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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Signal enhancement of lead and arsenic in soil using laser ablation combined with fast electric discharge
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Signal enhancement of lead and arsenic in soil using laser ablation combined with fast electric discharge

机译:激光烧蚀结合快速放电增强土壤中铅和砷的信号

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In comparison to the traditional single pulse laser induced breakdown spectroscopy (SP-LIBS), a significant enhancement of atomic emission of lead and arsenic from laser plasma of soil has been demonstrated by the use of a laser ablation and fast pulse discharge plasma spectroscopy technique (LA-FPDPS). In this technique, a specifically designed high voltage and rapid discharge circuit was used to reheat the laser plasma and to enhance the plasma emission. A rapid and time damped alternating discharge current was observed with a short oscillating period ~0.6 μs and sustained for about 6 us. The peak intensities of Pb (283.31 nm) and As (286.04 nm) lines from soil plasma emission were greatly enhanced when compare to the traditional single pulse (SP) LIBS system. In addition, the precision of measurements in terms of the relative standard deviation (RSD) and the signal to noise (S/N) ratios were also improved. Scanning electron microscopy (SEM) images of the laser ablation regions indicated that the plasma reheating by the discharge spark was presumably the main mechanism for observed signal enhancement in the LA-FPDPS technique.
机译:与传统的单脉冲激光诱导击穿光谱法(SP-LIBS)相比,已通过使用激光烧蚀和快速脉冲放电等离子体光谱技术证明了土壤激光等离子体中铅和砷的原子发射显着增强( LA-FPDPS)。在该技术中,使用了专门设计的高压快速放电电路来重新加热激光等离子体并增强等离子体发射。观察到快速且时间衰减的交流放电电流,振荡周期约为0.6μs,持续约6 us。与传统的单脉冲(LIS)LIBS系统相比,来自土壤等离子体发射的Pb(283.31 nm)和As(286.04 nm)谱线的峰强度大大提高。此外,相对标准偏差(RSD)和信噪比(S / N)方面的测量精度也得到了提高。激光烧蚀区域的扫描电子显微镜(SEM)图像表明,通过放电火花对等离子体进行再加热可能是LA-FPDPS技术中观察到的信号增强的主要机制。

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