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The current development and latest achievements in cokemaking technology

机译:炼焦技术的最新发展和最新成果

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摘要

The cokemaking industry has seen substantial technological development over the last decade. Conventional coke ovens (slot type ovens) with raw gas recovery have reached dimensions of more than 8 m height and 90 m3 useful oven volume, boosting the capacity of a single battery to 1.3 Mt/y and the production of a single coke plant with one operating team to 2.6 Mt/y. At the same time the emissions from batteries and gas treatment facilities have been reduced to the lowest amounts ever. A further increase in energy efficiency and environmental protection for conventional coke batteries is expected from the combustion of the hot raw gas with subsequent generation of electricity. The concept of a coke plant with direct combustion of the raw gas would omit the entire gas treatment plant and produce only coke and power. Aside from these achievements with conventional coke oven batteries, the non-recovery technology has also found acceptance. Coke plants of this type are in operation in the USA, Australia and India. One plant in the USA is a heat-recovery coke plant that produces power from the waste gas. Further improvements in plant efficiency and coke quality are achieved with stamping of the coal charge, which is now developed for non-recovery ovens, too.
机译:在过去的十年中,制焦业已经有了实质性的技术发展。具有原料气回收功能的传统焦炉(槽式炉)的尺寸超过了8 m高,有用炉体积为90 m3,将单个电池的容量提高到了1.3 Mt / y,并且单个具有一个运营团队达到2.6吨/年。同时,电池和气体处理设施的排放已减少到有史以来的最低水平。通过热原料气的燃烧和随后的发电,期望常规焦炭电池的能量效率和环境保护的进一步提高。直接燃烧原料气的焦化厂的概念将省略整个气体处理厂,仅产生焦炭和电力。除了传统焦炉电池取得的这些成就以外,不可回收技术也得到了认可。这种类型的焦炭厂在美国,澳大利亚和印度都在运行。美国的一家工厂是利用废气发电的热能回收焦炭厂。通过对煤料进行冲压,可以进一步提高工厂效率和焦炭质量,现在也为非回收炉开发了这种技术。

著录项

  • 来源
    《Revue de Metallurgie》 |2003年第3期|p.243-250|共8页
  • 作者

    H.Toll; R. Worberg;

  • 作者单位

    ThyssenKrupp EnCoke GmbH;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 冶金工业;
  • 关键词

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