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Water uptake mechanism and germination of Erythrina velutina seeds treated with atmospheric plasma

机译:大气等离子体处理的刺桐种子的吸水机理和萌发

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The effect of plasma applied to mulungu (Erythrina velutina) seeds was studied to verify its influence on the germination, water absorption, wettability and structure of the seeds. The plasma jet used in this study was produced by dielectric barrier discharge (DBD) in a helium gas flow of 0.03?L/s at a distance of 13?mm for 60?s. The plasma treatment significantly affected the seed germination rate, which was approximately 5% higher than that of the untreated group. Micropyle and hilum contributed a greater proportion to uptake. When sealed in the hilar or micropyle regions the amount of water absorbed into the seed decreased approximately 75% compared to the unsealed seed. This difference suggests that these two regions together act cooperatively in the water absorption. However, when plasma treated seed was blocked in the micropyle region, water absorption was higher higher than in seeds blocked hilum. This difference suggests that the plasma treatment changed the wettability of the hilum more effectively than it changed the micropyle. These results indicate that plasma can significantly change the hydrophilicity, water absorption and percentage of seed germination in E. velutina.
机译:研究了等离子处理对木耳草种子的影响,以验证其对种子发芽,吸水,可湿性和种子结构的影响。本研究中使用的等离子流是由介电势垒放电(DBD)产生的,氦气流量为0.03?L / s,距离为13?mm,持续60?s。等离子体处理显着影响种子发芽率,比未处理组高约5%。微量元素和肺门对摄取的贡献更大。当密封在肺门或微粒区域时,与未密封的种子相比,吸收到种子中的水量减少了约75%。这种差异表明这两个区域在吸水方面共同起作用。但是,当等离子体处理过的种子被阻塞在微粒区域时,吸水率高于种子被阻塞的门扇。这种差异表明,等离子处理比改变微粒更有效地改变了肺门的润湿性。这些结果表明血浆可以显着改变velutina中的亲水性,吸水率和种子发芽率。

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