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Distribution and comparing of volatile products during slow pyrolysis and hydropyrolysis of Turkish lignites

机译:土耳其褐煤缓慢热解和加氢热解过程中挥发性产物的分布和比较

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Lignite samples obtained Ermenek and Uzunkopru coal plants in Turkey have been pyrolysed under specific conditions and the temperature effect on the final product distribution was elucidated by the use of GC and TGA. The temperature has been found to have a remarkable effect on the product distribution and evolution rate. The pyrolysis was carried out with the use of a fixed bed reactor equipped with a special sampling system to collect the organic volatile products to be analyzed by capillary gas chromatography (GC). The maximum product formation rate was found to be about 440 degrees C for both of the samples. The formation rate of n-paraffins was higher than that of 1-olefines at each temperature employed. The hydrocarbons obtained by pyrolysis of lignite from Ermenek and Uzunkbpru coal plants were observed to contain 43 wt% and 40 wt% n-paraffins at the maximum formation rate, respectively. The 1-olefins determined at the maximum product formation rate were found to be 15 wt% for both lignite samples. Additionally, the effect of temperature on pyrolysis product distribution of Turkish lignites has been compared with those hydropyrolysed at different pressures and temperatures. The formation curves of hydropyrolysis differed from those obtained under inert pyrolysis conditions. Hydrogen was found to have an appreciable effect on pyrolytic decomposition especially at high temperatures and pressures. There were higher tar formation and less gas yield at higher hydrogen pressures. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在特定条件下,对在土耳其的Ermenek和Uzunkopru煤厂获得的褐煤样品进行了热解,并通过使用GC和TGA阐明了温度对最终产品分布的影响。已经发现温度对产物分布和析出速率具有显着影响。使用配备有特殊采样系统的固定床反应器进行热解,以收集要通过毛细管气相色谱法(GC)分析的有机挥发性产物。发现两个样品的最大产物形成速率均为约440℃。在所采用的每个温度下,正链烷烃的形成速率均高于1-烯烃。观察到从Ermenek和Uzunkbpru煤厂的褐煤热解获得的烃分别以最大形成速率包含43 wt%和40 wt%的正链烷烃。发现两个褐煤样品均以最大产物形成速率测定的1-烯烃为15重量%。此外,已将温度对土耳其褐煤热解产物分布的影响与在不同压力和温度下进行加氢热解的那些进行了比较。加氢热解的形成曲线与在惰性热解条件下获得的曲线不同。发现氢对热解分解具有显着影响,尤其是在高温和高压下。在较高的氢气压力下,会有更高的焦油生成率和更少的气体产率。 (C)2016 Elsevier Ltd.保留所有权利。

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