首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Graphitic carbon materials extracted from spent carbon cathode of aluminium reduction cell as anodes for lithium ion batteries: Converting the hazardous wastes into value-added materials
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Graphitic carbon materials extracted from spent carbon cathode of aluminium reduction cell as anodes for lithium ion batteries: Converting the hazardous wastes into value-added materials

机译:从铝碳阴极中提取的石墨碳材料作为锂离子电池的阳极:将危险废物转化为增值材料

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Spent carbon cathode (SCC), a hazardous solid waste generated from the primary aluminium industry, is successfully purified by a graphitization process to eliminate the environmental damage. The purity of as-abtained carbon from SCC increases from 63.64% to 100% and shows uniform and high graphitization, the fine graphitized carbon with defects, the partial hollow structures, the slightly expanded interlamellar spacing (0.34-0.37 nm) and a small amount of graphene structure. When SCC-2600 is used as an anode material for LIBs, it shows good reversible capacity (460.1 mAh g(-1) at 0.1 C after 50 cycles), excellent rate capability (430.2, 388.6, 353.5, 287.3, 111.1 and 68.2 mAh g(-1) at 0.1, 0.5, 1, 2, 5, and 10 C. respectively). And then, SCC-2600 reveals a potential high-capacity anode material for LIBs in comparation with the low voltage plateaus (<0.3V) of graphite. Therefore, it provides a new way to recycle and utilize the hazardous solid waste. What's more, the higher capacity and the unique discharge plateaus of SCC-2600 can be explicated by the multi-structure assisted graphite/graphene co-intercalation lithiation mechanism. (C) 2019 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:废碳阴极(SCC),由初级铝工业产生的危险固体废物,通过石墨化过程成功纯化,以消除环境损害。来自SCC的纯度的纯度从63.64%增加到100%,显示出均匀和高图石墨化,具有缺陷,部分中空结构,略微膨胀的层间间距(0.34-0.37nm)和少量少量石墨烯结构。当SCC-2600用作LIBS的阳极材料时,它显示出良好的可逆容量(50次循环后460.1mAhg(-1),优异的速率能力(430.2,388.6,353.5,287.3,111.1和68.2 mAh g(-1)分别为0.1,0.5,1,2,5和10℃)。然后,SCC-2600揭示了与石墨的低压平台(<0.3V)比较的Libs的潜在高容量阳极材料。因此,它提供了一种新的回收和利用危险固体废物的方法。更重要的是,SCC-2600的容量和独特的放电平台可以通过多结构辅助石墨/石墨烯共嵌入锂化机制来阐明。 (c)2019年台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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