• English
    • Filipino
    • 中文
    • 한국어
    • français
    • русский
  • français 
    • English
    • Filipino
    • 中文
    • 한국어
    • français
    • русский
  • Ouvrir une session
Voir le document 
  •   Accueil de DSpace
  • College of Engineering
  • Undergraduate Research
  • Special Papers
  • Bachelor of Science in Chemical Engineering
  • Voir le document
  •   Accueil de DSpace
  • College of Engineering
  • Undergraduate Research
  • Special Papers
  • Bachelor of Science in Chemical Engineering
  • Voir le document
JavaScript is disabled for your browser. Some features of this site may not work without it.

Performance investigation of membrane-less multi-anode shared cathode microbial fuel cell for bioelectricity production

Thumbnail
Voir/Ouvrir
BSChE_JanolinoAJH_2023_Ab.pdf (515.0Ko)
Downloads: 4
Request
Request a full text copy
Page views
51
Date
2023-08
Auteur
Janolino, Arvi Jay H.
Uroa, Samantha Ellen R.
Yu, Shawn Mykhyll
Thesis Adviser
Cangrejo, Bernie C.
Defense Panel Member
Pescos, Dahlia H.
Pingul-Ong, Sheila Mae
Guanzon, Nick G.
Fernandez, Stella G.
Share 
 
Metadata
Afficher la notice complète

Résumé
This study investigated the performance of the designed Membrane-Less Multi Anode Shared Cathode Microbial Fuel Cell (MMASC-MFC) for bioelectricity production under two modes of operation: recirculating and non-recirculating. The substrate utilized in this study was aquaculture wastewater and the anode effluent was entirely used as feed for cathode in sequential manner. The bioelectricity generation capacity of the MMASC-MFC was measured and quantified in terms of voltage, current, power density, and current density. Following a 5-day operational period, the MMASC-MFC operating in non-recirculating mode demonstrated notable performance as evidenced by its peak voltage, power density, and current density values of 225 mV; 3718.6 mW/m2; and, 16.532 mA/m2, respectively. In contrast, the recirculating mode exhibited maximum voltage, power density, and current density measurements of 201 mV; 2967.61 mW/m2; and 14.758 mA/m2, respectively. The MMASC-MFC demonstrated effective bioelectricity generation in both operational modes, with the non-recirculating mode exhibiting superior performance compared to the recirculating mode. The findings of this study emphasize the capacity of the MMASC-MFC system to generate bioelectricity and its sustainability for wastewater treatment and energy recovery in aquaculture sector.
Description
Abstract only
URI
https://hdl.handle.net/20.500.12852/3697
Suggested Citation
Janolino, A. J. H., Uroa, S. E. R., & Yu, S. M. (2023). Performance investigation of membrane-less multi-anode shared cathode microbial fuel cell for bioelectricity production [Unpublished bachelor's special paper]. Central Philippine University.
Type
Special paper
Sujet
Microbial fuel cells OCLC - FAST (Faceted Application of Subject Terminology); Electrophysiology OCLC - FAST (Faceted Application of Subject Terminology); Aquaculture--Waste disposal OCLC - FAST (Faceted Application of Subject Terminology); Sewage OCLC - FAST (Faceted Application of Subject Terminology); Refuse as fuel OCLC - FAST (Faceted Application of Subject Terminology); Anodes OCLC - FAST (Faceted Application of Subject Terminology); Cathodes OCLC - FAST (Faceted Application of Subject Terminology); Electrochemistry OCLC - FAST (Faceted Application of Subject Terminology); Bioreactors OCLC - FAST (Faceted Application of Subject Terminology)
Department
College of Engineering
Degree
Bachelor of Science in Chemical Engineering
Shelf Location
TP 155 .J36 2023
Physical Description
xii, 108 leaves
Collections
  • Bachelor of Science in Chemical Engineering [12]

Contactez-nous | Faire parvenir un commentaire | https://creativecommons.org/licenses/by/4.0/ Logo by HLL
Central Philippine University © 2026
Managed by 
Henry Luce III LibraryHenry Luce III Library
 

 

Links
BAHÁNDÌAN Repository GuideDisclaimerFAQsSubmit your workNews and Updates

Parcourir

Tout DSpaceCommunautés & CollectionsPar date de publicationAuteursTitresSujetsCette collectionPar date de publicationAuteursTitresSujets

Mon compte

Ouvrir une sessionS'inscrire

Statistiques

Statistiques d'usage de visualisation
CPU Henry Luce III Library

Contactez-nous | Faire parvenir un commentaire | https://creativecommons.org/licenses/by/4.0/ Logo by HLL
Central Philippine University © 2026
Managed by 
Henry Luce III LibraryHenry Luce III Library
 

 

EXTERNAL LINKS DISCLAIMER

This link is being provided as a convenience and for informational purposes only. Central Philippine University bears no responsibility for the accuracy, legality or content of the external site or for that of subsequent links. Contact the external site for answers to questions regarding its content.

If you come across any external links that don't work, we would be grateful if you could report them to the repository administrators.

Click DOWNLOAD to open/view the file. Chat Bertha to inform us in case the link we provided don't work.

Download