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首页> 外文期刊>Analytical Sciences >Laser Defocusing Effects on Laser Ablation Inductively Coupled Plasma-Atomic Emission Spectrometry: Different Ablation Interactions between the Laser and Low-Alloy Steel, Fe Pellets, and a Pond Sediment Pellet
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Laser Defocusing Effects on Laser Ablation Inductively Coupled Plasma-Atomic Emission Spectrometry: Different Ablation Interactions between the Laser and Low-Alloy Steel, Fe Pellets, and a Pond Sediment Pellet

机译:激光散焦对激光烧蚀电感耦合等离子体-原子发射光谱的影响:激光与低合金钢,Fe粒料和池塘沉积物颗粒之间的不同烧蚀相互作用

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The ablation interaction between a laser and solid samples, which affects the analytical performance for laser ablation inductively coupled plasma atomic emission spectrometry (LA-ICP-AES), was studied. The emission intensities of elements observed by LA-ICP-AES (LA-ICP-AES element signal intensities) for different solid samples were measured under different laser defocusing conditions with a fixed laser output energy. It was found that the optimum laser defocusing conditions were dependent on the different solid samples with different sample characteristics, and also on the different elements with different elemental characteristics in each solid sample. A low-alloy steel, pellets containing different Fe concentrations (0 - 100% Fe pellet), and a pond sediment pellet were used as different solid samples. The variations of the LA-ICP-AES Fe signal intensities observed under different laser defocus conditions were completely different between the low-alloy steel and the pond sediment pellet. The changes in the LA-ICP-AES Fe signal intensities for 90 and 100% Fe pellets were similar to that of the low-alloy steel. However, pellets with lower Fe concentrations (less than 70%) showed different trends and the defocusing behavior became closer to that of the pond sediment pellet. The LA-ICP-AES signal intensities of other elements were also evaluated, and were compared for different solid samples and different defocusing behavior. It was observed that the changes in the LA-ICP-AES signal intensities of almost all elements in the pond sediment pellet showed a similar trend to those of Fe for different laser defocus positions; that is, the elemental fractionation for these elements in the pond sediment pellet seemed to be relatively small. On the contrary, it was found that the LA-ICP-AES Si, Ti, and Zr signal intensities for low-alloy steel showed different trends compared to those of other elements, including Fe, under different defocusing conditions; that is, the elemental fractionation observed for the low-alloy steel was larger than that of the pond sediment pellet. From these results, different ablation interactions between the laser and the different solid samples were considered, and attributed to the sample characteristics, such as the matrix, hardness, and conductivity. Elemental fractionation was attempted to be explained by using elemental characteristics, such as the melting point and ionization energy of the elements.
机译:研究了激光与固体样品之间的烧蚀相互作用,该相互作用影响激光烧蚀电感耦合等离子体原子发射光谱法(LA-ICP-AES)的分析性能。在不同的激光散焦条件下,以固定的激光输出能量测量通过LA-ICP-AES观察到的不同固体样品的元素发射强度(LA-ICP-AES元素信号强度)。发现最佳的激光散焦条件取决于具有不同样品特性的不同固体样品,并且还取决于每个固体样品中具有不同元素特性的不同元素。低合金钢,含不同铁浓度的球团(0-100%铁球团)和池塘沉淀物球团用作不同的固体样品。在低激光散焦条件下观察到的LA-ICP-AES Fe信号强度的变化在低合金钢和池塘沉积物颗粒之间是完全不同的。对于90%和100%Fe球团,LA-ICP-AES Fe信号强度的变化与低合金钢相似。然而,铁含量较低(小于70%)的颗粒表现出不同的趋势,散焦行为变得更接近池塘沉积物颗粒。还评估了其他元素的LA-ICP-AES信号强度,并比较了不同的固体样品和不同的散焦行为。观察到,在不同的激光散焦位置,池塘沉积物颗粒中几乎所有元素的LA-ICP-AES信号强度的变化都显示出与Fe相似的趋势。也就是说,池塘沉淀物中这些元素的元素分馏似乎相对较小。相反,发现在低散焦条件下,低合金钢的LA-ICP-AES Si,Ti和Zr信号强度与其他元素(包括Fe)相比显示出不同的趋势。也就是说,观察到的低合金钢的元素分馏比池塘沉淀物颗粒的大。从这些结果来看,考虑了激光与不同固体样品之间的不同消融相互作用,并归因于样品特性,例如基体,硬度和电导率。试图通过使用元素特征来解释元素分馏,例如元素的熔点和电离能。

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