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Advanced characterization of IGCC slag by automated SEM-EDS analysis

机译:通过自动化SEM-EDS分析的IGCC渣的高级表征

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摘要

Integrated gasification combined cycle (IGCC) is a highly efficient method for producing electricity but discharges a byproduct in the form of a glassy slag, similar to other electricity generation operations. Several technologies for recycling IGCC slag have been developed thus far, although the results obtained are not promising or universally applicable. We quantitatively characterized an IGCC slag by using various testing methods, including an automated scanning electron microscopy-energy dispersive spectrometry (SEM-EDS) system, to recognize its potential for recycling. The IGCC slag did not contain free CaO, and the absence of free lime would address a concern of volumetric expansion during hydration. Automated SEM-EDS analysis revealed that approximately 98% of the IGCC slag particles consisted of calcium-rich aluminosilicate materials. Obvious differences in the concentrations of Si, Al, and Ca between the amorphous phases and the average chemical bulk were recognized. The chemical composition of the amorphous Si-Al-Ca phases was similar to that of Class C fly ash, while the average bulk composition of the IGCC slag was in between that of Class C and Class F fly ashes. Considering this discrepancy, understanding the dissolution mechanism of the reactive amorphous fraction as well as an exact assessment of the reaction products based on the role of Ca in alkali-activated materials provides a new approach for the valorization of IGCC slag.
机译:集成气化联合循环(IGCC)是一种高效的生产方法,但以玻璃渣的形式排出副产物,类似于其他发电操作。迄今为止已经开发了几种用于回收IGCC渣的技术,尽管所获得的结果不承受或普遍适用。我们通过使用各种测试方法定量表征IGCC渣,包括自动扫描电子显微镜 - 能量分散光谱(SEM-EDS)系统,以识别其回收的可能性。 IGCC渣不含含有游离的CaO,并且没有自由石灰将解决水合过程中体积膨胀的关注。自动化SEM-EDS分析显示,大约98%的IGCC渣颗粒由富含富含钙的硅铝酸盐材料组成。无定形阶段与平均化学体系之间的Si,Al和Ca浓度明显差异。无定形Si-Al-Ca相的化学成分与C类粉煤灰相似,而IGCC渣的平均体组合物在C类和F级飞灰之间。考虑到这种差异,了解反应性无定形分数的溶出机制以及基于Ca在碱活化材料中的作用的反应产物的精确评估为IGCC渣的算子提供了一种新方法。

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