生物炭
超级电容器
热解
电极
热解炭
化学工程
材料科学
氮气
制浆造纸工业
化学
废物管理
电容
工程类
有机化学
物理化学
作者
Willem Vercruysse,R.R. Muniz,Bjorn Joos,An Hardy,Hamid Hamed,Derese Desta,H.‐G. Boyen,Sonja Schreurs,Mohammadhosein Safari,Wouter Marchal,Dries Vandamme
标识
DOI:10.1016/j.biortech.2024.130417
摘要
Global food waste emits substantial quantities of nitrogen to the environment (6.3 Mtons annually), chicken feather (CF) waste is a major contributor to this. Pyrolysis, in particular co-pyrolysis of nitrogen-rich and lignocellulosic waste streams is a promising strategy to improve the extent of pyrolytic nitrogen retention by incorporating nitrogen in its solid biochar structure. As such, this biochar can serve as a precursor for nitrogen-enriched activated carbons for application in supercapacitors. Therefore, this study investigates the co-pyrolysis of CF with macadamia nut shells (MNS) to create nitrogen-rich activated carbons. Co-pyrolysis increased nitrogen retention during pyrolysis from 9 % to 18 % compared to CF mono-pyrolysis, while the porosity was maintained. After removing undesirable inorganic impurities by dilute acid washing, this led to a specific capacitance of 21F/g using a scan rate of 20 mV/s. Finally, cycling stability tests demonstrated good stability with 73 % capacitance retention after 10 000 cycles.
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