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Application of Multi-energy Calibration for Determination of Chromium and Nickel in Nickeliferous Ores by Laser-induced Breakdown Spectroscopy

机译:激光诱导击穿光谱法在多能量校正法测定含镍矿石中铬和镍中的应用

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A multi-energy calibration method was applied for the determination of chromium and nickel in nickeliferous ores by laser-induced breakdown spectroscopy. For the optimization of the laser-induced breakdown spectroscopy parameters, such as laser fluence and delay time, an experimental study was conducted. The best results in terms of trueness were observed using a laser fluence and a delay time of 2500 J/cm~(2) and 1.1 μs, respectively. A study of sample matrix effects and the determination of emission lines for calibration and normalization of the spectra were undertaken, and appropriate values of those variables were selected for each analyte. The trueness values for chromium and nickel varied from 89 to 114% when certified reference samples (nickeliferous laterite, rock phosphate and contaminated soil) were analyzed.
机译:采用多能量校准方法通过激光诱导击穿光谱法测定含镍矿石中的铬和镍。为了优化激光诱导击穿光谱参数,例如激光通量和延迟时间,进行了实验研究。使用激光能量密度和2500 J / cm〜(2)的延迟时间和1.1μs观察到的真实性最佳结果。进行了样品基质效应的研究以及光谱的校准和归一化发射线的确定,并为每种分析物选择了这些变量的适当值。分析经过认证的参考样品(含镍红土,磷酸盐岩和受污染的土壤)后,铬和镍的真实值从89%到114%不等。

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