首页> 外国专利> LIQUID CATHODE GLOW DISCHARGE PLASMA-ATOMIC EMISSION SPECTRUM APPARATUS AND METHOD CAPABLE OF PERFORMING DIRECT GAS SAMPLING AND USED FOR DETECTING HEAVY METAL ELEMENT

LIQUID CATHODE GLOW DISCHARGE PLASMA-ATOMIC EMISSION SPECTRUM APPARATUS AND METHOD CAPABLE OF PERFORMING DIRECT GAS SAMPLING AND USED FOR DETECTING HEAVY METAL ELEMENT

机译:能够进行直接气体采样并用于检测重金属元素的液体阴极辉光放电等离子体原子发射光谱仪和方法

摘要

A liquid cathode glow discharge plasma-atomic emission spectrum apparatus and method capable of performing direct gas sampling and used for detecting a heavy metal element. The liquid cathode glow discharge plasma-atomic emission spectrum apparatus comprises a high-voltage power source, a snubber resistor (22), a hollow metal anode (10) and a liquid cathode. The hollow metal anode (10) is connected to a positive electrode of the high-voltage power source by means of the snubber resistor (22), and the liquid cathode is connected to a negative electrode of the high-voltage power source by means of a graphite electrode (9). The plasma apparatus is further formed into the following structure: a discharge region (11) is formed between the hollow metal anode (10) and the liquid cathode, and the hollow metal anode (10) further serves as a sampling pipeline, so that gas to be detected enters the discharge region (11) and is excited. The apparatus is simple, has a small volume, is convenient to install, is low in running power consumption, is operated at atmospheric pressure, requires no atomizer, requires no vacuum system, easily achieves miniaturization, performs sampling in the form of gas, does not affect plasma stability thereof, has high sensitivity in metal element analysis, and is applicable to the analysis of a metal element in gas.
机译:能够进行直接气体采样并用于检测重金属元素的液体阴极辉光放电等离子体原子发射光谱设备和方法。液体阴极辉光放电等离子体原子发射光谱设备包括高压电源,缓冲电阻器(22),中空金属阳极(10)和液体阴极。中空金属阳极(10)通过缓冲电阻器(22)连接到高压电源的正极,液体阴极通过电阻器(22)连接到高压电源的负极。石墨电极(9)。等离子装置进一步形成为以下结构:在中空金属阳极(10)和液体阴极之间形成放电区域(11),中空金属阳极(10)进一步用作采样管线,从而使气体被检测到的气体进入放电区域(11)并被激发。设备简单,体积小,安装方便,运行功耗低,在大气压下运行,不需要雾化器,不需要真空系统,容易实现小型化,以气体形式进行采样,不影响其等离子体稳定性,在金属元素分析中灵敏度高,适用于气体中金属元素的分析。

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