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Enhanced laser-induced plasma spectroscopy (LIPS) by second-pulse selective wavelength excitation

Enhanced laser-induced plasma spectroscopy (LIPS) by second-pulse selective wavelength excitation
通过第二脉冲选择性波长激发增强激光诱导等离子体光谱 (LIPS)
批准号:
322140-2005
负责人:
Vidal, François
金额:
$9.76万
依托单位国家:
加拿大
项目类别:
Strategic Projects - Group
财政年份:
2008
资助国家:
加拿大
项目状态:
已结题
起止时间:
2008-01-01 至 2009-12-31

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中文摘要
翻译
工业上总是非常需要能够以尽可能低的成本进行快速、快速和现场化学分析的技术。近年来,激光诱导等离子体光谱(LIPS)技术已成为对多种材料进行实时光谱分析的重要工具。在传统的嘴唇中,中等强度的激光脉冲聚焦到目标材料上,将少量炎热和明亮的物质(等离子体)从撞击部位驱逐出去。然后用光谱仪分析这种等离子体发出的辐射,以达到定性和定量的目的。与其他现有技术相比,LIPS技术具有许多显著的优势,因为它不需要样品制备,并且允许远程和现场实时分析。然而,与更为繁琐的传统分析技术相比,目前用于检测痕量元素的灵敏度较差,盖过了这些优势。该项目的目标是大幅提高LIPS技术的灵敏度。为此,我们建议基本上使用两个激光脉冲,而不是像传统嘴唇那样只使用一个激光脉冲。第一个脉冲产生等离子体,第二个脉冲共振激发等离子体中给定原子物种的特定量子能级。第二个激光脉冲的作用是增加感兴趣的原子物种的发射,以便更容易地进行检测。在这一总体方案的框架内,我们还建议研究使用非常短的激励脉冲,以便使检测信号与背景辐射有更好的对比度。该项目涉及来自一所大学(INRS)和一家政府实验室(NRC-IMI)的合作者,他们多年来一直在积极研究LIPE,以及三家加拿大公司(INCO、Pharma激光和Scintrex Trace),它们都是业界感兴趣的公司。由于这些公司已经参与了LIPS的短期实施,与NRC-IMI合作,这个项目对他们来说是一个在比最初预期更大的范围内应用LIPS技术的机会。
英文摘要
There is always a great need in industry for technologies that allow rapid, fast and in-situ chemical analysis at, if possible, low cost. Over recent years, the Laser-Induced Plasma Spectroscopy (LIPS) technique has become an important tool for real-time spectrochemical analysis of a wide variety of materials. In conventional LIPS, a moderately powerful laser pulse is focused onto a target material to expel a small amount of hot and bright matter (a plasma) from the impact site. The radiation emitted from this plasma is then analyzed by means of a spectrometer for qualitative and quantitative purposes. The LIPS technique has many striking advantages over the other existing techniques, since no sample preparation is required, and it allows remote and in-situ real time analysis. However, these advantages are currently outweighed by a poorer sensitivity than for the more cumbersome conventional analytical techniques for the detection of trace elements. The objective of this project is to increase substantially the sensitivity of the LIPS technique. For that purpose, we propose to use basically two laser pulses instead of only one as in conventional LIPS. The first pulse generates the plasma and the second pulse resonantly excites a specific quantum level of a given atomic species inside the plasma. The effect of this second laser pulse is to increase the emission of the atomic species of interest for an easier detection. In the framework of this general scheme we also propose to investigate the use of very short excitation pulses in order to allow a better contrast of the detected signal with the background radiation. The project involves collaborators from a university (INRS) and a government laboratory (NRC-IMI) who have been working actively on LIPS together for several years, as well as three Canadian companies (INCO, Pharma Laser, and Scintrex Trace) of wide industrial interest. Since these companies are already involved in short-term implementation of LIPS, in collaboration with NRC-IMI, this project appear to them as an opportunity to apply the LIPS technique on a much larger scale than expected initially.
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  • 批准号:
    60508013
  • 项目类别:
    青年科学基金项目
  • 资助金额:
    23.0万元
  • 批准年份:
    2005
  • 负责人:
    薄勇
  • 依托单位: