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Dual pulse laser induced breakdown spectroscopy on Cu concentration in CuSO_4 solution with liquid jet

机译:双脉冲激光诱导击穿光谱法研究液体喷射法对CuSO_4溶液中Cu的浓度

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Laser induced breakdown spectroscopy (LIBS) is a promising technique, analyzing spectrum of plasma, to detect elements of solid, liquid or gaseous samples. It has many advantages, including in-situ and online detection, remote analysis, non-preparation of samples, and simultaneously multi-elements detection. Aiming at detecting detrimental elements in the polluted river and water, in this paper, collinear dual-pulse (DP) Laser-induced breakdown spectroscopy (LIBS) with liquid jet was employed to analyze emission spectrum of Cu element in the CuSO_4 solution. We investigated the effect of laser pulse energies ratio and time delay between two lasers on signal intensity, which were simply given by theoretical model in laser-induced plasma for explaining various behaviors of emission spectrum. It was inferred that the maximum signal enhancement of DP-LIBS experiment was roughly 4.5 times greater than that of SP case. The limit of detection (LOD) of Cu using DP-LIBS was approximately 15 times lower than that of SP-LIBS. Results of this research indicate that collinear DP-LIBS is an effective approach to improve the plasma emission intensity and reduce the value of LOD, the application of which can be considered into the environmental problem of the water pollution.
机译:激光诱导击穿光谱法(LIBS)是一种很有前途的技术,可以分析等离子体的光谱,以检测固体,液体或气体样品中的元素。它具有许多优势,包括原位和在线检测,远程分析,样品的非制备以及同时进行多元素检测。为了检测污染河流和水中的有害元素,本文采用液体喷射共线双脉冲激光诱导击穿光谱法(LIBS)分析了CuSO_4溶液中Cu元素的发射光谱。我们研究了激光脉冲能量比和两个激光器之间的时间延迟对信号强度的影响,这是由激光诱导等离子体中的理论模型简单地给出的,用于解释发射光谱的各种行为。可以推断,DP-LIBS实验的最大信号增强约为SP情况的4.5倍。使用DP-LIBS的Cu的检出限(LOD)大约比SP-LIBS的检出限低15倍。研究结果表明,共线DP-LIBS是提高等离子体发射强度和降低LOD值的有效方法,其应用可被认为是水污染的环境问题。

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