论文标题
高压CO $ _2 $与纳秒脉冲放电分离
High-Pressure CO$_2$ Dissociation with Nanosecond Pulsed Discharges
论文作者
论文摘要
在高压批处理反应器中研究了Co $ _2 $转换为CO中CO转化为CO的效率(NRP)。稳定的放电可在最多12点栏处获得。 Co $ _2 $分裂的副产品用气相色谱法测量。确定能源效率在一系列处理时间,脉冲能量和填充压力方面确定。发现能源效率约为20%,仅对等离子体工作参数较弱,即CO $ _2 $转换的范围几乎是线性依赖于特定能量输入的。能源效率为23%,可达到高达14%的转化率。在较长的处理时间内,由于重组反应的意义增加,效率下降,如宏观动力学机制所描述的那样。讨论了据信在纳秒脉冲放电中起重要作用的反应途径。看来,在这些类型的短脉冲放电中,振动激发在CO $ _2 $转换中没有重要作用。结果还引起人们对两种特定电子激发反应的相对重要性的关注。
The efficiency of the conversion of CO$_2$ into CO with nanosecond repetitively pulsed discharges (NRP) is investigated in a high pressure batch reactor. Stable discharges are obtained at up to 12~bar. By-products of CO$_2$ splitting are measured with gas chromatography. The energy efficiency is determined for a range of processing times, pulse energy, and fill pressures. The energy efficiency is found to be approximately 20% and is only weakly sensitive to the plasma operating parameters, i.e., the extent of CO$_2$ conversion is almost linearly-dependent on the specific energy input. A conversion rate of up to 14% is achieved with an energy efficiency of 23%. For long processing times, a drop in efficiency is observed, due to the increasing significance of recombination reactions, as described by a macroscopic kinetic mechanism. Reaction pathways that are believed to play an important role in nanosecond pulsed discharges are discussed. It appears that vibrational excitation does not play a significant role in CO$_2$ conversion in these types of short-pulse discharge. Results also draw attention to the relative importance of two particular electronic excitation reactions.