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Methane conversion to H-2 and higher hydrocarbons using non-thermal plasma dielectric barrier discharge reactor

机译:使用非热等离子体介质屏障放电反应器转化为H-2和更高烃的甲烷转化

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摘要

The use of Non-Thermal Plasma (NTP) reactors has been proposed as an alternative solution to the World's stranded gas challenge due to their ability to perform reactions, such as direct conversion of methane to H-2 and higher hydrocarbons (> C-1), at room temperature. An optimisation study varying plasma power (10-50 W) and residence time (3.82-19.08 s) was performed using a DBD reactor with no catalyst. The effects of additives including water vapour, nitrogen, and hydrogen were also explored. The optimum conditions for methane conversion (36.5%) without additives at ambient temperature (20 degrees C) were found to be maximum at 50 W and 19.08 s, resulting in a H-2 yield of 13.9%. The key finding from the additive study was that the addition of 10% N-2 resulted in an increase in conversion (37.6%) and an increase in H-2 yield (14.5%), at 50 W and 19.08 s.
机译:已经提出了非热等离子体(NTP)反应器的替代解决方案,这是世界上滞留的气体攻击,因为它们的执行反应,例如将甲烷直接转化为H-2和更高的烃(> C-1 ), 在室温下。 使用具有催化剂的DBD反应器进行不同的等离子体功率(10-50W)和停留时间(3.82-19.08s)的优化研究。 还探讨了添加剂包括水蒸气,氮和氢气的作用。 发现在环境温度(20℃)下没有添加剂的甲烷转化率(36.5%)的最佳条件在50W和19.08秒下最大,得到H-2产率为13.9%。 从添加剂研究中发现的关键是加入10%N-2导致转化率的增加(37.6%)和H-2产率的增加(14.5%),50W和19.08秒。

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