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Detection of highly toxic elements (lead and chromium) in commercially available eyeliner (kohl) using laser induced break down spectroscopy

机译:使用激光诱导击穿光谱法检测市售眼线(kohl)中的剧毒元素(铅和铬)

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摘要

A sensitive laser induced breakdown spectroscopic system was developed and optimized for using it as a sensor for the detection of trace levels of lead and chromium present in the cosmetic eyeliner (kohl) of different price ranges (brands) available in the local market. Kohl is widely used in developing countries for babies as well adults for beautification as well eyes protection. The atomic transition lines at 405.7 nm and 425.4 nm were used as the marker lines for the detection of lead and chromium respectively. The detection system was optimized by finding the appropriate gate delay between the laser excitation and the data acquisition system and also by achieving optically thin plasma near the target by establishing the local thermodynamic equilibrium condition. The detection system was calibrated for these two hazardous elements and the kohl samples under investigation showed 8-15 ppm by mass of lead and 4-9 ppm by mass of Chromium, which are higher than the safe permissible levels of these elements. The limits of detection of the LIBS system for lead and chromium were found to be 1 and 2 ppm respectively. (C) 2015 Elsevier Ltd. All rights reserved.
机译:开发并优化了灵敏的激光诱导击穿光谱系统,将其用作传感器来检测本地市场上不同价格范围(品牌)的化妆品眼线笔(kohl)中痕量的铅和铬。 Kohl在发展中国家广泛用于婴儿以及成年人的美化以及眼睛保护。 405.7 nm和425.4 nm的原子跃迁线分别用作检测铅和铬的标记线。通过在激光激发和数据采集系统之间找到适当的门延迟,并通过建立局部热力学平衡条件,在目标附近获得光学上稀薄的等离子体,来优化检测系统。已针对这两种有害元素对检测系统进行了校准,所研究的科尔样品显示铅的质量百分比为8-15 ppm,铬的含量为4-9 ppm,这高于这些元素的安全允许水平。 LIBS系统中铅和铬的检出限分别为1 ppm和2 ppm。 (C)2015 Elsevier Ltd.保留所有权利。

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