超高频等离子体加速器中H2S解离过程的理论分析与实验研究

Z. Znak
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引用次数: 0

摘要

对切向供气等离子体化学反应器的气动条件进行了理论分析。结果表明,由于反应器中产生旋流,存在压力梯度,因此沿垂直轴存在真空区,这有助于等离子体放电的发生。在旋流等离子体分解硫化氢的实验研究和利用单色光滤光片对等离子体放电图像进行分析的基础上,建立了等离子体放电的一般结构。建立了反应器中温度梯度对硫簇形成可能性的影响,这是形成高分子量产物聚合硫的先决条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical analysis and experimental study of H2S dissociation processes in ultrahigh-frequency plasmotron
Theoretical analysis of aerodynamic conditions in a plasma chemical reactor with tangential gas supply is carried out. It is shown that due to the creation of a swirling flow in the reactor there is a pressure gradient, due to this along the vertical axis there is a vacuum zone, which contributes to the occurrence of plasma discharge. On the basis of the carried-out experimental researches of plasmolysis of hydrogen sulphide in a swirling stream and the analysis of images of the plasma discharge with use of monochromatic light filters the general structure of the plasma discharge is established. The influence of the temperature gradient in the reactor on the possibility of the formation of sulphur clusters as a prerequisite for the formation of a high molecular weight product – polymeric sulphur – was established.
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