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Analysis of Water Contaminants and Natural Water Samples Using Two-Step Laser Mass Spectrometry

机译:两步激光质谱法分析水污染物和天然水样品

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The applicability of two-step laser mass spectrometry (L2MS) to the analysis of water contaminants and envi-ronmental water samples is demonstrated. First, the ionization characteristics of a selection of naphthyl and carbamate pesticides and of phenol were determined. The ion signal of all compounds increased with ionization laser pulse energy, within the investigated range (20—200 pJ). Ion yields relative to an internal standard, benz[alan-thracene, reached 30% for naphthyl pesticides ionized at 225 nm and 2—8% at 266 nm. Ai 266 nm, similar relative ion yields were found for phenol. Carbamate pesticides showed lower relative ion yields at all wavelengths, by a factor of -~ 10—100, but higher relative ion yields, on the order of 1%, were obtained when using short (Ps) laser pulses for ionization. These data allpw one to estimate the detection limits of these analytes in a variety of matrixes once they are known for one of the compounds. Second, the quantitative analysis of carbaryl, phenol, and polycy-cic aromatic hydrocarbons in rainwater is demonstrated. The aqueous samples were frozen to permit direct L2MS analysis of organic pollutants without tedious sample preparation. Detection limits were in the low-microgram per liter concentration range and recoveries of phenol from spiked rainwater samples were above 90%. The specific advantages are exemplified with the investigation of d~iamic washout processes of atmospheric organic pollutants with a resolution of 0.01 — of precipitation.
机译:证明了两步激光质谱法(L2MS)在分析水污染物和环境水样品中的适用性。首先,确定了选择的萘基和氨基甲酸酯类农药以及苯酚的电离特性。在研究范围内(20-200 pJ),所有化合物的离子信号均随电离激光脉冲能量的增加而增加。相对于内标物苯并[alan-thracene],在225 nm处离子化的萘基农药的离子产率达到30%,在266 nm处离子化的产率达到8%。在266nm处,发现苯酚具有相似的相对离子产率。氨基甲酸酯农药在所有波长下均显示出较低的相对离子产率,约为-10-100倍,但当使用短(Ps)激光脉冲进行电离时,可获得较高的相对离子产率,约为1%。一旦已知其中一种化合物,这些数据便可以估算出各种基质中这些分析物的检测限。其次,证明了对雨水中的甲萘威,苯酚和多环芳烃的定量分析。将含水样品冷冻,无需进行繁琐的样品制备即可直接进行有机污染物的L2MS分析。检出限在每升浓度低微克范围内,加标雨水样品中苯酚的回收率超过90%。通过研究沉淀分辨率为0.01-的大气有机污染物的动态冲刷过程,可以证明其特殊的优势。

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