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首页> 外文期刊>Fuel >X-ray powder diffraction-based method for the determination of the glass content and mineralogy of coal (co)-combustion fly ashes
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X-ray powder diffraction-based method for the determination of the glass content and mineralogy of coal (co)-combustion fly ashes

机译:基于X射线粉末衍射的煤(助燃)粉煤灰玻璃含量和矿物学测定方法。

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摘要

The relevance of Al-Si glass in a number of fly ash applications, such as use as a pozzolanic material, zeolite synthesis, and geopolymer production, necessitated research towards investigation of methods for an easy and consistent determination of the glass content in this coal (co)-combustion by-products. A glass standard-addition X-ray powder diffraction (XRD)-based method is proposed in this study as an alternative to the non straightforward procedure of conventional methods for determining the amorphous components, mainly by difference of the total mass and the addition of quantified crystalline species. A >99% Al-Si glass slag sample was selected as a standard for glass. A number of glass standard/fly ash mixtures were performed on Fluidized Bed Combustion (FBC) and pulverized coal combustion (PCC) fly ashes and subsequently analyzed by XRD. The method provides results closer to quantitative proportions of the Al-Si amorphous material of this (co)-combustion by-product, with a range of values <3% when compared with those obtained by the conventional Reference Intensity Method (RIM) method, demonstrating suitability and consistence of the procedure. Furthermore, by the proposed method, the requirement of previous determination of the mineral phases of conventional techniques is avoided. Coupled with the easy calculations, this allowed a fast determination of the glass content of (co)-combustion fly ash. The mineralogy of FBC and PCC fly ash was also investigated using the RIM method. The occurrence and proportions of the crystalline components in fly ash are in line with the combustion technology and their inherent operational parameters, especially the (co)-combustion temperature. The FBC fly ash shows the highest content of relic phases from feed coal (quartz, illite, calcite, and feldspars) and lower contents of amorphous components. The PCC fly ash are characterized by the highest proportions of mullite and Al-Si glass and low contents of quartz an other relict phases. The occurrence and distribution of anhydrite and Fe-oxide species appears to be related to the content of Ca and Fe in the feed fuels, showing slightly higher contents in FBC than in PCC fly ash.
机译:Al-Si玻璃在许多粉煤灰应用中的相关性,例如用作火山灰材料,沸石合成和地质聚合物生产,因此有必要进行研究,以研究简便,一致地确定该煤中玻璃含量的方法( co)-燃烧副产物。这项研究中提出了一种基于玻璃标准加法X射线粉末衍射(XRD)的方法,以替代传统方法确定非晶态成分的非直接方法,主要是通过总质量的差异和定量的添加晶体种类。选择> 99%的Al-Si玻璃渣样品作为玻璃标准。在流化床燃烧(FBC)和粉煤燃烧(PCC)飞灰上进行了多种玻璃标准粉煤灰/粉煤灰混合物的混合,然后通过XRD分析。该方法提供的结果与该(共)燃烧副产物的Al-Si非晶态材料的定量比例更接近,与常规参考强度法(RIM)方法相比,其结果范围<3%,证明程序的适用性和一致性。此外,通过提出的方法,避免了先前确定常规技术的矿物相的要求。加上简单的计算,可以快速确定(共)燃烧飞灰的玻璃含量。还使用RIM方法研究了FBC和PCC粉煤灰的矿物学。粉煤灰中结晶成分的存在和比例与燃烧技术及其固有的运行参数(尤其是(共)燃烧温度)一致。 FBC粉煤灰显示出来自进料煤(石英,伊利石,方解石和长石)的残留相含量最高,而无定形组分的含量较低。 PCC粉煤灰的特征是莫来石和铝硅玻璃的比例最高,而石英和其他残渣相的含量低。硬石膏和Fe-氧化物种类的发生和分布似乎与进料燃料中Ca和Fe的含量有关,FBC中的含量略高于PCC粉煤灰。

著录项

  • 来源
    《Fuel》 |2010年第10期|P.2971-2976|共6页
  • 作者单位

    Institute of Environmental Assessment and Water Research (ID/EA-CSIC), Jordi Girona 18-26, E-08034 Barcelona, Spain;

    rnInstitute of Environmental Assessment and Water Research (ID/EA-CSIC), Jordi Girona 18-26, E-08034 Barcelona, Spain;

    rnInstitute of Environmental Assessment and Water Research (ID/EA-CSIC), Jordi Girona 18-26, E-08034 Barcelona, Spain;

    rnInstitute of Environmental Assessment and Water Research (ID/EA-CSIC), Jordi Girona 18-26, E-08034 Barcelona, Spain;

    rnInstituto de Recursos Naturales y Agrobiologia de Salamanca (IRNASA), Cordel de Merinos, 42-54, 37008 Salamanca, Spain;

    rnInstitute of Environmental Assessment and Water Research (ID/EA-CSIC), Jordi Girona 18-26, E-08034 Barcelona, Spain;

    rnInstitute of Earth Science 'Jaume Almera' (ICTJA-CSIC), LIuis Sole Sabaris, s, 08028 Barcelona, Spain;

    rnInstitut Scientifique de Service Public (ISSeP), 200, Rue du Chera 200, BE-4000 Liege, Belgium;

    rnDelft University of Technology, Faculty of Applied Sciences, Delft Chem, Tech., Particle Technology Group, Julianalaan 136, 2628 BL Delft, The Netherlands;

    rnInstitute of Environmental Assessment and Water Research (ID/EA-CSIC), Jordi Girona 18-26, E-08034 Barcelona, Spain;

    rnInstitute of Environmental Assessment and Water Research (ID/EA-CSIC), Jordi Girona 18-26, E-08034 Barcelona, Spain;

    rnELCOGAS S.A., Carretera de Calzada a Puertollano km 27, 13500 Puertollano, Ciudad Real, Spain;

    rnELCOGAS S.A., Carretera de Calzada a Puertollano km 27, 13500 Puertollano, Ciudad Real, Spain;

  • 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

    glass; mineralogy; fly ash; XRD;

    机译:玻璃;矿物学;粉煤灰X射线衍射;

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