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Investigation of Coke Quality Variation between Heat-Recovery and Byproduct Cokemaking Technology

机译:热回收与副产物焦技术之间焦炭质量变化的研究

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Coke structural properties that lead to coke quality difference between heat recovery and byproduct cokemaking technology are investigated. Coke fingers collected from two zones (bottom center and top center) of a commercial heat recovery oven were analyzed and compared to the coke produced from the same coal blend using a moveable-wall slot oven. Coke fingers were studied at set intervals, starting from the floor of the heat recovery oven through the top of the bed, and from the slot oven wall to wall. Coke strength after reaction (CSR) test, gas adsorption techniques, optical microscopy, and X-ray diffraction analyses were used to study the coke samples. Although exhibiting lower overall CSR compared to the heat-recovery oven coke, the slot oven produced a more uniform coke quality along the coke cake width, because of the narrow width and bilateral heating of the slot oven. The top-section coke of the heat-recovery oven displayed unique structural characteristics ascribed to the availability of free space atop this coke and the use of radiant heat to drive its coking process. The heat-recovery oven bottom center and slot-oven coke displayed low surface area and total porosity, indicating restrictive coke cake expansion. Limited swelling is attributed to the coal charge weight overlying the heat-recovery oven bottom coke and the constrained nature of the slot-oven-chamber. However, the shorter coking time used in the slot oven disadvantageously deprives the slot-oven coke of sufficient time to fully develop its carbon structure; therefore, the heat-recovery oven cokes demonstrated better carbon structural development. For the slot-oven coke, carbon structural development, seems to have a stronger impact on CSR than surface area does, while for the heat-recovery oven top center coke, surface area appears to be the parameter that most affects CSR.
机译:研究了导致热回收和副产物炼焦技术之间焦炭质量差异的焦炭结构特性。分析了从商用热能回收炉的两个区域(底部中心和顶部中心)收集的焦炭指状物,并与可移动壁式槽式烤箱将其与相同的煤混合物制得的焦炭进行了比较。从设定的时间间隔开始研究可乐手指,从热能回收炉的地板一直到床的顶部,再到槽式炉的每一壁。反应后的焦炭强度(CSR)测试,气体吸附技术,光学显微镜和X射线衍射分析用于研究焦炭样品。尽管与热能回收炉的焦炭相比,其总体CSR较低,但由于槽式炉的宽度较窄且双向加热,因此槽式炉沿焦饼宽度产生的焦炭质量更加均匀。热能回收炉的顶部焦炭显示出独特的结构特征,这归因于该焦炭顶部的可用空间以及利用辐射热来驱动其焦化过程。热能回收炉底部中心和槽式焦炭的表面积和总孔隙率低,表明焦炭饼的膨胀受到限制。溶胀有限归因于覆盖在热回收炉底部焦炭上的煤料重量以及狭缝炉室的受限性质。然而,在槽式炉中使用的较短的焦化时间不利地剥夺了槽式炉的焦炭以充分发展其碳结构的时间;因此,热回收炉焦炭显示出更好的碳结构发展。对于缝炉式焦炭,碳结构的发展似乎对CSR的影响要比表面积大,而对于热回收炉顶部中心焦炭,表面积似乎是对CSR影响最大的参数。

著录项

  • 来源
    《Energy & fuels》 |2017年第2期|2087-2094|共8页
  • 作者单位

    Global R&D, ArcelorMittal USA, E Chicago, IN 46312 USA;

    Global R&D, ArcelorMittal USA, E Chicago, IN 46312 USA;

    Indiana Univ, Indiana Geol Survey, Bloomington, IN 47405 USA;

    Indiana Univ, Dept Geol Sci, Bloomington, IN 47405 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:39:29

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