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口罩与黑色冶金:利用废弃 COVID-19 口罩改善低挥发分煤的气化反应活性,以用于炼铁应用。

Facemasks and ferrous metallurgy: improving gasification reactivity of low-volatile coals using waste COVID-19 facemasks for ironmaking application.

机构信息

Energy Safety Research Institute, Swansea University Bay Campus, Swansea, SA1 8EN, UK.

Tata Steel Strip Products UK, Port Talbot, SA13 2NG, UK.

出版信息

Sci Rep. 2022 Feb 17;12(1):2693. doi: 10.1038/s41598-022-06691-w.

Abstract

The global pandemic response to COVID-19 has led to the generation of huge volumes of unrecyclable plastic waste from single use disposable face coverings. Rotary hearth furnaces can be used to recover Zn and Fe from non-recyclable steelmaking by-product dusts, and waste plastic material such as facemasks could be utilized as a supplementary reductant for the rotary hearth furnace (RHF), but their fibrous form makes milling and processing to appropriate sizing for RHF application extremely challenging. A scalable method of grinding facemasks to powder by melting and mixing with Welsh coal dust reported herein provides a solution to both environmental challenges. The melt-blended PPE/coal dust shows a dramatically improved CO gasification reactivity (E = 133-159 kJmol) when compared to the untreated coal (E = 183-246 kJmol), because of improved pore development in the coal during the pyrolysis stage of heating and the catalytic activity of the CaO based ash present in the facemask plastic. The results are promising for the application of waste facemasks in recycling steelmaking by-product dusts in rotary hearth furnaces and may also be suitable for direct injection to the blast furnace subject to further study.

摘要

全球对 COVID-19 的大流行反应导致了大量不可回收的一次性口罩的塑料废物的产生。回转炉可以用来从不可回收的炼钢副产品粉尘中回收锌和铁,而口罩等废塑料材料可以作为回转炉(RHF)的补充还原剂,但它们的纤维形式使得铣削和加工成适合 RHF 应用的尺寸变得极具挑战性。本文报道的一种可扩展的将口罩磨成粉末的方法,通过与威尔士煤尘熔融混合,为这两个环境挑战提供了一个解决方案。与未经处理的煤(E=183-246 kJmol)相比,熔融混合的个人防护设备/煤灰显示出显著提高的 CO 气化反应性(E=133-159 kJmol),这是因为在加热的热解阶段,煤中的孔发展得到了改善,并且口罩塑料中存在的基于 CaO 的灰分具有催化活性。这些结果对于将废口罩应用于回转炉中回收炼钢副产品粉尘具有很大的应用前景,并且在进一步研究的基础上,也可能适合直接注入高炉。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9973/8854564/6fd3ae50a553/41598_2022_6691_Fig1_HTML.jpg

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