929 @default.
- W2883787478 cites W2575370596 @default.
- W2883787478 cites W2594431876 @default.
- W2883787478 cites W2622546613 @default.
- W2883787478 cites W2624161238 @default.
- W2883787478 cites W2735760996 @default.
- W2883787478 cites W2762387097 @default.
- W2883787478 cites W2794359851 @default.
- W2883787478 cites W4244164202 @default.
- W2883787478 cites W778978253 @default.
- W2883787478 doi "https://doi.org/10.1016/j.energy.2018.07.123" @default.
- W2883787478 hasPublicationYear "2018" @default.
- W2883787478 type Work @default.
- W2883787478 sameAs 2883787478 @default.
- W2883787478 citedByCount "24" @default.
- W2883787478 countsByYear W28837874782018 @default.
- W2883787478 countsByYear W28837874782019 @default.
- W2883787478 countsByYear W28837874782020 @default.
- W2883787478 countsByYear W28837874782021 @default.
- W2883787478 countsByYear W28837874782022 @default.
- W2883787478 countsByYear W28837874782023 @default.
- W2883787478 crossrefType "journal-article" @default.
- W2883787478 hasAuthorship W2883787478A5040414749 @default.
- W2883787478 hasAuthorship W2883787478A5065133026 @default.
- W2883787478 hasAuthorship W2883787478A5081292717 @default.
- W2883787478 hasConcept C121332964 @default.
- W2883787478 hasConcept C127413603 @default.
- W2883787478 hasConcept C132319479 @default.
- W2883787478 hasConcept C147789679 @default.
- W2883787478 hasConcept C171250308 @default.
- W2883787478 hasConcept C17525397 @default.
- W2883787478 hasConcept C185592680 @default.
- W2883787478 hasConcept C192562407 @default.
- W2883787478 hasConcept C2780841128 @default.
- W2883787478 hasConcept C2987658370 @default.
- W2883787478 hasConcept C41625074 @default.
- W2883787478 hasConcept C42360764 @default.
- W2883787478 hasConcept C52859227 @default.
- W2883787478 hasConcept C54516573 @default.
- W2883787478 hasConcept C55493867 @default.
- W2883787478 hasConcept C62520636 @default.
- W2883787478 hasConceptScore W2883787478C121332964 @default.
- W2883787478 hasConceptScore W2883787478C127413603 @default.