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The Analysis of Distribution of Trace Elements in Apples by Laser-Induced Breakdown Spectroscopy

机译:苹果中微量元素分布的激光诱导击穿光谱分析

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The purpose is testing the distribution of trace elements rapidly in apples by laser-induced breakdown spectroscopy. Used the 1064 nm and Q ns Nd:YAG laser to be the light source, high precision spectrometer collected spectrum. Layered the sample to four different part for experiments. Analysing spectrum of LIBS, obtained the characteristics spectrum of each elements. Research the time evolution and laser energy character of elements' LIBS, and the result shows the best delay time is 1400ns and the best laser energy is 120mJ. Analysed the data of each area with statistics and got the distribution of the trace elements in apples. In the top half, the concentration of trace elements in outermost part is higher than other two areas, but nearby the kernel of apple is most. In the below half, it's opposite to the top half. And finally obtained the relative concentrative of trace elements. Research shows that laser-induced breakdown spectroscopy has a great ability of testing the elements in apples with rapid non-destructive
机译:目的是通过激光诱导击穿光谱法快速测试苹果中微量元素的分布。使用1064 nm和Q ns Nd:YAG激光器作为光源,高精度光谱仪采集光谱。将样品分为四个不同的部分进行实验。分析LIBS的光谱,得到各元素的特征光谱。研究了元件LIBS的时间演化和激光能量特性,结果表明最佳延迟时间为1400ns,最佳激光能量为120mJ。用统计数据分析了每个区域的数据,得到了苹果中微量元素的分布。在上半部分,最外面部分的微量元素浓度高于其他两个区域,但在苹果仁附近最多。下半部分与上半部分相反。最终得到微量元素的相对集中度。研究表明,激光诱导击穿光谱法具有快速检测苹果中各种元素的强大能力。

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