Lee Ye Rin, Kim Do Yeob, Kim Jae Young, Lee Da Hye, Bae Gyu Tae, Jang Hyojun, Park Joo Young, Jung Sunghoon, Jung Eun Young, Park Choon-Sang, Lee Hyung-Kun, Tae Heung-Sik
School of Electronic and Electrical Engineering, College of IT Engineering, Kyungpook National University, Daegu 41566, Republic of Korea.
Superintelligence Creative Research Laboratory, Electronics and Telecommunications Research Institute (ETRI), Daejeon 34129, Republic of Korea.
Nanomaterials (Basel). 2023 Dec 22;14(1):40. doi: 10.3390/nano14010040.
To generate a stable and effective air-liquid discharge in an open atmosphere, we investigated the effect of the dielectric barrier on the discharge between the pin electrode and liquid surface in an atmospheric-pressure plasma reactor. The atmospheric-pressure plasma reactor used in this study was based on a pin-plate discharge structure, and a metal wire was used as a pin-type power electrode. A plate-type ground electrode was placed above and below the vessel to compare the pin-liquid discharge and pin-liquid barrier discharge (PLBD). The results indicated that the PLBD configuration utilizing the bottom of the vessel as a dielectric barrier outperformed the pin-liquid setup in terms of the discharge stability and that the concentration of reactive species was different in the two plasma modes. PLBD can be used as a digestion technique for determining the phosphorus concentration in natural water sources. The method for decomposing phosphorus compounds by employing PLBD exhibited excellent decomposition performance, similar to the performance of thermochemical digestion-an established conventional method for phosphorus detection in water. The PLBD structure can replace the conventional chemical-agent-based digestion method for determining the total dissolved phosphorus concentration using the ascorbic acid reduction method.
为了在开放大气中产生稳定且有效的气液放电,我们研究了介质阻挡对大气压等离子体反应器中针电极与液体表面之间放电的影响。本研究中使用的大气压等离子体反应器基于针板放电结构,金属丝用作针型功率电极。在容器上方和下方放置平板型接地电极,以比较针 - 液体放电和针 - 液体阻挡放电(PLBD)。结果表明,利用容器底部作为介质阻挡的PLBD配置在放电稳定性方面优于针 - 液体设置,并且两种等离子体模式下活性物种的浓度不同。PLBD可用作测定天然水源中磷浓度的消解技术。采用PLBD分解磷化合物的方法表现出优异的分解性能,类似于热化学消解(一种既定的常规水中磷检测方法)的性能。PLBD结构可以替代使用抗坏血酸还原法测定总溶解磷浓度的传统基于化学试剂的消解方法。