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  5. Biomass Waste Incorporation in La₀.₆Sr₀.₄Co₀.₂Fe₀.₈O₃-α˗Ba(Ce₀.₆Zr₀.₄)₀.₉Y₀.1O₃-δ composite cathode: effects on microstructural and physical properties
 
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Biomass Waste Incorporation in La₀.₆Sr₀.₄Co₀.₂Fe₀.₈O₃-α˗Ba(Ce₀.₆Zr₀.₄)₀.₉Y₀.1O₃-δ composite cathode: effects on microstructural and physical properties

Journal
Indonesian Journal of Chemistry
ISSN
2460-1578
1411-9420
Date Issued
2025
Author(s)
Ismariza Ismail
Universiti Malaysia Perlis
Nur Ashafieka Abdullah
Norizah Abd Karim
Universiti Malaysia Perlis
Shazlina Johari
Universiti Malaysia Perlis
Muhammad Mahyiddin Ramli
Faculty of Electronic Engineering & Technology
DOI
10.22146/ijc.100764
Handle (URI)
https://journal.ugm.ac.id/ijc/
https://hdl.handle.net/20.500.14170/16029
Abstract
This study explores the incorporation of rice straw as a pore-forming agent in fabricating the La₀.₆Sr₀.₄Co₀.₂Fe₀.₈O₃-α˗Ba(Ce₀.₆Zr₀.₄)₀.₉Y₀.1O₃–δ (LSCF-BCZY) composite cathode, focusing on its microstructural and physical properties. Conventional cathode materials often face challenges in balancing porosity and structural stability, with synthetic pore formers posing environmental and consistency concerns. To address these issues, rice straw was introduced into the cathode matrix at varying weight percentages, and the composites were sintered at 1000 °C. The addition of rice straw was evaluated using X-ray diffraction, scanning electron microscopy, and densitometry. The results revealed that increasing rice straw content significantly enhanced cathode porosity, rising from 5.53 to 27.74%, with a concomitant reduction in density from 1.33 to 0.93 g/cm3, while maintaining the crystalline stability of the LSCF-BCZY composite. Enhanced porosity suggests improved reactant diffusion to active sites, potentially benefiting the cell's performance in future energy applications. This work highlights the potential of agricultural waste as a sustainable and effective alternative to synthetic pore formers in cathode fabrication.
Subjects
  • Biomass waste

  • Composite cathode

  • Microstructural prope...

  • Pore former

  • Protonic ceramic fuel...

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Biomass_Waste_Incorporation_in_La06Sr04Co02Fe08O3-.pdf (1.14 MB)
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