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Utilisation of spent tyre pyrolysis char as activated carbon feedstock: The role, transformation and fate of Zn

机译:作为活性炭原料的废轮胎热解焦炭的利用:Zn的作用,转化和命运

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摘要

Utilisation and minimisation of spent tyre stockpiles has been made more viable by pyrolysis and activation to produce low-cost activated carbons. The unique chemical composition of spent tyre pyrolysis chars (STPC), particularly the high Zn content, has been shown to affect their activation and subsequent utilisation. Nonetheless, little research has examined exactly how these additives affect activation and, ultimately, what becomes of Zn during the activation process. This paper presents a systematic study of the effect of Zn, ZnO and ZnS on the physical properties of STPC and their transformation mechanisms during CO_2 activation. Samples of acid-washed STPC with and without ZnO and ZnS addition were activated using a fixed-bed reactor in 66.7%_(v/v) CO_2 for 3 h at 850, 950, 1000 and 1050 °C. Under these conditions, both ZnO and ZnS were found to act as a catalyst during activation, increasing surface area, pore volume and burn-off. During the activation, ZnO was reduced by C to form elemental Zn and ZnS was thermally decomposed to release Zn and S. Thermogravimetric analysis of Zn and its compounds above 600 °C, separately and mixed with acid-washed char, under CO_2 confirms that ZnO and ZnS dissociate to release Zn(υ) that further reacts with CO_2 or S to reform ZnO or ZnS. However, Zn is progressively removed from activated carbon at temperatures between 950 °C and 1050 °C. These results have direct implications for the utilisation of SPTC as a feedstock for activated carbon, and the production of Zn-loaded activated carbons.
机译:通过热解和活化来产生低成本活化的碳,所以花了轮胎库存的利用率和最小化。已经证明了废轮胎热解Com(STPC),特别是高Zn含量的独特化学成分,以影响其活化和随后的使用。尽管如此,迄今为止,这些添加剂如何影响激活过程中的小型研究究竟是如何影响激活。本文介绍了Zn,ZnO和ZnS对STPC的物理性质的系统研究及其在CO_2激活期间的转化机制。使用固定床反应器在850,950,1000和1050℃下以66.7%(v / v)CO_2,在66.7%_(v)CO_2中以66.7%_(v)CO_2,在85,950,1000℃下以66.7%(V / v)CO_2,用酸洗STPC的样品。在这些条件下,发现ZnO和ZnS均在激活,增加表面积,孔体积和烧伤期间用作催化剂。在活化期间,通过C减少ZnO以形成元素Zn,ZnS热分解为释放Zn和S.热重分析Zn及其高于600℃的化合物,分别并与酸洗的Char混合,CO_2确认ZnO Zns解离释放Zn(Ⅵ),其进一步与CO_2或S反应以改革ZnO或ZnS。然而,在950℃和1050℃之间的温度下从活性炭逐渐去除Zn。这些结果具有对利用SPTC作为活性炭原料的直接影响,以及Zn装载的活性碳的生产。

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  • 来源
    《Waste Management》 |2021年第5期|549-558|共10页
  • 作者单位

    Centre for Energy (M473) The University of Western Australia 35 Stirling Highway Crawley WA 6009 Australia;

    Centre for Energy (M473) The University of Western Australia 35 Stirling Highway Crawley WA 6009 Australia;

    Centre for Energy (M473) The University of Western Australia 35 Stirling Highway Crawley WA 6009 Australia;

    Centre for Energy (M473) The University of Western Australia 35 Stirling Highway Crawley WA 6009 Australia Key laboratory of Biofuels Qingdao Institute of Bioenergy and Bioprocess Technology Chinese Academy of Sciences Qingdao 266101 China University of Chinese Academy of Sciences Beijing 10049 China;

    Centre for Energy (M473) The University of Western Australia 35 Stirling Highway Crawley WA 6009 Australia;

    Centre for Energy (M473) The University of Western Australia 35 Stirling Highway Crawley WA 6009 Australia Key laboratory of Biofuels Qingdao Institute of Bioenergy and Bioprocess Technology Chinese Academy of Sciences Qingdao 266101 China;

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

    Activation; Pyrolysis; Spent tyres; Waste utilisation; Zn transformations;

    机译:激活;热解;花费轮胎;废物利用;Zn转换;

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