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Pregled bibliografske jedinice broj: 1198144

Improvement of under-the-rib oxygen concentration and water removal in PEMFCs through 3D metal printed novel flow fields


Chen, Gaojian; Shi, Weidong; Xuan, Jin; Penga, Željko; Xu, Qian; Guo, Hang; Su, Huaneng; Xing, Lei
Improvement of under-the-rib oxygen concentration and water removal in PEMFCs through 3D metal printed novel flow fields // AIChE Journal, N/A (2022), N/A-N/A doi:10.1002/aic.17758 (međunarodna recenzija, članak, znanstveni)


CROSBI ID: 1198144 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Improvement of under-the-rib oxygen concentration and water removal in PEMFCs through 3D metal printed novel flow fields

Autori
Chen, Gaojian ; Shi, Weidong ; Xuan, Jin ; Penga, Željko ; Xu, Qian ; Guo, Hang ; Su, Huaneng ; Xing, Lei

Izvornik
AIChE Journal (0001-1541) N/A (2022); N/A-N/A

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
PEM fuel cell ; Flow field ; Auxiliary channel ; Arrayed hole ; 3D printing

Sažetak
The porous electrode under the rib area suffers from lower local oxygen concentration and more severe water flooding than that under the channel, which significantly affect the performance of PEMFCs. To improve the oxygen concentration and water drainage under the rib, a series of novel flow fields with auxiliary channels equipped with through-plane arrayed holes were manufactured by 3D metal printing, and the cell performance, ohmic resistance and pressure drop were experimentally studied, respectively. The novel fields were based on the sophisticated modification of traditional serpentine and parallel flow fields, that significantly improved the cell performance at high current density with an optimal number or length of the auxiliary channels, owing to the tradeoff between the electric resistance and mass transfer under the rib. This novel flow field design solved the trilemma of performance, pressure drop and manufacture feasibility through the implementation of 3D printing technology.

Izvorni jezik
Engleski

Znanstvena područja
Kemijsko inženjerstvo, Strojarstvo



POVEZANOST RADA


Projekti:
EK-KF-KK.01.1.1.01.0003 - STIM-REI (STIM-REI) (Bonačić-Koutecky, Vlasta; Smital, Tvrtko; Orlić, Sandi, EK - KK.01.1.1.01) ( CroRIS)

Ustanove:
Fakultet elektrotehnike, strojarstva i brodogradnje, Split

Profili:

Avatar Url Željko Penga (autor)

Poveznice na cjeloviti tekst rada:

doi aiche.onlinelibrary.wiley.com

Citiraj ovu publikaciju:

Chen, Gaojian; Shi, Weidong; Xuan, Jin; Penga, Željko; Xu, Qian; Guo, Hang; Su, Huaneng; Xing, Lei
Improvement of under-the-rib oxygen concentration and water removal in PEMFCs through 3D metal printed novel flow fields // AIChE Journal, N/A (2022), N/A-N/A doi:10.1002/aic.17758 (međunarodna recenzija, članak, znanstveni)
Chen, G., Shi, W., Xuan, J., Penga, Ž., Xu, Q., Guo, H., Su, H. & Xing, L. (2022) Improvement of under-the-rib oxygen concentration and water removal in PEMFCs through 3D metal printed novel flow fields. AIChE Journal, N/A, N/A-N/A doi:10.1002/aic.17758.
@article{article, author = {Chen, Gaojian and Shi, Weidong and Xuan, Jin and Penga, \v{Z}eljko and Xu, Qian and Guo, Hang and Su, Huaneng and Xing, Lei}, year = {2022}, pages = {N/A-N/A}, DOI = {10.1002/aic.17758}, keywords = {PEM fuel cell, Flow field, Auxiliary channel, Arrayed hole, 3D printing}, journal = {AIChE Journal}, doi = {10.1002/aic.17758}, volume = {N/A}, issn = {0001-1541}, title = {Improvement of under-the-rib oxygen concentration and water removal in PEMFCs through 3D metal printed novel flow fields}, keyword = {PEM fuel cell, Flow field, Auxiliary channel, Arrayed hole, 3D printing} }
@article{article, author = {Chen, Gaojian and Shi, Weidong and Xuan, Jin and Penga, \v{Z}eljko and Xu, Qian and Guo, Hang and Su, Huaneng and Xing, Lei}, year = {2022}, pages = {N/A-N/A}, DOI = {10.1002/aic.17758}, keywords = {PEM fuel cell, Flow field, Auxiliary channel, Arrayed hole, 3D printing}, journal = {AIChE Journal}, doi = {10.1002/aic.17758}, volume = {N/A}, issn = {0001-1541}, title = {Improvement of under-the-rib oxygen concentration and water removal in PEMFCs through 3D metal printed novel flow fields}, keyword = {PEM fuel cell, Flow field, Auxiliary channel, Arrayed hole, 3D printing} }

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus


Citati:





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