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Chemical Structure of Chars Prepared under Conditions Prevailing in the Blast Furnace PCI Operation

机译:在高炉PCI操作中普遍存在的条件下制备的炭的化学结构

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Using a drop tube furnace, char samples were prepared from coals of different ranks, under conditions similar to those prevailing during pulverized coal injection into the blast furnace. The chemical structure of resultant chars was determined by quantitative X-ray diffraction analysis (QXRDA) and high-resolution transmission electron microscopy (HRTEM), and investigated as a function of pyrolysis temperature, heating rate and coal type. Among the parameters examined, pyrolysis temperature was the key factor influencing char chemical structure. Char obtained at higher temperature is generally more ordered, with the distinctive peaks becoming sharper and the background intensity becoming lower. Heating rate is another important factor affecting char chemical structure. Char is more ordered at lower heating rate due to the longer residence time. Although considerable differences were still observed in the chemical structure of chars prepared from coals of different ranks, it is clear that such differences are reduced after coal pyrolysis. Char structural evolution during post-pyrolysis and combustion was also investigated. The importance and potential applications of this work to the blast furnace PCI operation have been outlined.
机译:使用滴管炉,在与粉煤注入高炉过程中普遍使用的条件相似的条件下,从不同等级的煤中制备焦炭样品。通过定量X射线衍射分析(QXRDA)和高分辨率透射电子显微镜(HRTEM)确定所得焦炭的化学结构,并研究其与热解温度,加热速率和煤类型的关系。在所考察的参数中,热解温度是影响炭化学结构的关键因素。通常,在较高温度下获得的炭更加有序,特征峰变得更尖锐,背景强度变得更低。加热速率是影响炭化学结构的另一个重要因素。由于停留时间较长,炭在较低的加热速率下更有序。尽管在不同等级的煤制得的焦炭的化学结构上仍观察到了相当大的差异,但显然在煤热解后,这种差异得以减少。还研究了热解和燃烧后炭的结构演变。概述了这项工作对高炉PCI操作的重要性和潜在应用。

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