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The Recovery of the Waste Cigarette Butts for N-Doped Carbon Anode in Lithium Ion Battery

机译:锂离子电池中N掺杂碳阳极废烟头的回收

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As one of the common life garbages, about 4.5 trillion waste cigarette butts are produced and randomly discarded every year due to the addiction to the nicotine and the need of the social intercourse. Such a treatment would result in the waste of the resources and the environmental pollution if they weren’t reasonably recycled in time. Herein, the waste cigarette butts were recycled in form of N-doped carbon powders with high economic value-added via one-step facile carbonization at 800 °C for 2 h in the inert N2 atmosphere. The waste-cigarette-butts-derived black carbon powders were characterized by scanning electron microscope (SEM), N2 adsorption/desorption and X-ray photoelectron spectroscopy (XPS). Furthermore, the corresponding electrochemical performances as the anode in lithium ion battery (LIB) were also investigated by galvanostatic charge/discharge, cyclic voltammetry (CV) and alternating current (AC) impedance. The results suggested that the recycled N-doped waste cigarette butts carbon (WCBC) powders consisted of major carbon and minor residual N-containing and O-containing functional groups, and the corresponding specific surface area was about 1285 m2?g-1. Furthermore, and the reversible specific discharge capacity was about 528 mAh?g-1 after 100 cycles at 25 mA?g-1 and about 151 mAh?g-1 even at 2000 mA?g-1 for 2500 cycles. Additionally, full cell performances were also satisfactory, indicating high feasibility. N-doping induced more active sites and higher electronic conductivity, and the resultant synergistic effect may be responsible for the satisfactory electrochemical performances, which offered good inspiration and strategy to develop the green energy and circular economy.
机译:作为生活中常见的垃圾之一,由于对尼古丁的依赖和社会交往的需要,每年产生约4.5万亿个烟头并被随机丢弃。如果不及时合理地回收资源,这种处理将导致资源浪费和环境污染。在此,废烟头通过在惰性N2气氛中在800°C下进行一步一步易碳化,以具有高经济附加值的N掺杂碳粉形式进行回收。通过扫描电子显微镜(SEM),N2吸附/解吸和X射线光电子能谱(XPS)对废烟头衍生的黑碳粉进行了表征。此外,还通过恒电流充电/放电,循环伏安法(CV)和交流电(AC)阻抗研究了锂离子电池(LIB)中作为阳极的相应电化学性能。结果表明,回收的N掺杂废烟头碳(WCBC)粉末由主要碳和少量残留的N和O官能团组成,相应的比表面积约为1285 m2?g-1。此外,在25mA·g-1下100个循环后,可逆的比放电容量为约528mAh·g-1,即使在2000mA·g-1下2500个循环也为约151mAh·g-1。另外,全电池性能也令人满意,表明高可行性。 N掺杂诱导了更多的活性位点和更高的电子电导率,并且由此产生的协同效应可能是令人满意的电化学性能的原因,这为开发绿色能源和循环经济提供了良好的启示和策略。

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