Popov Mark S, Kosyakov Dmitry S, Ul'yanovskii Nikolay V
Laboratory of Environmental Analytical Chemistry, Core Facility Center 'Arktika', Northern (Arctic) Federal University, Arkhangelsk, Russia.
J Sep Sci. 2024 Aug;47(16):e2400383. doi: 10.1002/jssc.202400383.
Unsymmetrical dimethylhydrazine (UDMH) based rocket fuel, when released into the soil, undergoes oxidative transformations to form a variety of toxic nitrogen-containing products (TPs). Loamy soils containing aluminosilicates (clay) are capable of strong binding and retention of UDMH TPs due to a combination of polar sorption and cation-exchange properties, posing challenges for their extraction and quantification. To overcome this problem, the present study proposes direct thermal desorption (TD) of analytes from loam facilitated by the addition of modifiers competing with UDMH TPs for sorption centers and ensuring their conversion into molecular form. Among tested additives, the mixture of potassium chloride and hydroxide demonstrated the best performance and provided recoveries of the most UDMH TPs exceeding 70% under optimized TD conditions (200°C, 30 min). The online combination of TD with gas chromatography-tandem mass spectrometry allowed for the development of a method for the determination of 15 UDMH TPs in loamy soils with limits of detection in the range of 0.2-15 µg/kg. The use of matrix-matched calibration and deuterated internal standards ensured high accuracy (80%-100%) and precision (relative standard deviation < 18%) of the analysis. The developed method was validated and successfully tested in the analyses of real loamy soil samples polluted with rocket fuel.
以偏二甲肼(UDMH)为基础的火箭燃料释放到土壤中后,会发生氧化转化,形成多种有毒含氮产物(TPs)。含有铝硅酸盐(粘土)的壤土由于具有极性吸附和阳离子交换特性,能够强烈结合和保留UDMH TPs,这给它们的提取和定量带来了挑战。为克服这一问题,本研究提出通过添加与UDMH TPs竞争吸附中心并确保其转化为分子形式的改性剂,对壤土中的分析物进行直接热脱附(TD)。在测试的添加剂中,氯化钾和氢氧化钾的混合物表现出最佳性能,在优化的热脱附条件(200°C,30分钟)下,大多数UDMH TPs的回收率超过70%。热脱附与气相色谱-串联质谱的在线联用,使得开发出一种测定壤土中15种UDMH TPs的方法成为可能,其检测限在0.2-15 µg/kg范围内。使用基质匹配校准和氘代内标确保了分析的高精度(80%-100%)和精密度(相对标准偏差<18%)。所开发的方法经过验证,并成功应用于受火箭燃料污染的真实壤土样品分析。