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The effect of acid washing on the pyrolysis products derived from a vitrinite-rich bituminous coal

机译:酸洗对富含镜质烟煤的热解产物的影响

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Extensive characterization of the pyrolysis products, derived from raw and acid washed samples of a vitrinite-rich South African bituminous coal is reported. Pyrolysis experiments were carried out with use of a modified Fischer Assay setup at 520, 750 and 900 degrees C. Gaseous products were analyzed by gas chromatography (GC); tar yields by simulated distillation (SimDis), gas chromatography mass spectrometry and -flame ionization detection (GC-MS and -FID) and size exclusion chromatography (SEC-UC), and the char yields by proximate, ultimate and Brunauer-Emmett-Teller (BET) CO2 adsorption analyses. The water and tar yields of the acid washed coal fraction (AW TWD) was found to be lower, whilst the gas yields were found to be significantly higher than that of the raw coal fraction (TWD). The char yields were not significantly affected by acid washing. Some of the differences in pyrolysis product yields can be related to increased porosity of the acid washed coal fraction. GC analysis of the derived pyrolysis gases indicated that the AW TWD derived gas contained higher yields of H-2, CH4, CO2, C2H4, C2H6, C3H4 C3H6 and C(4)s when compared to the gas derived from the TWD fraction, whilst the CO yield from the TWD fraction was greater at all final pyrolysis temperatures. Analyses of the tar fraction by means of SimDis, GC-MS and -FID and SEC-UV indicated that the acid washed coal derived tars where more aromatic in nature, containing more higher boiling point components, which increased with increasing final pyrolysis temperature. On the other hand, the tars derived from the TWD coal contained lighter boiling point components with increasing final pyrolysis temperature. The changes in the pyrolysis behavior of the bituminous coal are due to the removal of the mineral matter and also the influence of the acid washing process. This study confirmed that acid washing of coal changes the pyrolysis products composition of a bituminous coal. (C) 2015 Elsevier B.V. All rights reserved.
机译:据报道,热解产物的广泛表征来自于富含镜质石的南非烟煤的原煤和酸洗样品。热解实验是使用改良的Fischer分析装置在520、750和900摄氏度下进行的。通过气相色谱法(GC)分析气态产物。模拟蒸馏(SimDis),气相色谱质谱法和-火焰离子化检测(GC-MS和-FID)和尺寸排阻色谱(SEC-UC)生成的焦油收率,以及近,最终和Brunauer-Emmett-Teller生成的焦炭收率(BET)CO2吸附分析。发现酸洗过的煤馏分(AW TWD)的水和焦油产率较低,而发现的气体产率明显高于原煤馏分(TWD)。焦炭收率不受酸洗的影响。热解产物收率的某些差异可能与酸洗煤馏分的孔隙率增加有关。衍生热解气的GC分析表明,与TWD馏分衍生的气体相比,TWD衍生的AW气体包含更高的H-2,CH4,CO2,C2H4,C2H6,C3H4,C3H6和C(4)s。在所有最终热解温度下,TWD馏分的CO收率更高。通过SimDis,GC-MS和-FID以及SEC-UV对焦油馏分的分析表明,酸洗过的煤制焦油本质上具有更多的芳香性,包含更多的沸点成分,并随着最终热解温度的升高而增加。另一方面,随着最终热解温度的升高,源自TWD煤的焦油包含较轻的沸点组分。烟煤热解行为的变化归因于矿物物质的去除以及酸洗过程的影响。该研究证实,酸洗煤改变了烟煤的热解产物组成。 (C)2015 Elsevier B.V.保留所有权利。

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