论文标题

种子包装的介电屏障设备用于等离子体农业:通过等效电模型理解其电性能

Seed-packed dielectric barrier device for plasma agriculture: understanding its electrical properties through an equivalent electrical model

论文作者

Judée, Florian, Dufour, Thierry

论文摘要

种子已被包装在介电屏障装置中,在该装置中产生了冷大气等离子体以改善其发芽特性。通过同等电气模型,在这里证明了实验性有效性的等效电气模型,人们特别关注了所产生的等离子电性能。在此模型中,根据它们是否包含电荷(或不包含电荷),并根据其类型的培养基(气体,种子或绝缘子),将它们的间间隙细分为4种基本域。该模型可以通过在无层配置(即反应堆中的无种子)或包装材料的配置(反应器中的种子)中测量和推论几个参数(在反应堆中无种子)来研究种子对等离子体电性能的影响。在第二种情况下,我们研究了种子如何影响种子标本(豆类,萝卜,香菜,小扁豆,向日葵和玉米)的血浆电参数。还研究了分子氧(0-100 SCCM)与连续的氦气流速(2 SLM)混合的影响,尤其是通过细丝分解电压,每个细丝和等离子功率的电荷。证明这种床包装的驱动器会增加气体电容,以减少β参数的减少和以种子依赖性方式的细丝击穿电压的变化。最后,我们展示了如何使用等效电模型来评估接触点的总体积,种子在包装床构型中的电容,并且我们证明了血浆可以通过六个农艺标本中的四个引起发芽效应。

Seeds have been packed in a dielectric barrier device where cold atmospheric plasma has been generated to improve their germinative properties. A special attention has been paid on understanding the resulting plasma electrical properties through an equivalent electrical model whose experimental validity has been demonstrated here. In this model, the interelectrode gap is subdivided into 4 types of elementary domains, according to whether they contain electric charges (or not) and according to their type of medium (gas, seed or insulator). The model enables to study the influence of seeds on the plasma electrical properties by measuring and deducing several parameters (charge per filament, gas capacitance, plasma power, ...) either in no-bed configuration (i.e. no seed in the reactor) or in packed-bed configuration (seeds in the reactor). In that second case, we have investigated how seeds can influence the plasma electrical parameters considering six specimens of seeds (beans, radishes, corianders, lentils, sunflowers and corns). The influence of molecular oxygen (0-100 sccm) mixed with a continuous flow rate of helium (2 slm) is also investigated, especially through filaments breakdown voltages, charge per filament and plasma power. It is demonstrated that such bed-packing drives to an increase in the gas capacitance, to a decrease in the beta-parameter and to variations of the filaments' breakdown voltages in a seed-dependent manner. Finally, we show how the equivalent electrical model can be used to assess the total volume of the contact points, the capacitance of the seeds in the packed-bed configuration and we demonstrate that germinative effects can be induced by plasma on four of the six agronomical specimens.

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