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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Time-resolved characterization of laser-induced plasma from fresh potatoes
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Time-resolved characterization of laser-induced plasma from fresh potatoes

机译:新鲜马铃薯的激光诱导血浆的时间分辨特征

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Optical emission of laser-induced plasma on the surface of fresh vegetables provides sensitive analysis of trace elements for in situ or online detection of these materials. This emergent technique promises applications with expected outcomes in food security or nutrition quality, as well as environment pollution detection. Characterization of the plasma induced on such soft and humid materials represents the first step towards quantitative measurement using this technique. In this paper, we present the experimental setup and protocol that optimize the plasma generation on fresh vegetables, potatoes for instance. The temporal evolution of the plasma properties are investigated using time-resolved laser-induced breakdown spectroscopy (UBS), in particular, the electron density and the temperatures of the plasma are reported as functions of its decay time. The temperatures are evaluated from the well known Boltzmann and Saha-Boltzmann plot methods. These temperatures are further compared to that of the typical molecular species, CN, for laser-induced plasma from plant materials. This comparison validates the local thermodynamic equilibrium (LTE) in the specific case of fresh vegetables ablated in the typical LIBS conditions. A study of the temporal evolution of the signal to noise ratio also provides practical indications for an optimized detection of trace elements. We demonstrate finally that, under certain conditions, the calibration-free LIBS procedure can be applied to determine the concentrations of trace elements in fresh vegetables.
机译:新鲜蔬菜表面上激光诱导的等离子体的光发射可对痕量元素进行灵敏的分析,以便对这些材料进行原位或在线检测。这种新兴技术有望在食品安全或营养质量以及环境污染检测方面实现预期的应用。在这种柔软和潮湿的材料上诱发的等离子体的表征代表了使用该技术进行定量测量的第一步。在本文中,我们介绍了用于优化新鲜蔬菜(例如土豆)上的血浆生成的实验装置和协议。使用时间分辨的激光诱导击穿光谱法(UBS)研究了等离子体特性的时间演变,特别是,等离子体的电子密度和温度据报道是其衰减时间的函数。根据众所周知的Boltzmann和Saha-Boltzmann绘图方法评估温度。将这些温度与来自植物材料的激光诱导等离子体的典型分子物种CN的温度进行了进一步比较。该比较验证了在典型的LIBS条件下烧蚀的新鲜蔬菜的特定情况下的局部热力学平衡(LTE)。对信噪比的时间演变的研究也为痕量元素的优化检测提供了实际指示。我们最终证明,在某些条件下,无需校准的LIBS程序可用于确定新鲜蔬菜中的微量元素浓度。

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