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Low-NO_x coal combustion via combining decoupling combustion and gas reburning

机译:通过解耦燃烧和气体再燃烧相结合的低NOx煤燃烧

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摘要

Through separating coal pyrolysis and char combustion and letting the pyrolysis gas burn in its passing through the combusting char bed, the so-called decoupling combustion has been proven to be effective for lowering NO_x emission of coal and biomass combustion. The original design of the decoupling combustion was based on coal pyrolysis incurring with the heat transferring from the char combustion zone, thus causing the difficulty of scale-up in matching the reactions of slow coal pyrolysis and quick char combustion. An idea of using partial gasification to replace such a pyrolysis was proposed to allow the combination of reburning part of the gasification gas over the combusting char layer and the decoupling combustion of the left gasification gas by letting it pass through the char bed. This article compared first the effectiveness of reducing NO_x emission by a few different combustion methods including reburning of gasification gas and the decoupling combustion based on coal pyrolysis in a laboratory scale dual-stage reactor for five different kinds of coal. It was shown that both the decoupling combustion and reburning of gasification gas represented the most effective low-NO_x combustion methods, which can reduce the NO_x emission by 30-40% in comparison with the traditional combustion without air-staging and reburning. The fuel ratio of fixed carbon to volatile matters of the coal also affected the effectiveness of NO_x reduction, the lower the fuel ratio, the higher the NO_x reduction effect was. The actual running test of a 1.4 MW industrial boiler based on combining the decoupling combustion and reburning part of the partial gasification gas reduced the NO_x emission by 33% in comparison with the traditional industrial boiler. The result showed a successful scale-up of the technology and verified the idea of reducing NO_x emission by combining the decoupling combustion and the reburning of coal gasification gas.
机译:通过将煤的热解和焦炭燃烧分开,并使热解气体在通过燃烧炭床时燃烧,所谓的解耦燃烧已被证明可有效降低煤和生物质燃烧的NO_x排放。解耦燃烧的原始设计是基于煤热解并伴随着从焦炭燃烧区传出的热量,因此难以适应缓慢煤热解反应和快速焦炭燃烧的反应。提出了使用部分气化来代替这种热解的想法,以允许在燃烧的焦炭层上再燃烧一部分气化气体和通过使剩余的气化气体通过炭床的去耦燃烧相结合。本文首先比较了通过几种不同的燃烧方法减少NO_x排放的效果,这些方法包括在实验室规模的双级反应器中对五种不同类型的煤进行气化气再燃烧和基于煤热解的解耦燃烧。结果表明,气化气的解耦燃烧和再燃烧都是最有效的低NO_x燃烧方法,与不进行空气分级和再燃烧的传统燃烧相比,NO_x排放量可减少30-40%。煤中固定碳与挥发性物质的燃料比也影响NO_x还原的效果,燃料比越低,NO_x还原效果越高。与传统工业锅炉相比,将部分气化气体的去耦燃烧和再燃烧相结合的1.4 MW工业锅炉的实际运行测试将NO_x排放降低了33%。结果显示了该技术的成功推广,并验证了通过将去耦燃烧与煤气化气体再燃烧相结合来减少NO_x排放的想法。

著录项

  • 来源
    《Fuel》 |2013年第10期|695-703|共9页
  • 作者单位

    State Key Laboratory of Multi-Phase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China,Graduate University of Chinese Academy of Sciences, Beijing 100039, China;

    State Key Laboratory of Multi-Phase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China;

    State Key Laboratory of Multi-Phase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China;

    State Key Laboratory of Multi-Phase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China;

    State Key Laboratory of Multi-Phase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China;

    State Key Laboratory of Multi-Phase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China;

  • 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
  • 关键词

    Decoupling combustion; Low-NO_x combustion; Reburning; Coal; Industrial boiler;

    机译:解耦燃烧;低NOx燃烧;重燃;煤;工业锅炉;

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