Sisco Edward, Dake Jeffrey
National Institute of Standards and Technology, Materials Measurement Science Division, Gaithersburg, MD, USA.
Anal Methods. 2016 Apr 14;8(14):2971-2978. doi: 10.1039/C6AY00292G. Epub 2016 Mar 17.
Direct Analysis in Real Time Mass Spectrometry (DART-MS) has been used to detect the presence of non-narcotic adulterants in beverages. The non-narcotic adulterants that were examined in this work incorporated a number low molecular weight alcohols, acetone, ammonium hydroxide, and sodium hypochlorite. Analysis of the adulterants was completed by pipetting 1 µL deposits onto glass microcapillaries along with an appropriate dopant species followed by introduction into the DART gas stream. It was found that detection of these compounds in the complex matrices of common beverages (soda, energy drinks, etc.) was simplified through the use of a dopant species to allow for adduct formation with the desired compound(s) of interest. Other parameters that were investigated included DART gas stream temperature, in source collision induced dissociation, ion polarity, and DART needle voltage. Sensitivities of the technique were found to range from 0.001 % volume fraction to 0.1 % volume fraction, comparable to traditional analyses completed using headspace gas chromatography mass spectrometry (HS-GC/MS). Once a method was established using aqueous solutions, , fifteen beverages were spiked with each of the nine adulterants, to simulate real world detection, and in nearly all cases the adulterant could be detected either in pure form, or complexed with the added dopant species. This technique provides a rapid way to directly analyze beverages believed to be contaminated with non-narcotic adulterants at sensitivities similar to or exceeding those of traditional confirmatory analyses.
实时直接分析质谱法(DART-MS)已被用于检测饮料中是否存在非麻醉性掺假物质。本研究中检测的非麻醉性掺假物质包括多种低分子量醇类、丙酮、氢氧化铵和次氯酸钠。通过将1 μL沉积物与适当的掺杂剂一起移液到玻璃微毛细管上,然后引入DART气流中,完成对掺假物质的分析。研究发现,通过使用掺杂剂使目标化合物形成加合物,可简化在常见饮料(苏打水、能量饮料等)复杂基质中对这些化合物的检测。研究的其他参数包括DART气流温度、源内碰撞诱导解离、离子极性和DART针电压。该技术的灵敏度范围为0.001%体积分数至0.1%体积分数,与使用顶空气相色谱质谱法(HS-GC/MS)完成的传统分析相当。一旦使用水溶液建立了一种方法,就用九种掺假物质中的每一种对十五种饮料进行加标,以模拟实际检测情况,几乎在所有情况下,掺假物质都能以纯形式或与添加的掺杂剂形成复合物的形式被检测到。该技术提供了一种快速方法,可直接分析被认为含有非麻醉性掺假物质的饮料,其灵敏度与传统确证分析相当或更高。