Affiliation:
1. Institute Tekmologi Sepuluh Nopember
2. Politeknik Negeri Malang
3. Sepuluh Nopember Institute of Technology
Abstract
Some areas in Indonesia have difficulty accessing electricity [1]. One of the alternative is sea water battery because of its good theoretical performance and great seawater potential in Indonesia [2]. However the performance is limited by the sluggish Oxygen Reduction Reaction, therefore electrocatalyst is needed to increase the rate of reaction [2]. Oil palm empty fruit bunch carbon aerogel is one of the alternative because of its excellent electrocatalytic performance and can be made from abundant material with high content of cellulose [3]. Carbon aerogel can be obtained from pyrolizing oil palm empty fruit bunch based aerogel cellulose. Activity of the Oxygen Reduction Reaction can be determined from pyridinic N concentration in the carbon aerogel [4]. This research focuses on synthesizing nitrogen-doped carbon aerogel from oil palm empty fruit bunch and characterized its electrocatalytic performance. Research started with synthesizing cellulose aerogel with urea-ammonia crosslinking precursor and followed by pyrolysis of cellulose aerogel to carbon aerogel at 600°C. Samples were characterized using FTIR, XRD, CV, LSV, and LP. The FTIR Spectra analysis shows that the carbon aerogel was N-doped with pyridinic N. Electrochemical performance analysis in 3.5% NaCl as electrolyte shows that carbon aerogel undergoes 2-electron ORR pathway with kinetic current density of ik=0.107 mA/cm2 and current density of io=0.295 μA/cm2.
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Reference18 articles.
1. Kementerian PPN, "Peta Jalan Sustainable Development Goals (SDGs) di Indonesia," Kementeri. PPN/Bappenas, 2017.
2. Multiple roles of graphene in electrocatalysts for metal-air batteries;Deng;Catalysis Today
3. Potensi Selulosa dari Limbah Tandan Kosong Kelapa Sawit untuk Bahan Baku Bioplastik Ramah Lingkungan;Dewanti;Jurnal Teknologi Lingkungan,2018
4. Q. Lv et al., "superior metal-free catalysts for oxygen reduction," Nat. Commun., no. 189.
5. D. J. Ketenagalistrikan, "Bahan Ditjen Ketenagalistrikan Sub Sektor Ketenagalistrikan," 2022.