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Spectral characteristics of cotton seeds treated by a dielectric barrier discharge plasma

机译:介质阻挡放电等离子体处理棉籽的光谱特性

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摘要

Cold atmospheric plasma has recently emerged as a simple, low-cost and efficient physical method for inducing significant biological responses in seeds and plants without the use of traditional, potentially environmentally-hazardous chemicals, fungicides or hormones. While the beneficial effects of plasma treatment on seed germination, disease resistance and agricultural output have been reported, the mechanisms that underpin the observed biological responses are yet to be fully described. This study employs Fourier Transform Infrared (FTIR) spectroscopy and emission spectroscopy to capture chemical interactions between plasmas and seed surfaces with the aim to provide a more comprehensive account of plasma−seed interactions. FTIR spectroscopy of the seed surface confirms plasma-induced chemical etching of the surface. The etching facilitates permeation of water into the seed, which is confirmed by water uptake measurements. FTIR of exhaust and emission spectra of discharges show oxygen-containing species known for their ability to stimulate biochemical processes and deactivate pathogenic microorganisms. In addition, water gas, CO2, CO and molecules containing −C(CH3)3− moieties observed in FTIR spectra of the exhaust gas during plasma treatment may be partly responsible for the plasma chemical etching of seed surface through oxidizing the organic components of the seed coat.
机译:最近,冷大气等离子体已经成为一种简单,低成本,高效的物理方法,可以在不使用传统的,可能对环境造成危害的化学物质,杀真菌剂或激素的情况下,在种子和植物中诱导重要的生物反应。虽然已经报道了等离子体处理对种子发芽,抗病性和农业产量的有益影响,但尚未充分描述支撑观察到的生物学反应的机制。这项研究采用傅立叶变换红外(FTIR)光谱和发射光谱来捕获血浆和种子表面之间的化学相互作用,目的是提供对血浆种子相互作用的更全面的了解。种子表面的FTIR光谱证实了等离子体诱导的表面化学腐蚀。蚀刻促进水渗透到种子中,这通过吸水率测量得到证实。排气的FTIR和放电的发射光谱显示出含氧物质,它们具有刺激生化过程和使病原微生物失活的能力。此外,在等离子处理过程中,在废气的FTIR光谱中观察到的水气,CO2,CO和含有-C(CH3)3-的分子可能会通过氧化种子的有机成分而部分地对种子表面进行等离子化学蚀刻。种皮。

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