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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Analysis of Heavy Metal Pollution in Soil Using Transversely Excited Atmospheric CO_(2) Laser-Induced Plasma by Trapping the Soil in Microstructured Holes on Metal Subtargets
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Analysis of Heavy Metal Pollution in Soil Using Transversely Excited Atmospheric CO_(2) Laser-Induced Plasma by Trapping the Soil in Microstructured Holes on Metal Subtargets

机译:通过横向激发大气CO_(2)激光诱导的等离子体在金属亚标靶上的微结构孔中诱捕土壤来分析土壤中的重金属污染

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摘要

A unique technique for direct analysis of soil samples utilizing a specialadvantage of a transversely excited atmospheric (TEA) CO_(2) laser-induced plasma generated at atmospheric pressure on a metal target has been developed. In this technique, a metal subtarget, such as nickel plate, structured with intentional microholes on its surface, each with dimensions of around 100 (mu)m in diameter and depth, was used to selectively trap small sized soil particles by immersing the metal plate subtarget into the polluted soil sample. The trapped small soil particles on the metal subtarget were irradiated by a TEA CO_(2) laser (10.6 (mu)m, 1.5 J, 200 ns) at atmospheric pressure under defocused condition with a spot size of 3 mm X 3 mm. This trapping and confining scheme substantially suppresses the blowing off effect; thus, the trapped soil particles can effectively be dissociated and atomized in the microstructured holes. Using this method of a microstructured metal plate subtarget, quantitative analysis was carried out on loam soil samples polluted by Pb. A linear calibration curve was obtained with a detection limit of approximately 50 mg/kg. Preliminary quantitative studies were carried out for a quartz sand sample containing Cr and Hg, resulting in linear calibration curves with detection limits of approximately 25 mg/kg and 10 mg/kg, respectively, at this stage. This technique is promising as a potential field screening tool for soil analysis.
机译:已经开发出一种独特的技术,该技术利用在大气压力下在金属靶材上产生的横向激发大气(TEA)CO_(2)激光诱导的等离子体的特殊优势,直接分析土壤样品。在该技术中,金属亚靶(例如镍板)的表面上刻有故意的微孔,每个微孔的直径和深度均约为100μm,用于通过浸入金属板来选择性地捕集小尺寸的土壤颗粒亚目标进入污染的土壤样品。在散焦条件下,用TEA CO_(2)激光(10.6μm,1.5 J,200 ns)在散焦条件下用3 mm X 3 mm的光斑照射金属亚靶上捕获的小土壤颗粒。这种捕获和限制方案基本上抑制了吹散效应。因此,被捕获的土壤颗粒可以有效地在微结构孔中解离和雾化。使用这种微结构化金属板亚靶标的方法,对铅污染的壤土样品进行了定量分析。获得的线性校准曲线的检出限约为50 mg / kg。对包含Cr和Hg的石英砂样品进行了初步的定量研究,得出线性校准曲线,在此阶段检出限分别约为25 mg / kg和10 mg / kg。该技术有望作为土壤分析的潜在现场筛选工具。

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