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Evaluation of slagging and fouling characteristics during Zhundong coal co-firing with a Si/Al dominated low rank coal

机译:用Si / Al主导低级煤炭共同射击煤炭共同凝结特性评价

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摘要

Blending is a promising method to improve ash related problems to meet combustion requirements. To evaluate the slagging and fouling characteristics of Zhundong coal (ZD) co-firing with a Si/Al dominated low rank coal (WD), the influence factors of slagging and fouling propensity based on ash composition and fusion temperatures was discussed. Release, thermal change and transformation behaviors of minerals in the mixed ashes were investigated by Thermogravimetric analysis and FactSage software. Morphology and chemical characteristics of ash deposits along heating surfaces of a practical boiler co-firing these two coals were also analyzed. The results show that when alkali/acid ratio (R-B/A) is higher than 0.400 and difference value between ST and DT (ST-DT) lower than 20 degrees C, blending presents a severe slagging and fouling tendency. Under high temperature, ZD ash underwent a major weight loss which, is characterized by intense endothermic reactions and leads to the low ST-DT value. Feldspar, tridymite and anhydrite are the dominated minerals for blending ashes, and transformation of them contributes to the low fusion temperatures. Deposits along heating surfaces of boiler for burning ZD coal blending could be divided into two groups: condensed deposits and molten deposits. The former is due to the volatilization of mineral elements and have higher AFTs and the latter mainly due to the formation of low fusion temperature eutectics.
机译:混合是一种有望的方法,可以改善灰烬相关问题以满足燃烧要求。为了评估促煤(ZD)共同用Si / Al主导的低级煤(WD)共射的粘连和污垢特性,探讨了基于灰分组成和熔融温度的粘接和污垢倾向的影响因素。通过热重分析和Factsage软件研究了混合灰烬中矿物质的释放,热变化和转化行为。还分析了沿着实际锅炉共烧的加热表面的灰沉积物的形态和化学特性,这两种煤切割出来。结果表明,当碱/酸比(R-B / A)高于0.400时,ST和DT(ST-DT)低于20℃的差值,混合呈现严重的粘连和污垢趋势。在高温下,ZD灰观察主要的重量损失,其特征在于强烈的吸热反应,并导致低于ST-DT值。长石,Tridymite和AnhyDrite是用于混合灰烬的主导矿物质,它们的转化有助于低熔化温度。沿着燃烧铜煤混合的锅炉的加热表面的沉积物可分为两组:冷凝沉积物和熔融沉积物。前者是由于矿物元素的挥发,并且具有更高的前方,后者主要是由于形成低融合温度的光照学。

著录项

  • 来源
    《Fuel》 |2019年第15期|115730.1-115730.11|共11页
  • 作者单位

    China Coal Res Inst Beijing Res Inst Coal Chem Beijing 100013 Peoples R China|State Key Lab Coal Min & Clean Utilizat Beijing 100013 Peoples R China;

    China Coal Res Inst Beijing Res Inst Coal Chem Beijing 100013 Peoples R China|State Key Lab Coal Min & Clean Utilizat Beijing 100013 Peoples R China;

    Shenhua Guoshen Tech Res Inst Xian 710065 Shaanxi Peoples R China;

    China Coal Res Inst Beijing Res Inst Coal Chem Beijing 100013 Peoples R China|State Key Lab Coal Min & Clean Utilizat Beijing 100013 Peoples R China;

    Shenhua Guoshen Tech Res Inst Xian 710065 Shaanxi Peoples R 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

    Blending; Slagging and fouling; Inorganic elements release; Ash deposits; Ash fusion; FactSage;

    机译:混合;脱渣和污垢;无机元素释放;灰沉积物;灰融合;事实;

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