热解
可再生能源
牛仔布
电池(电)
热解炭
织物
废物管理
材料科学
碳纤维
资源回收
能量回收
法拉第效率
储能
环境科学
活性炭
城市固体废物
生产(经济)
可再生燃料
制浆造纸工业
电化学
可再生资源
废物处理
生物燃料
碳化
体积热力学
木片
过程(计算)
作者
Eun-Jong Kim,Sam Yeol Lim,Sung-kon Kim,Jechan Lee
出处
期刊:Chemsuschem
[Wiley]
日期:2025-11-19
卷期号:: e202501873-e202501873
标识
DOI:10.1002/cssc.202501873
摘要
The growing volume of textile waste, driven by fast fashion, presents significant environmental and economic challenges owing to limited recycling and high landfilling rates. This study introduces a sustainable upcycling strategy that converts denim waste (textile waste surrogate) into functional carbon materials for lithium‐ion battery (LIB) anodes, using pyrolysis followed by KOH activation. The pyrolysis process yielded 13 wt% gas, 63 wt% liquid, and 24 wt% solid residues. The activated denim‐waste‐derived carbon electrode (DWCE) exhibited excellent electrochemical performance, including an initial discharge capacity of 141.6 mAh/g, high rate capability (38.3% capacity retention at 1000 mA/g), and stable cycling over 200 cycles. Material characterizations revealed a high surface area (691.4 m 2 /g), enhanced graphitization, and nitrogen doping, which contributed to improved Li‐ion storage and conductivity. Additionally, the pyrolytic byproducts could serve as renewable energy sources, reducing the dependence on external energy. Compared with traditional disposal methods, denim pyrolysis can offer reduced CO 2 emissions and economic advantages with DWCE production costs. Overall, this study highlights the potential of denim waste as a sustainable, low‐cost precursor for high‐performance LIB anodes, contributing to a circular economy and carbon‐reduction goals.
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