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1. 桂林电子科技大学 生命与环境科学学院,广西 桂林,541004
2. 广西信息科学实验中心,广西 桂林,541004
修回日期:2015-07-01,
纸质出版日期:2015-12-25
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李华, 李玉凯, 郭超群等. 利用离子风实现后吸式进样与电离集成的离子源[J]. 光学精密工程, 2015,23(12): 3405-3413
LI Hua, LI Yu-kai, GUO Chao-qun etc. Ion source with posterior suck sampling and ionization by ionic wind[J]. Editorial Office of Optics and Precision Engineering, 2015,23(12): 3405-3413
李华, 李玉凯, 郭超群等. 利用离子风实现后吸式进样与电离集成的离子源[J]. 光学精密工程, 2015,23(12): 3405-3413 DOI: 10.3788/OPE.20152312.3405.
LI Hua, LI Yu-kai, GUO Chao-qun etc. Ion source with posterior suck sampling and ionization by ionic wind[J]. Editorial Office of Optics and Precision Engineering, 2015,23(12): 3405-3413 DOI: 10.3788/OPE.20152312.3405.
针对现用离子源工作时需外接庞大复杂的供气装置
不利于便携的不足
提出了一种基于离子风的敞开式离子源和微型气泵集成系统。设计了一种新型阵列式针-柱放电电极结构
其可以在大气压下实现敞开式离子源和微型气泵双重功能。选用0~-20 000 V的负直流高压供电电源
10 mm的针-柱间距
分别对单排针-单柱
单排针-双柱
双排针-双柱3种放电电极结构进行电晕放电
并采用testo 405-V1风速计进行风速测量。结果表明
双排针-双柱产生的风速最大。采用COMSOL多物理场仿真软件对3种电极结构进行离子风仿真
并与实验结果对比
结果吻合良好。以双排针-双柱电极结构进行了离子源和微型气泵集成系统实验。结果显示:该结构放电产生的离子风最大为2.11 m/s
可以将装置后端处的乙酸样品吸入;电离产生的最大电流信号为-10 nA左右
表明该装置实现了电离功能。本文所设计的离子源和微型气泵集成系统
实现了后吸式进样并电离
省去了庞大复杂的供气装置
有望应用于便携式分析仪器中。
As existing ion source requires a complex external huge gas supply and is not convenient to be carried
this paper proposes a integrated system by an opened ion source and a micro gas pump based on ionic wind. A new needle array-cylinder discharge electrode structure was designed to realize the double functions of the open ion source and the micro air pump in ambient air. When the power supply was served as a negative DC high voltage of 0--20 000 V
and the distance between the needle and the cylinder was 10 mm
the corona discharge was implemented by three types of discharge electrode structures respectively: single-array-needle and single-cylinder
single-array-needle and double-cylinder
double-array-needle and double-cylinder
and the wind velocity was measured by the testo 405-V1 anemometer。The result shows that the maximum wind velocity is produced by the double-array-needle and double-cylinder structure. By using three types of electrode structures
COMSOL multi physic simulation software was applied to simulation of the ion wind and the results show that the simulation is coincided with that of the experimental results well. Based on the double-array-needle and double-cylinder structure
the integrated system experiment of the ion source and the micro air pump was conducted. The results demonstrate that the maximum ion wind generated by the structure discharge is 2.11 m/s
which can suck an acetic acid sample at the bottom into the device. Moreover
the maximum electric current value reaches about -10 nA tested by the Faraday cup
which shows that the device realizes the ionization function. In conclusion
the integrated system of the ion source and the micro air pump in this paper realizes posterior suck sampling and ionization
omits a huge complex external gas supplies
and is expected to be applied to portable analytical instruments.
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刘坤,廖峥,侯世英,等. 大气压直流辉光放电装置的实验与分析[J]. 重庆大学学报, 2013,36(3):71-76. LIU K, LIAO ZH, HOU SH Y, et al.. Experiment and analysis of an atmospheric DC glow discharge device [J]. Journal of Chongqing University, 2013,36(3):71-76.(in Chinese)
檀景辉. 基于脉冲正电晕放电离子源的离子迁移谱仪研究[D]. 天津: 天津大学, 2010. TAN J H. Research of Ion Mobility Spectrometer Based on Positive Pulse Corona Discharge Ion Source [D].Tianjin: Tianjin University, 2010.(in Chinese)
刘欣. 用于离子迁移色谱仪的负电晕放电电子源的研究[D]. 武汉:华中科技大学,2012. LIU X. The Negative Corona Discharge Electron Source for Ion Mobility Spectrometry[D].Wuhan: Huazhong University of Science and Technology,2012.(in Chinese)
李华,韦昌严,曾德查,等. 针-柱结构敞开式离子源和微型气泵集成系统的放电特性[J]. 光学 精密工程,2014,22(6):1531-1537. LI H, WEI CH Y, ZENG D CH, et al.. Discharge properties of integrated system of ambient ion source and micro air pump based on needle-to-cylinder structure[J]. Opt. Precision Eng., 2014, 22(6):1531-1537. (in Chinese)
ALEXANDRE A M. Simulation of a wire-cylinder-plate positive corona discharge in nitrogen gas at atmospheric pressure [J]. Physics of Plasmas, 2012,19:063502-1-6.
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