蒙古Shivee Ovoo煤的热解研究

B. Purevsuren, S. Batbileg, D. Batkhishig, A. Ankhtuya
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引用次数: 0

摘要

本文对Shivee-Ovoo煤进行了初步的研究,重点研究了Shivee-Ovoo煤热解后的硬质和液态产物。首先通过对Shivee-Ovoo煤的近似分析和最终分析,确定Shivee-Ovoo煤为褐煤型氧化褐煤,具有B2标志。采用热重分析仪研究了Shivee-Ovoo煤的热降解过程,并首次通过T5% -71,85℃等热指标测定了煤样的热稳定性;-321年T15% 18°C;T25% -490、64℃从TG曲线上看,这些都是热稳定性较低的特点。对Shivee-Ovoo煤在不同加热温度下进行热解,并测定所得硬产物、液态产物和气态产物的产率。在500℃的加热温度下,缩合液产物-6,28%(焦油)的收率较高。所有液体(焦油和热解水)和气态产物(44%)的产率表明煤有机质发生了强烈的热分解,转化程度较高。这一结果也证实了上述观点,确定了Shivee-Ovoo煤的热稳定性较低,更适合气化和液化。500℃时硬产物(半焦)的产率为56.48%,这也是Shivee-Ovoo煤热解的重要产物,其近似分析结果表明,与初始煤样相比,挥发分含量降低了3倍,热值增加了1000千卡,表明可以作为无烟燃料使用。通过化学分析确定了热解焦油中基团有机物的化学组成,结果表明,热解焦油主要由中性油组成,含量最高,为81.9%,沥青质含量为13.6%,游离碳含量为3.93%,有机碱、有机酸、酚类化合物含量小于1.0%。在室温下对焦油进行蒸馏,得到了不同沸点范围的馏分:黄色淡馏分15,沸点93% (18-1800С),棕色中馏分15,沸点44% (180-3300С),黑色重馏分44,沸点53% (330 >0С)。热解硬渣制备的活性炭与初始煤样的扫描电镜(SEM)图像不同。初始煤样的SEM图像具有致密的固体块。与初始煤样相比,炭化和活化后煤样的SEM图像显示出具有中孔和宏观孔隙的孔隙结构。通过GC/MS分析,对Shivee-Ovoo煤热解焦油中分离的中性油的溶解度和化学组成进行了研究,共记录了68个可溶于己烷的峰(信号),100个可溶于甲苯的峰(信号)和100个可溶于二氯甲烷与甲醇(体积比为1:1)混合溶剂的峰(信号)。对22种可溶于己烷的有机化合物、45种可溶于甲苯的有机化合物和21种可溶于二氯甲烷和甲醇馏分混合溶剂的有机化合物进行了测定和鉴定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study Investigation on Pyrolysis of Shivee Ovoo Coal from Mongolia
Our present investigation on Shivee-Ovoo coal focused on characterization of the initial coal and it’s hard and liquid products after pyrolysis. First of all on the basis of proximate and ultimate analysis of Shivee-Ovoo coal have been confirmed that the Shivee-Ovoo coal is oxidized brown coal of lignite type with B2 mark. The thermal degradation process of Shivee-Ovoo coal was investigated by thermogravimetric analyzer and first time determined the thermal stability of the coal sample by determination of thermal indices such as T5% -71,85°C; T15% -321,18°C; T25% -490,64°C from the TG curve, which are the characteristics of lower thermal stability. The pyrolysis of Shivee-Ovoo coal carried out at different heating temperatures and determined the yields of obtained hard, liquid and gas products. A most suitable heating temperature was chosen 500°C, in which the yield of condensed liquid product-6,28% (tar) was higher. The yield of all liquid (tar and pyrolysis water) and gas products (44%) shows that there was an intensive thermal decomposition of the coal organic mass with higher degree of conversion. This results also confirm the above mentioned and determined lower thermal stability characteristics of Shivee-Ovoo coal and it is more suitable for gasification and liquefaction. Also the yield of hard product (semicoke) is 56,48% at 500°C, which is also important product of the pyrolysis of Shivee-Ovoo coal and it’s proximate analysis results show that the volatile matter content decreased 3 times and increased caloric value by 1000 kcal in comparison with the initial coal sample indicating that it can be used as a smokeless fuel. The determined chemical composition of pyrolysis tar in group organic compounds by chemical analysis show that the tar consists mostly neutral oils with highest content-81,9%, asphalteines-13,6%, free carbons-3,93% and organic bases, organic acids, phenolic compounds are less than 1,0%. The tar also was distilled at room temperature and obtained several fractions with different boiling temperature ranges including yellow colored light fraction-15,93% (18-1800С ), brown colored middle fraction-15,44% (180-3300С ) and black colored heavy fraction-44,53% (330 >0С ). The images of scanning electron microscopes (SEM) of prepared activated carbon from pyrolyzed hard residue in comparison with initial coal sample are different. The SEM image of initial coal sample has compact solid pieces. The SEM image of carbonized and activated coal sample shows a porosity structure with meso and macro pores in comparison with that of initial coal sample. The solubility and chemical composition of neutral oil isolated from the pyrolysis tar of Shivee-Ovoo coal investigated by GC/MS analysis and registered totally 68 peaks (signals) for the soluble in hexane , 100 peaks for the soluble in toluene and 100 peaks for the soluble in a mixed solvent of methylenchloride and methanol (1:1 volume ratio) fractions. Have been determined and identified 22 organic compounds soluble in hexane, 45 organic compounds soluble in toluene and 21 organic compounds soluble in a mixed solvent of methylenchloride and methanol fractions from each related totally registered peaks.
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