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Physico-chemical modeling of positive corona discharge in carbon dioxide

机译:二氧化碳中正电晕放电的物理化学模型

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Positive wire-to-cylinder corona discharge in pure CO2 has been simulated using a model that includes elementary plasma processes (ionization, electron attachment and detachment, ion recombination, etc.) and chemical reactions between neutral species. The plasma chemistry model is included in the continuity equations of species, which are coupled with Poissons equation for the electric field and the energy conservation equation for the gas temperature. The experimental values of voltage and current are used as input data into the numerical simulation, and the spatial distributions of electrons, ions, atoms and molecules are then predicted for different gas flow rates. The average concentrations of ozone and carbon monoxide inside the discharge reactor have been experimentally determined by means of ultraviolet and FTIR spectrometry, and their values are compared with the results of the numerical simulation.
机译:已使用包括基本等离子体过程(电离,电子附着和脱离,离子重组等)和中性物种之间的化学反应的模型模拟了纯CO 2 中线对圆柱的正电晕放电。等离子体的化学模型包含在物种的连续性方程中,该方程与电场的泊松方程和气体温度的能量守恒方程相耦合。电压和电流的实验值用作数值模拟的输入数据,然后针对不同的气体流速预测电子,离子,原子和分子的空间分布。通过紫外线和FTIR光谱法,实验确定了放电反应器内的臭氧和一氧化碳的平均浓度,并将其值与数值模拟结果进行了比较。

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