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Characterization and optimization of membrane inlets for a miniature ion trap mass spectrometer operating at a high background pressure of humid air

机译:微型离子阱质谱仪在高背景压力下进行微型离子阱质谱仪的表征与优化

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A 10-kg handheld ion trap mass spectrometer, the Mini10, operating at a high background pressure (10(-4) Torr range) of humid air was characterized and optimized with respect to the use of membrane inlets. Both flat sheet and tubular membrane inlet configurations in different dimensions were tested using aqueous solutions and inlet temperatures ranging from 25 to 90 degrees C. The results show that both the absolute ion abundances and the relative abundance of ions in the recorded spectra of volatile organic compounds were highly influenced by the pressure in the vacuum chamber. At elevated pressures the signal intensities dropped. and a shift from primarily electron ionization to primarily chemical ionization was observed. For some chemicals unexpected high-intensity water adduct ions were observed, as confirmed by MS/MS experiments. The pressure effects were found to be correlated with the ionization potential of the analytes, the higher the ionization potential the stronger the effects. Since the pressure in the vacuum chamber is determined by both the membrane dimensions and the temperature of the inlet, the optimization of the membrane inlet is a matter of balancing membrane dimensions and inlet temperature such that both a maximal intensity and an acceptable short response time are achieved simultaneously. In contrast to what is observed for benchtop instruments, elevated inlet temperatures may lead to reduced signal intensity. and the use of a thicker membrane may increase signal intensity. Under all circumstances we found that a linear relationship between signal intensity and sample concentration was observed over at least two orders of magnitude as long as the operational conditions of the system was kept constant. The pressure effects described here are likely to be general for all miniature ion trap mass spectrometers using low performance vacuum pumps. (C) 2008 Elsevier B.V. All rights reserved.
机译:在高背景压力下操作的10kg手持离子阱质谱仪被特征和优化在高背景压力(10(-4)型潮湿空气的高压空气中(10(-4)托范围)。使用含水溶液和入口温度从25至90℃的入口温度测试不同尺寸的平板和管状膜入口施加。结果表明,绝对离子丰度和挥发性有机化合物的记录光谱中的离子相对丰度。受真空室中压力的高度影响。在升高的压力下,信号强度下降。并且观察到从主要电子电离到主要化学电离的转变。对于一些化学品,观察到意外的高强度水加合离子,如MS / MS实验证实。发现压力效应与分析物的电离电位相关,电离势越高,效果越强。由于真空室中的压力由膜尺寸和入口的温度决定,因此膜入口的优化是平衡膜尺寸和入口温度的优化,使得最大强度和可接受的短响应时间都是同时实现。与基台仪器观察到的相反,升高的入口温度可能导致信号强度降低。并且使用较厚的膜可能增加信号强度。在所有情况下,我们发现,只要系统的操作条件保持恒定,就观察到信号强度和样品浓度之间的线性关系。这里描述的压力效应可能是使用低性能真空泵的所有微型离子阱质谱仪通用。 (c)2008年elestvier b.v.保留所有权利。

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