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An experimental study of the soot formed in the pyrolysis of acetylene

机译:乙炔热解过程中形成烟灰的实验研究

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A study of the formation of soot from the pyrolysis of acetylene has been performed in laboratory scale using a quartz reactor heated by an electric oven. The work includes a systematic parametric study in which we have varied: temperature (800, 900, 1000 and 1100℃), initial hydrocarbon concentration (1,5 and 10% of acetylene), space time (8.1 and 16.2 s), presence and oxygen concentration (0 and 1000 ppm), and presence and level of water (0,3 and 15%). In those experiments, we quantified the soot formed, which was further characterized through ultimate analysis, determination of BET area and SEM techniques, and we also determined the outlet concentrations of CO, CO_2 and different gaseous hydrocarbon species (C_2H_2, CH_4, C_2H_6, C_2H_4 and C_6H_6). The results show that increasing the reaction temperature and the initial concentration of C_2H_2, as well as the space time, results in favouring the formation of soot. The amount of soot formed exhibits a maximum in presence of oxygen and water in the reactant mixture.
机译:由乙炔热解形成烟灰的研究已在实验室规模下进行,该实验使用的是通过电炉加热的石英反应器。这项工作包括一项系统的参数研究,我们在其中进行了以下变化:温度(800、900、1000和1100℃),初始烃浓度(乙炔的1.5%和10%),时空(8.1和16.2 s),存在和不存在。氧气浓度(0和1000 ppm)以及水的存在和水平(0.3和15%)。在这些实验中,我们对形成的烟灰进行了量化,并通过最终分析,BET面积测定和SEM技术对其进行了进一步表征,并且还确定了CO,CO_2和不同气态碳氢化合物(C_2H_2,CH_4,C_2H_6,C_2H_4的出口浓度)和C_6H_6)。结果表明,提高反应温度和C_2H_2的初始浓度以及时空,有利于烟灰的形成。在反应混合物中存在氧气和水的情况下,形成的烟灰量最大。

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