首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Liquid sampling-atmospheric pressure glow discharge optical emission spectroscopy detection of laser ablation produced particles: A feasibility study
【24h】

Liquid sampling-atmospheric pressure glow discharge optical emission spectroscopy detection of laser ablation produced particles: A feasibility study

机译:液体采样-大气压辉光放电光发射光谱法检测激光烧蚀产生颗粒的可行性研究

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The use of a liquid sampling-atmospheric pressure glow discharge (LS-APGD) microplasma source as an alternative to conventional inductively coupled plasma (ICP) detection of laser ablation (LA) produced particles using a Nd:YAG laser at 1064 nm is demonstrated. This configuration utilizes a 180° geometry, which is different from the 40° geometry that was used to ionize ablated particles followed by mass spectrometric detection. The use of a hollow counter electrode (nickel, 0.3 cm o.d., 0.1 cm i.d.) was implemented to introduce ablated particles directly into the APGD plasma with helium as a carrier gas. The LS-APGD source was optimized using ablated copper as the test sample (helium carrier gas flow rate (0.30 L min~(-1) He), discharge current (60 mA), laser power (44 mJ), and solution electrode sheath gas (0.2 L min~(-1) He) and solution flow rates (10 uL min~(-1) 5% HNO3)). Standard brass samples having known Zn/Cu percentages were ablated and analyzed using the LS-APGD source. As a comparison, the established technique oflaser-induced breakdown spectroscopy (LIBS) was used to analyze the same set of brass standards under similar ablation conditions to the LS-AGPD measurements, yielding comparable results. The Zn/Cu ratio results for the LS-APGD and LIBS measurements showed good similarity to previous measurements using ICP-MS detection. The performance of the LS-APGD-OES microplasma, comparable to well established methods, with lower capital and operational overhead expenses, suggests a great deal of promise as an analytical excitation source.
机译:演示了使用液体采样-大气压辉光放电(LS-APGD)微等离子体源替代使用1064 nm Nd:YAG激光对激光烧蚀(LA)产生的颗粒进行常规感应耦合等离子体(ICP)检测的方法。此配置利用的是180°几何形状,该几何形状不同于用于离子化烧蚀颗粒然后进行质谱检测的40°几何形状。使用空心的对电极(镍,外径0.3厘米,内径0.1厘米)来实现,以氦作为载气将烧蚀的颗粒直接引入APGD等离子体中。 LS-APGD源使用烧蚀的铜作为测试样品(氦载气流速(0.30 L min〜(-1)He),放电电流(60 mA),激光功率(44 mJ)和溶液电极护套进行了优化气体(0.2 L min〜(-1)He)和溶液流速(10 uL min〜(-1)5%HNO3)。使用LS-APGD源烧蚀和分析具有已知Zn / Cu百分比的标准黄铜样品。作为比较,使用已建立的激光诱导击穿光谱技术(LIBS)在与LS-AGPD测量相似的烧蚀条件下分析同一套黄铜标准品,产生可比的结果。 LS-APGD和LIBS测量的Zn / Cu比结果与以前使用ICP-MS检测的测量结果具有很好的相似性。 LS-APGD-OES等离子体的性能可与完善的方法相比,具有较低的资金投入和运营费用,这表明它作为分析激发源具有很大的前景。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号