生物炭
原材料
超级电容器
废物管理
废料
电极
环境科学
材料科学
工艺工程
热解
化学
工程类
电容
有机化学
物理化学
作者
Sudhakar Pabba,Rajkamal Balu,Arun K. Vuppaladadiyam,Ganesh Veluswamy,Manoj Kumar Jena,Ibrahim Gbolahan Hakeem,Namita Roy Choudhury,Abhishek Sharma,Michael Thomas,Aravind Surapaneni,Savankumar Patel,Kalpit Shah
出处
期刊:Energies
[Multidisciplinary Digital Publishing Institute]
日期:2025-04-07
卷期号:18 (7): 1864-1864
摘要
This work demonstrates the feasibility of using biochars derived from a variety of waste feedstocks, such as food organics and garden organics (FOGOs), garden organics (GOs), and biosolids (BSs), provided by Barwon Water (BW) and South East Water (SEW), as active electrode material for supercapacitor application. Four different biochars were produced by the co-pyrolysis of pre-treated mixed waste feedstocks, which were fabricated into a two-electrode symmetric supercapacitor set-up to evaluate their energy storage potential. Two different approaches, (i) carbon nanoparticle coating/modification and (ii) thermochemical activation, were employed to improve the electrochemical properties of the biochars. Potassium hydroxide-activated biochar derived from BW’s triple waste feedstock mixture (comprising 70% GOs, 20% FOGOs, and 10% BSs) demonstrated the highest specific capacitance (30.33 F/g at 0.1 A/g), energy density (4.21 Wh/kg), and power density (2.15 kW/kg) among the tested samples. Such waste-derived biochar offers several benefits for energy storage, including cost-efficiency and sustainable alternatives to traditional electrode materials. The biochar’s electrochemical performance can be further improved by improving the feedstock quality by different pre-treatments.
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