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Microplasma Source Based on a Dielectric Barrier Discharge for the Determination of Mercury by Atomic Emission Spectrometry

机译:基于电介质阻挡放电的微等离子体源,用于原子发射光谱法测定汞

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摘要

A low-power, atmospheric-pressure microplasma source based on a dielectric barrier discharge (DBD) has been developed for use in atomic emission spectrometry. The small plasma (0.6 mm X 1 mm X 10 mm) is generated within a glass cell by using electrodes that do not contact the plasma. Powered by an inexpensive ozone generator, the discharge ignites spontaneously, can be easily sustained in Ar or He at gas flow rates ranging from 5 to 200 mL min~(-1), and requires less than 1 W of power. The effect of operating parameters such as plasma gas identity, plasma gas flow rate, and residual water vapor on the DBD source performance has been investigated. The plasma can be operated without removal of residual water vapor, permitting it to be directly coupled with cold vapor generation sample introduction. The spectral background of the source is quite clean in the range from 200 to 260 nm with low continuum and structured components. The DBD source has been applied to the determination of Hg by continuous-flow, cold vapor generation and offers detection limits from 14 (He-DBD) to 43 pg mL~(-1) (Ar-DBD) without removal of the residual moisture. The use of flow injection with the He-DBD permits measurement of Hg with a 7.2 pg limit of detection, and with repetitive injections having an RSD of <2percent for a 10 ng mL~(-1) standard.
机译:已开发出一种基于介电势垒放电(DBD)的低功率,大气压微等离子体源,用于原子发射光谱分析。通过使用不与等离子体接触的电极,可以在玻璃单元内生成小的等离子体(0.6毫米X 1毫米X 10毫米)。放电由廉价的臭氧发生器提供动力,可自发点燃,可在5到200 mL min〜(-1)的气体流量下容易地在Ar或He中维持,所需功率不到1W。研究了诸如血浆气体身份,血浆气体流速和残留水蒸气等操作参数对DBD源性能的影响。可以在不除去残留水蒸气的情况下操作等离子体,从而使其与冷蒸气生成样品引入直接耦合。光源的光谱背景在200至260 nm范围内非常干净,具有低连续性和结构化成分。 DBD源已用于通过连续流,冷蒸气的产生来测定Hg,并且检测限为14(He-DBD)至43 pg mL〜(-1)(Ar-DBD),而不会去除残留水分。使用He-DBD流动注射可以测量7.2 pg的检出限,并且对于10 ng mL〜(-1)标准品的RSD <2%的重复进样,可以测量Hg。

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