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The impact of cold atmospheric pressure plasma jet on seed germination and seedlings growth of fenugreek (Trigonella foenum-graecum)

机译:冷大气压等离子体射流对春季萌发和幼苗生长的影响(三角形Foenum-Graecum)

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The effects of cold atmospheric-pressure plasma jet (CAPPJ) were investigated on germination and early seedling growth of fenugreek (Trigonella foenum-graecum L) seeds. A two-electrode argon CAPPJ system with and without an additional grounded electrode [accelerating grounded (AG) electrode] was used at different exposure times. After 16 h of observation, the germination rates increased by 4 and 7 times, without and with using an AG electrode, respectively, for 1 min of plasma exposure. An increase in shoot fresh weight was observed, especially at 10 min exposure time. A high dry weight of root and shoot at 1 min-AG exposure time was observed. The root:shoot ratio was lower in plasma-treated seedlings, compared with the control plants. The study found that the 0-radical emission line (777.4 nm) enhanced 5 times, due to the presence of an AG electrode, which increased the axial electric field and led to the formation of more streamers. The three stated effects (0-radicals, enhancement of the electric field and streamers) could be the cause for the stimulation of seed germination and seedling growth parameters when using the CAPPJ. The scanning electron microscope images showed the etching of the seed surface layers, which was more pronounced when an AG electrode was applied. The results of the current study indicate that the germination rates increased due to the increase of O-radical concentration and the etching of the seed surfaces.
机译:研究了冷大气压等离子体喷射(CAPPJ)的萌发和春季(Trigonella Foenum-Graecum L)种子的萌发和早期幼苗生长。在不同的暴露时间下使用具有和不具有额外接地电极的双电极氩Cappj系统[加速接地(Ag)电极]。在观察16小时后,发芽率分别增加了4至7次,没有和使用Ag电极,血浆暴露的1分钟。观察到芽鲜重量的增加,特别是在10分钟的暴露时间。观察到1 min-Ag暴露时间的高干重的根和芽。与对照植物相比,根源:血浆处理幼苗中的芽比下降。该研究发现,由于Ag电极的存在,0-自由基排放线(777.4nm)增强了5次,其增加了轴向电场并导致形成更多飘带。三个规定的效果(0-自由基,电场和飘带的增强)可以是使用CAPPJ时刺激种子萌发和幼苗生长参数的原因。扫描电子显微镜图像显示蚀刻种子表面层,当施加Ag电极时更明显。目前研究的结果表明,由于O-自由基浓度的增加和种子表面的蚀刻,发芽率增加。

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