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Development of a Proton-Transfer Reaction-Linear Ion Trap Mass Spectrometer for Quantitative Determination of Volatile Organic Compounds

机译:质子转移反应线性离子阱质谱仪的开发用于定量测定挥发性有机化合物

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Currently, proton-transfer reaction mass spectrometry (PTR-MS) allows for quantitative determination of volatile organic compounds in real time at concentrations in the low ppt range, but cannot differentiate isomers or isobaric molecules, using the conventional quadrupole mass filter. Here we pursue the application of linear quadrupole ion trap (LIT) mass spectrometry in combination with proton-transfer reaction chemical ionization to provide the advantages of specificity from MS/MS. A commercial PTR-MS platform composed of a quadrupole mass filter with the addition of end cap electrodes enabled the mass filter to operate as a linear ion trap. The rf drive electronics were adapted to enable the application of dipolar excitation to opposing rods, for collision-induced dissociation (CID) of trapped ions. This adaptation enabled ion isolation, ion activation, and mass analysis. The utility of the PTR-LIT was demonstrated by distinguishing between the isomeric isoprene oxidation pair, methyl vinyl ketone (MVK) and methacrolein (MACR). The CID voltage was adjusted to maximize the m/z 41 to 43 fragment ratio of MACR while still maintaining adequate sensitivity. Linear calibration curves for MVK and MACR fragments at m/z 41 and 43 were obtained with limits of detection of approx100 ppt, which should enable ambient measurements. Finally, the PTR-LIT method was compared to an established GC/MS method by quantifying MVK and MACR production during a smog chamber isoprene-NO_(x) irradiation experiment.
机译:当前,质子转移反应质谱法(PTR-MS)允许实时定量测定低ppt范围内的挥发性有机化合物,但不能使用常规的四极杆质量滤器区分异构体或同量异位分子。在这里,我们追求结合质子转移反应化学电离的线性四极离子阱(LIT)质谱的应用,以提供MS / MS的特异性优势。由四极质量过滤器和端盖电极组成的商用PTR-MS平台使质量过滤器可以用作线性离子阱。射频驱动电子设备适于将偶极激发施加到相对的杆上,以实现捕获离子的碰撞诱导解离(CID)。这种适应性使离子分离,离子活化和质量分析成为可能。通过区分异构异戊二烯氧化对,甲基乙烯基酮(MVK)和甲基丙烯醛(MACR),证明了PTR-LIT的实用性。调整CID电压,以使MACR的m / z 41至43片段比例最大,同时仍保持足够的灵敏度。获得了m / z 41和43处MVK和MACR片段的线性校准曲线,检测限约为100 ppt,这应该能够进行环境测量。最后,通过在烟雾室异戊二烯-NO_(x)辐射实验过程中量化MVK和MACR产生,将PTR-LIT方法与已建立的GC / MS方法进行了比较。

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