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Coal pyrolysis to acetylene using dc hydrogen plasma torch: effects of system variables on acetylene concentration

机译:直流氢等离子体炬将煤热解为乙炔:系统变量对乙炔浓度的影响

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摘要

In order to unveil the inner mechanisms that determine acetylene concentration, experimental studies on the effect of several parameters such as plasma torch power, hydrogen flux and coal flux were carried out from coal pyrolysis in a dc plasma torch. Xinjiang long flame coals including volatile constituents at a level of about 42% were used in the experiment. Under the following experimental conditions, namely plasma torch power, hydrogen flow rate and pulverized coal feed speed of 2.12 MW, 32 kg h(-1) and 900 kg h(-1), respectively, acetylene volume concentration of about 9.4% was achieved. The experimental results indicate that parameters such as plasma torch power and coal flux play important roles in the formation of acetylene. Acetylene concentration increases inconspicuously with hydrogen flux. A chemical thermodynamic equilibrium model using the free energy method is introduced in this paper to numerically simulate each experimental condition. The numerical results are qualitatively consistent with the experimental results. Two parameters, i.e. the gas temperature and the ratio of hydrogen/carbon, are considered to be the dominant and independent factors that determine acetylene concentration.
机译:为了揭示确定乙炔浓度的内部机理,在直流等离子炬中通过煤热解进行了对等离子炬功率,氢通量和煤通量等几个参数的影响的实验研究。实验中使用的新疆长焰煤中挥发性成分含量约为42%。在以下实验条件下,即等离子炬功率,氢气流速和煤粉进料速度分别为2.12 MW,32 kg h(-1)和900 kg h(-1),乙炔体积浓度约为9.4% 。实验结果表明,等离子炬功率和煤通量等参数在乙炔的形成中起着重要作用。乙炔浓度随氢通量增加不明显。介绍了一种使用自由能方法的化学热力学平衡模型,以数值模拟每种实验条件。数值结果与实验结果在质量上是一致的。两个参数,即气体温度和氢/碳比被认为是决定乙炔浓度的主要和独立因素。

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