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Detection, identification, and occurrence of thiotetronic acids in drinking water from underground sources by electrospray ionization-high field asymmetric waveform ion mobility spectrometry-quadrupole time-of-flight-mass spectrometry

机译:电喷雾电离-高场非对称波形离子迁移谱-四极杆飞行时间质谱法检测,鉴定和检测地下饮用水中的硫代四酸

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摘要

This paper demonstrates that electrospray ionization (ESI) with differential ion mobility spectroscopy (FAIMS) and soft mass spectrometry (MS) provide unique analytical capabilities that led to the discovery of sulfur-containing polar congeners of thiotetronic acid (TA) in drinking water from underground sources in Canada and the United States. Polar TAs accumulate in underground aquifers and appear to be the most abundant class of organic compounds in bottled water but cannot be detected by conventional mass spectrometry methods. We show that normally stable TAs are converted into very reactive ions in ESI which have to be analyzed using special conditions in ESI-FAIMS-MS to avoid extensive dissociation and ion/molecule reactions. De novo identification of 10 TAs was accomplished by the comparative tandem mass spectrometry analysis of authentic TA derivatives from groundwater samples and synthetic TA analogues prepared for this study. We present highlights of gas phase ion chemistry of polar TAs to explain their unique properties and reactivity. TA derivatives were originally isolated from soil bacteria and are of interest in the pharmaceutical industry due to their potent activity against a broad spectrum of pathogenic bacteria and negligible toxicity to mammals. We suspect that TAs are natural disinfection agents protecting groundwater from bacterial contamination, but these compound undergo modifications or decompose during an ozonation water treatment.
机译:本文证明了利用差分离子迁移谱(FAIMS)和软质谱(MS)的电喷雾电离(ESI)提供了独特的分析能力,从而导致了地下饮用水中硫代四酸(TA)的含硫极性同类物的发现。加拿大和美国的资源。极性TA堆积在地下含水层中,似乎是瓶装水中最丰富的一类有机化合物,但无法通过常规质谱方法检测到。我们表明,正常稳定的TA会在ESI中转化为非常活泼的离子,必须在ESI-FAIMS-MS中使用特殊条件进行分析,以避免大量的离解和离子/分子反应。通过对地下水样品中的真实TA衍生物和为本研究准备的合成TA类似物进行比较串联质谱分析,从头确定了10种TA。我们介绍了极性TA的气相离子化学亮点,以解释其独特的性质和反应性。 TA衍生物最初是从土壤细菌中分离出来的,由于它们对多种病原菌的有效活性以及对哺乳动物的毒性可忽略不计,因此在制药工业中引起了人们的关注。我们怀疑TA是保护地下水免受细菌污染的天然消毒剂,但是这些化合物在臭氧水处理过程中会发生修饰或分解。

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