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首页> 外文期刊>Frontiers of environmental science & eng >Pyrolysis of WEEE plastics using catalysts produced from fly ash of coal gasification
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Pyrolysis of WEEE plastics using catalysts produced from fly ash of coal gasification

机译:使用煤粉煤灰气化制得的催化剂对WEEE塑料进行热解

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摘要

Catalytic pyrolysis of thermoplastics extracted from waste electrical and electronic equipment (WEEE) was investigated using various fly ash-derived catalysts. The catalysts were prepared from fly ash by a simple method that basically includes a mechanical treatment followed by an acid or a basic activation. The synthesized catalysts were characterized using various analytical techniques. The results showed that not treated fly ash (FA) is characterized by good crystallinity, which in turn is lowered by mechanical and chemical treatment (fly ash after mechanical and acid activation, FAMA) and suppressed almost entirely down to let fly ash become completely amorphous (fly ash after mechanical and basic activation FAMB). Simultaneously, the surface area resulted increased. Subsequently, FA, FAMB and FAMA were used in the pyrolysis of a WEEE plastic sample at 400°C and their performance were compared with thermal pyrolysis at the same temperature. The catalysts principally improve the light oil yield: from 59 wt.% with thermal pyrolysis to 83 wt.% using FAMB. The formation of styrene in the oil is also increased: from 243 mg/g with thermal pyrolysis to 453 mg/g using FAMB. As a result, FAMB proved to be the best catalyst, thus producing also the lowest and the highest amount of char and gas, respectively.
机译:使用各种粉煤灰衍生的催化剂研究了从废弃电气和电子设备(WEEE)中提取的热塑性塑料的催化热解。通过简单的方法由粉煤灰制备催化剂,该方法基本上包括机械处理,然后进行酸或碱活化。使用各种分析技术对合成的催化剂进行了表征。结果表明,未经处理的粉煤灰(FA)具有良好的结晶性,而机械和化学处理(机械和酸活化后的粉煤灰,FAMA)则降低了结晶度,并几乎完全抑制了粉煤灰的生长,使其完全变成非晶态。 (机械和基本激活FAMB后飞灰)。同时,表面积增加。随后,将FA,FAMB和FAMA用于在400°C下对WEEE塑料样品进行热解,并将其性能与相同温度下的热解进行了比较。该催化剂主要提高了轻油的产率:从使用热裂解的59重量%到使用FAMB的83重量%。油中苯乙烯的形成也增加了:使用FAMB,热裂解从243 mg / g增加到453 mg / g。结果,FAMB被证明是最好的催化剂,因此也分别产生了最低和最高量的焦炭和气体。

著录项

  • 来源
    《Frontiers of environmental science & eng》 |2017年第5期|110-120|共11页
  • 作者单位

    Department for Sustainability, ENEA - Casaccia Research Center, Via Anguillarese 301, S. Maria di Galeria, Rome, Italy;

    Department for Sustainability, ENEA - Casaccia Research Center, Via Anguillarese 301, S. Maria di Galeria, Rome, Italy;

    Department for Sustainability, ENEA - Casaccia Research Center, Via Anguillarese 301, S. Maria di Galeria, Rome, Italy;

    Department of SBAI, Sapienza University of Rome, Via del Castro Laurenziano 7, 00161 Rome, Italy;

    Department of SBAI, Sapienza University of Rome, Via del Castro Laurenziano 7, 00161 Rome, Italy;

    Department of Energy Technologies, ENEA - Casaccia Research Center, Via Anguillarese 301, S. Maria di Galeria, Rome, Italy;

    Department for Sustainability, ENEA - Casaccia Research Center, Via Anguillarese 301, S. Maria di Galeria, Rome, Italy;

    Department of SBAI, Sapienza University of Rome, Via del Castro Laurenziano 7, 00161 Rome, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Waste electrical and electronic equipment; (WEEE) plastic mixture; Pyrolysis; Catalyst; Fly ash; Oil;

    机译:废弃电子电气设备;(WEEE)塑料混合物;热解;催化剂;粉煤灰;油;

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