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A comparative study on the characterisation and combustion behaviour of high ash coals from two different geographical origins

机译:来自两种不同地理起源的高灰煤表征和燃烧行为的比较研究

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摘要

The ultimate use of coal is primarily dependent on the composition, distribution, modes of occurrences of the minerals and their association with the organics. Therefore, an adequate knowledge of the minerals, macerals and their ignition behaviour is inevitable for the subsequent utilisation of coal in various aspects. Here, we present a comparative characterisation and combustion study of two high ash non-coking coals (AH and BL) with ash yield of 42.42 and 45 wt% on dry basis and gross calorific value of 3620 and 3363 kcal/kg respectively. Both coals are rich in vitrinite with moderate liptinite and the volume percentage of inertinite is comparatively lower than the vitrinite. Both coals are rich in alumino-silicate minerals and Fe and Ti oxide are present in moderate concentrations. They have crystalline forms with discrete grain boundaries which make them susceptible for beneficiation. The fractionation characteristics like low slagging and fouling potential, high silica ratio and low base to acid ratio suggest that the two coals are feasible for their successive utilisation in thermal power plants. Concerning the macerals's reactivity; BL coal has a comparatively lower TG peak temperature and burnout temperature than the AH. Also BL sample has relatively more volatile matter. Both coals have high ash fusion temperatures but BL coal ash consists of high proportion of refractory minerals e.g. SiO2, Al2O3 and TiO2. Hence, BL coal has better amenability for easy ignition and its combustion characteristics are expected to be improved than the AH.
机译:煤的最终使用主要取决于矿物质的组成,分布,出现的缺点和它们与有机物的关系。因此,在各个方面随后利用煤时,对矿物质,麦克林和其点火行为的充分知识是不可避免的。在此,我们在干基础上呈现两个高灰分非焦化煤(AH和BL)的两种高灰分非焦化煤(AH和BL),并在干基础上,分别为3620和3363千卡/千克的总热量值。两个煤都富含紫灰石,中等riptinite,惯性率的体积百分比相对低于玻璃石。两种煤都富含铝硅酸盐矿物,Fe和Ti氧化物以中等浓度存在。它们具有具有离散晶界的结晶形式,使它们易于受益。分馏特性,如低熔渣和污垢电位,高二氧化硅比和低基础对酸的比例表明,两煤可行于热电厂中连续利用。关于Macerals的反应性; BL煤具有比α相对较低的TG峰值温度和燃烧温度。 BL样品也具有相对更挥发物质。两个煤都有高灰分融合温度,但Bl煤灰由高比例的耐火矿物组成。 SiO2,Al2O3和TiO2。因此,BL煤具有更好的扫抚,便于点火,预计其燃烧特性将得到αh。

著录项

  • 来源
    《Fuel》 |2021年第2期|119397.1-119397.23|共23页
  • 作者

    Sahoo Monica; Dey Shobhana;

  • 作者单位

    CSIR Natl Met Lab Mineral Proc Div Jamshedpur 831007 Bihar India;

    CSIR Natl Met Lab Mineral Proc Div Jamshedpur 831007 Bihar India;

  • 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

    High ash coal; EPMA; SEM; TG-DTA; AFT;

    机译:高灰煤;EPMA;SEM;TG-DTA;AFT;

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