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Methane Pyrolysis to Acetylene in Gliding Arc Plasma Driven by Magnetism

机译:甲烷热解,对乙炔的滑动弧等离子体驱动的滑动弧等离子体

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Acetylene is an important organic chemical material. Traditional process using CaC2 as raw material will lead to serious pollution and higher energy consumption. As a new process, methane pyrolysis in arc plasma has many advantages, such as simple technological process, less pollution, continuous preparation and easy magnification etc. Methane conversion to acetylene was performed in the gliding arc reactor under different specific energy and magnetic field intensity. The experimental results were analyzed, and showed that the specific energy and magnetic field intensity could affect the conversion rate of methane, selectivity and yield of acetylene, and energy consumption of acetylene.
机译:乙炔是重要的有机化学材料。使用CaC2作为原料的传统过程将导致严重的污染和更高的能耗。作为一种新的方法,弧等离子体中的甲烷热解具有许多优点,例如简单的技术过程,污染较少,连续制备和易于放大倍数等。在不同的特定能量和磁场强度下在滑动弧反应器中进行甲烷转化对乙炔进行。分析了实验结果,并表明特定能量和磁场强度可能影响甲烷,选择性和乙炔的选择性和产率的转化率,以及乙炔的能量消耗。

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