冷大气压等离子体射流和等离子体灯与植物的相互作用:电刺激、活性氧和氮物种及其副作用

Volkov Alexander G, Hairston Jewel S, Patel Darayas, Sarkisov Sergey
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摘要

冷大气压等离子体(CAPP)处理是一种保护种子、植物、花卉和树木免受疾病和感染并显著提高作物产量的高效方法。在这里,我们发现,如果等离子体暴露时间过长,冷大气压氦等离子体射流(CAPPJ)也会对植物造成副作用和损害。活性氧和氮物种(RONS)、电磁场和CAPPJ发射的紫外线光子会对植物产生积极和消极的影响。CAPPJ可以与生物组织表面相互作用。等离子灯对芦荟、卷心菜和西红柿没有明显的副作用。等离子体灯和冷大气压等离子体He射流在植物中引起强烈的电信号,其振幅非常高,频率等于等离子体产生的频率。使用等离子体灯对生物组织进行电刺激可以帮助避免生物组织中与RONS、UV光子的产生以及与冷等离子体的直接相互作用相关的副过程。如果等离子体暴露时间足够短,CAPP技术可以在农业、医学、食品工业、化学、表面科学、材料科学和工程应用中发挥重要作用,而不会产生副作用。
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Cold Atmospheric Pressure Plasma Jet and Plasma Lamp Interaction with Plants: Electrostimulation, Reactive Oxygen and Nitrogen Species, and Side Effects
Cold atmospheric pressure plasma (CAPP) treatment is a highly effective method of protecting seeds, plants, flowers, and trees from diseases and infection and significantly increasing crop yields. Here we found that cold atmospheric pressure He-plasma jet (CAPPJ) can also cause side effects and damage to plants if the plasma exposure time is too long. Reactive oxygen and nitrogen species (RONS), electromagnetic fields, and ultraviolet photons emitted by CAPPJ can cause both positive and negative effects on plants. CAPPJ can interact with biological tissue surfaces. The plasma lamp has no visible side effects on Aloe vera plants, cabbage, and tomatoes. A plasma lamp and a cold atmospheric pressure plasma He-jet cause strong electrical signaling in plants with a very high amplitude with frequencies equal to the frequency of plasma generation. The use of plasma lamps for electrostimulation of biological tissues can help to avoid side processes in biological tissues associated with the generation of RONS, UV photons, and direct interaction with cold plasma. CAPP technology can play an important role in agriculture, medicine, the food industry, chemistry, surface science, material science, and engineering applications without side effects if the plasma exposure is short enough.
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