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Utilization of Biomass at the Recycling of Heavy Metal Containing Wastes

机译:回收含重金属废物中生物质的利用

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摘要

Metal production and recycling industries are typically characterized by a high demand on energy. Besides this, in the reduction processes necessary in metallurgy, high amounts of reducing agents are also used in this field of the industry. Normally this high demand on carbon is covered by fossil carbonaceous materials, which results in high amounts of greenhouse gas emissions, which in turn enhance global warming. For that reason, companies are being forced by environmental legislation to reduce their carbon footprint. Therefore, one option would be the substitution of fossil based materials with carbon-neutral alternatives. In order to describe some approaches, two options for the utilization of reducing agents based on biomass in heavy metal recycling processes are described in this paper. For that reason biomasses from agriculture like different tree cuttings were converted into metallurgical charcoal by means of a special carbonization reactor. With these charcoals electric arc furnace dust (EAFD) was reduced and recycled in a lab-scale rotary kiln. Furthermore, the by-product of the carbonization process—the pyrolysis gas—was used for the treatment of Waelz slag in a retort process. In both cases, nearly the entire zinc contained in the residue (EAFD and Waelz slag) could be recovered by means of alternative reducing agents. In the retort process also the iron in the remaining slag could be highly metalized. With such a replacement of fossil materials, the C02 emissions from current dirty industry sectors such as heavy metal recycling can be dramatically reduced. This could lead special industries to be pioneers in matters of environmental protection.
机译:金属生产和回收行业通常以能源需求高为特征。除此之外,在冶金学中必需的还原过程中,在该工业领域中也使用大量的还原剂。通常,对碳的高需求被化石含碳材料所覆盖,这导致大量的温室气体排放,进而加剧了全球变暖。因此,环保法规迫使公司减少碳足迹。因此,一种选择是用碳中性替代物替代化石基材料。为了描述一些方法,本文描述了两种在重金属回收过程中利用基于生物质的还原剂的方法。因此,来自农业的生物质(如不同的砍伐树木)通过特殊的碳化反应器转化为冶金用木炭。使用这些木炭,可减少电弧炉的粉尘(EAFD),并在实验室规模的回转窑中进行再循环。此外,碳化过程的副产品-热解气-在蒸馏过程中用于处理Waelz炉渣。在这两种情况下,残渣(EAFD和Waelz炉渣)中几乎所有的锌都可以通过其他还原剂回收。在蒸煮过程中,残留炉渣中的铁也可能高度金属化。通过这种化石材料的替代,可以显着减少当前肮脏的工业部门(例如重金属回收)的二氧化碳排放。这可能导致特殊行业在环境保护方面成为先锋。

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  • 来源
    《Waste and biomass valorization》 |2012年第3期|p.369-374|共6页
  • 作者单位

    Christian Doppler Laboratory for Optimization and Biomass Utilization at the Recycling of Heavy Metals, University of Leoben, Franz-Josef-StraBe 18, 8700 Leoben, Austria;

    Christian Doppler Laboratory for Optimization and Biomass Utilization at the Recycling of Heavy Metals, University of Leoben, Franz-Josef-StraBe 18, 8700 Leoben, Austria;

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

    biomass; charcoal; reduction agent; heavy metals; recycling;

    机译:生物质木炭;还原剂重金属;回收利用;

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