Cite
Investigation of electrolyte forced flow for alkaline water electrolysis using computational fluid dynamics
MLA
UCL - SST/IMMC/IMAP - Materials and process engineering, et al. Investigation of Electrolyte Forced Flow for Alkaline Water Electrolysis Using Computational Fluid Dynamics. 2022. EBSCOhost, widgets.ebscohost.com/prod/customlink/proxify/proxify.php?count=1&encode=0&proxy=&find_1=&replace_1=&target=https://search.ebscohost.com/login.aspx?direct=true&site=eds-live&scope=site&db=edsoai&AN=edsoai.on1372921100&authtype=sso&custid=ns315887.
APA
UCL - SST/IMMC/IMAP - Materials and process engineering, Georgiadis, C., Saraiva Rocha da Silva, F., Lambrechts, J., Proost, J., & 23rd World Hydrogen Energy Conference (WHEC-2022). (2022). Investigation of electrolyte forced flow for alkaline water electrolysis using computational fluid dynamics.
Chicago
UCL - SST/IMMC/IMAP - Materials and process engineering, Christos Georgiadis, Fernando Saraiva Rocha da Silva, Jonathan Lambrechts, Joris Proost, and 23rd World Hydrogen Energy Conference (WHEC-2022). 2022. “Investigation of Electrolyte Forced Flow for Alkaline Water Electrolysis Using Computational Fluid Dynamics.” http://widgets.ebscohost.com/prod/customlink/proxify/proxify.php?count=1&encode=0&proxy=&find_1=&replace_1=&target=https://search.ebscohost.com/login.aspx?direct=true&site=eds-live&scope=site&db=edsoai&AN=edsoai.on1372921100&authtype=sso&custid=ns315887.