Preparation of high-value carbon nanotubes from real waste plastic towards the negative carbon technology

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Abstract

The preparation of carbon nanotubes (CNTs) from plastics is of great significance for realizing high value utilization of waste and reducing carbon emission. Here, several kinds of real waste plastics were introduced into catalytic pyrolysis, and the process was also optimized. The results showed that the presence of impurities (e.g., adhesive labels) reduced the initial activation energy of the pyrolysis reaction, and the pyrolysis process was extended and could be divided into two stages. During the catalytic process, impurities play a toxic role on the catalyst at higher temperatures and result in the agglomeration of catalyst particles and a decrease in catalytic activity. Less than 10 wt.% carbon fibers were collected from milk cup waste. However, after experimental optimization, the influence of the impurity component was greatly reduced. The toxic effect of organic impurity volatiles on a catalyst was avoided by employing a segmented catalytic pyrolysis process, which led to an increase in solid carbon content of more than 20 % for express package waste. Simultaneously, more uniform and smoother CNTs can be found in the obtained solid carbon. The process of preparing carbon nanotubes with higher yield and better quality is feasible and has important application prospects in the utilization of waste plastics.

利用废旧塑料制备高价值碳纳米管,实现负碳技术
从塑料中制备碳纳米管(CNTs)对于实现废弃物的高值化利用和减少碳排放具有重要意义。本文将几种真实的废塑料引入催化热解,并对工艺进行了优化。结果表明,杂质(如粘胶标签)的存在降低了热解反应的初始活化能,热解过程延长并可分为两个阶段。在催化过程中,杂质在较高温度下对催化剂起毒害作用,导致催化剂颗粒团聚,降低催化活性。从牛奶杯废料中收集的碳纤维重量小于 10%。但经过实验优化后,杂质成分的影响大大降低。通过采用分段催化热解工艺,避免了有机杂质挥发物对催化剂的毒性影响,从而使快递包装垃圾的固体碳含量增加了 20% 以上。同时,在获得的固体碳中可以发现更均匀、更光滑的碳纳米管。制备产量更高、质量更好的碳纳米管的工艺是可行的,在废塑料利用方面具有重要的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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