Biochar from olive tree twigs and spent malt rootlets as electrodes in Zn-air batteries

被引:3
|
作者
Kottis, Theodoros [1 ]
Soursos, Nikolaos [1 ]
Govatsi, Katerina [2 ]
Sygellou, Lamprini [3 ]
Vakros, John [1 ]
Manariotis, Ioannis D. [4 ]
Mantzavinos, Dionissios [1 ]
Lianos, Panagiotis [1 ]
机构
[1] Univ Patras, Dept Chem Engn, Patras 26500, Greece
[2] Univ Patras, Sch Nat Sci, Lab Electron Microscopy & Microanal, Patras 26500, Greece
[3] Inst Chem Engn Sci FORTH ICE HT, Fdn Res & Technol, Stadiou Str Platani,POB 1414, Patras 26500, Greece
[4] Univ Patras, Dept Civil Engn, Environm Engn Lab, Univ Campus, Patras 26500, Greece
关键词
Biochar; Biochar activation; Olive -Tree Twigs; Spent Malt Rootlets; Zn-air batteries; Electrocatalysis; CO-DOPED BIOCHAR; PERFORMANCE; ACTIVATION; STRATEGY; BIOMASS;
D O I
10.1016/j.jcis.2024.03.114
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Biochars, i.e. porous carbons obtained by pyrolysis of biomass, can act as electrocatalysts for oxygen evolution and oxygen reduction reaction. In the present work, two biochars have been prepared by using materials of completely different biomass origin: olive-tree twigs and spent malt rootlets (brewery wastes). Both biomass species were subjected to pyrolysis under limited oxygen supply and then they were activated by mixing with KOH and pyrolysis again. The obtained biochars were characterized by several techniques in order to determine their structural characteristics and the composition of their active components. Despite their different origin, the two biochars demonstrated similar structural and compositional characteristics thus highlighting the importance of the pyrolysis and activation procedure. Both biochars were used as electrocatalysts in the operation of rechargeable Zn-air batteries, where they also demonstrated similar electrocatalytic capacities with only a small advantage gained by olive -tree -twigs biochar. Compared to bare nanoparticulate carbon (carbon black), both biochars demonstrated a marked advantage towards oxygen evolution reaction.
引用
收藏
页码:10 / 18
页数:9
相关论文
共 50 条
  • [31] Recent Advances toward the Rational Design of Efficient Bifunctional Air Electrodes for Rechargeable Zn-Air Batteries
    Meng, Fan-Lu
    Liu, Kai-Hua
    Zhang, Yan
    Shi, Miao-Miao
    Zhang, Xin-Bo
    Yan, Jun-Min
    Jiang, Qing
    SMALL, 2018, 14 (32)
  • [32] Influence of Al Alloying on the Electrochemical Behavior of Zn Electrodes for Zn-Air Batteries With Neutral Sodium Chloride Electrolyte
    Durmus, Yasin Emre
    Guerrero, Saul Said Montiel
    Tempel, Hermann
    Hausen, Florian
    Kungl, Hans
    Eichel, Ruediger-A
    FRONTIERS IN CHEMISTRY, 2019, 7
  • [33] Spent alkaline battery-derived manganese oxides as efficient oxygen electrocatalysts for Zn-air batteries
    Meng, Jing
    Liu, Fangming
    Yan, Zhenhua
    Cheng, Fangyi
    Li, Fujun
    Chen, Jun
    INORGANIC CHEMISTRY FRONTIERS, 2018, 5 (09): : 2167 - 2173
  • [34] Constructing the Triple-Phase Boundaries of Integrated Air Electrodes for High-Performance Zn-Air Batteries
    Shang, Wenxu
    Yu, Wentao
    Ma, Yanyi
    He, Yi
    Zhao, Zhongxi
    Ni, Meng
    Zhao, Hong
    Tan, Peng
    ADVANCED MATERIALS INTERFACES, 2021, 8 (21)
  • [35] Toward Self-Supported Bifunctional Air Electrodes for Flexible Solid-State Zn-Air Batteries
    Wang, Xixi
    Xu, Lei
    Zhou, Chuan
    Wong, Ngie Hing
    Sunarso, Jaka
    Ran, Ran
    Zhou, Wei
    Shao, Zongping
    SMALL SCIENCE, 2023, 3 (10):
  • [36] Semi-flowable Zn semi-solid electrodes as renewable energy carrier for refillable Zn-Air batteries
    Perez-Antolin, Daniel
    Schuhmann, Wolfgang
    Palma, Jesus
    Ventosa, Edgar
    JOURNAL OF POWER SOURCES, 2022, 536
  • [37] Recent advances in air electrodes for Zn-air batteries: electrocatalysis and structural design (vol 4, pg 945, 2017)
    Cai, Xiaoyi
    Lai, Linfei
    Lin, Jianyi
    Shen, Zexiang
    MATERIALS HORIZONS, 2018, 5 (03) : 577 - 577
  • [38] Scalable Fabrication of Nanoporous Carbon Fiber Films as Bifunctional Catalytic Electrodes for Flexible Zn-Air Batteries
    Liu, Qin
    Wang, Yaobing
    Dai, Liming
    Yao, Jiannian
    ADVANCED MATERIALS, 2016, 28 (15) : 3000 - 3006
  • [39] Toward Flexible and Wearable Zn-Air Batteries from Cotton Textile Waste
    Huang, Xingyang
    Liu, Jie
    Ding, Jia
    Deng, Yida
    Hu, Wenbin
    Zhong, Cheng
    ACS OMEGA, 2019, 4 (21): : 19341 - 19349
  • [40] ZnMn2O4/Carbon Composite Recycled from Spent Zinc-Carbon Batteries for Zn-Air Battery Applications
    Nivedha, L. K.
    Murugaiah, Dhinesh Kumar
    Kandregula, Ganapathi Rao
    Murugan, Raja
    Ramanujam, Kothandaraman
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2022, 169 (10)