Modified surfatron device to improve microwave-plasma-assisted generation of RONS and methylene blue degradation in water

等离子体 化学 微波食品加热 亚甲蓝 大气压力 降级(电信) 大气压等离子体 丝状化 水溶液 等离子清洗 分析化学(期刊) 有机化学 电信 物理 海洋学 光催化 量子力学 计算机科学 地质学 催化作用
作者
Juan Amaro-Gahete,Francisco J. Romero‐Salguero,M. C. Garcı́a
出处
期刊:Chemosphere [Elsevier BV]
卷期号:349: 140820-140820
标识
DOI:10.1016/j.chemosphere.2023.140820
摘要

Microwave-induced plasmas generated at atmospheric pressure are very attractive for a great variety of applications since they have a relatively high electron density and can generate large amounts of reactive species. Argon plasmas can be sustained inside dielectric tubes but are radially contracted and exhibit filamentation effects when the diameter of the tube is not narrow enough (over 1.5 mm). In this work, we describe a new approach for creating microwave (2.45 GHz) plasmas under atmospheric pressure conditions by using a surfatron device and power from 10 W. This modified design of the reactor enables the sustenance of non-filamented argon plasmas. These new plasmas have a higher gas temperature and electron density than the plasma generated in the original surfatron configuration. The new design also allows for the maintenance of plasmas with relatively high proportions of water, resulting in the generation of larger quantities of excited hydroxyl radicals (·OH*). Thus, this novel configuration extends the applicability of microwave-induced plasmas by enabling operation under new conditions. Finally, the degradation of methylene blue (MB) in aqueous solutions has been assessed under different initial dye concentrations and argon flow conditions. The new plasma produces a substantial increase in hydrogen peroxide and nitrate concentrations in water and leads to a noteworthy enhancement in MB degradation efficiency. The introduction of water into the plasma produces a minor additional improvement.
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