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首页> 外文期刊>Mass Spectrometry Letters >Experimental Study on the Interference of Water Vapor on the Chemical Ionization of OH by Sulfur Hexafluoride Ion
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Experimental Study on the Interference of Water Vapor on the Chemical Ionization of OH by Sulfur Hexafluoride Ion

机译:六氟化硫离子干扰水蒸气对OH化学电离的实验研究

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The interference of water vapor on the chemical ionization (CI) of hydroxyl radicals (OH) by sulfur hexafluoride ion ( ) was investigated using a flow tube system coupled to a high-pressure CI mass spectrometer. Water vapor, which is required to study heterogeneous reactions of OH under real tropospheric conditions, transforms the reagent ion into and , resulting in a substantial loss in CI sensitivity. Therefore, under humid conditions, peaks corresponding to OH are drastically diminished, while those corresponding to OH-water complex ions ( ) are enhanced. was observed as the major OH species. The obsercation of by isolating humid conditions to the CI region and preliminary ab initio calculations suggested that ions were produced from reactions between OH ions ( ) and water molecules. An additional helium buffer flow introduced into the CI region reduced loss of the reagent ion and resulted in a partial recovery of OH peak intensities under humid conditions.
机译:使用与高压CI质谱仪耦合的流管系统研究了水蒸气对六氟化硫离子()对羟基自由基(OH)的化学电离(CI)的干扰。研究真实对流层条件下OH的异相反应所需要的水蒸气将水蒸气中的试剂离子转化为或,导致CI灵敏度大大降低。因此,在潮湿条件下,与OH相对应的峰会大大减少,而与OH-水络合离子()相对应的峰会增强。被观察到是主要的OH。通过将潮湿的环境隔离到CI区域而进行的观察和初步的从头算算表明,离子是由OH离子()与水分子之间的反应产生的。引入CI区的其他氦缓冲液流减少了试剂离子的损失,并导致在潮湿条件下OH峰强度的部分恢复。

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