石油焦
材料科学
石墨
电解
储能
原材料
焦炭
碳纤维
石墨烯
环境友好型
电化学
化学工程
废物管理
纳米技术
电极
冶金
复合数
化学
复合材料
有机化学
物理化学
功率(物理)
工程类
物理
生物
电解质
量子力学
生态学
作者
Feng Zhu,Wei‐Li Song,Jianbang Ge,Zhe Wang,Zheng Huang,Shijie Li,Mingyong Wang,Haibin Zuo,Shuqiang Jiao,Hongmin Zhu
标识
DOI:10.1002/advs.202205269
摘要
The petroleum coke (PC) has been widely used as raw materials for the preparation of electrodes in aluminium electrolysis and lithium-ion batteries (LIB), during which massive CO2 gases are produced. To meet global CO2 reduction, an environmentally friendly route for utilizing PC is highly required. Here, a simple, scalable, catalyst-free process that can directly convert high-sulfur PC into graphitic nanomaterials under cathodic polarization in molten CaCl2 -LiCl at mild temperatures is proposed. The energy consumption of the proposed process is calculated to be 3 627.08 kWh t-1 , half that of the traditional graphitization process (≈7,825.21 kWh t-1 graphite). When applied as a negative electrode for LIBs, the as-converted graphite materials deliver a competitive specific capacity of ≈360 mAh g-1 (0.2 C) compared with commercial graphite. This approach has great potential to scale up for sustainably converting low-value PC into high-quality graphite for energy storage.
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