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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Gasification of carbon/carbon composite prepared from pyrolyzed char of low-grade coke and low-rank coal
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Gasification of carbon/carbon composite prepared from pyrolyzed char of low-grade coke and low-rank coal

机译:由低级焦炭和低级煤的热解焦炭制备的碳/碳复合材料的气化

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摘要

Carbon/carbon composites were prepared by pyrolysis of mixtures of coke oven gas tar and low-grade cokes or pyrolyzed chars from lignite and sub-bituminous coals. The indirect tensile strength of each composite prepared reached approximately 7.5 MPa, which is comparable to those of high-grade cokes used in commercial blast furnaces. Although the CO2 gasification rates of the composites prepared from low-grade cokes decreased compared to those of the original samples, those of the composites prepared from pyrolyzed chars were almost the same. From the results of mercury intrusion porosimetry analysis and O-2 adsorption temperature-programmed-desorption tests of samples before and after compositing, it was suggested that the decrease in gasification rates of composites prepared from cokes occurred owing to a decrease in the pores and number of active sites on the original cokes. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过从褐煤和亚沥青煤的焦炉燃气焦油和低级焦炭或热解的焦炭的混合物热解制备碳/碳复合材料。 所制备的每种复合材料的间接拉伸强度达到约7.5MPa,其与商业高炉中使用的高级焦炭相当。 尽管与原始样品的低级焦炭制备的复合材料的CO2气化速率降低,但由热解焦炭制备的复合材料的复合材料几乎相同。 从汞侵入孔隙瘤率分析的结果和合成前后样品的O-2吸附温度编程 - 解吸试验,建议由于孔隙和数量减少而发生从焦点制备的复合材料的气化率降低 原始焦炭的积极场所。 (c)2019年Elsevier B.V.保留所有权利。

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