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Updated: Jan 17, 2026

Analyzing the Photo-oxidation of 2-propanol at Indoor Air Level Concentrations Using Field Asymmetric Ion Mobility Spectrometry
Published on: June 14, 2018
Detection of Gas-Phase Formaldehyde via C2H5O+ Produced by VUV Illumination and Enhanced by Doping Propionaldehyde
Zhiyang Wei1,2, Lixin Shan1,2, Yongze Gao1,2
1Research Center for Environmental Material and Pollution Control Technology, University of Chinese Academy of Sciences, Beijing 101408, China.
Abstract:
Formaldehyde (CH2O) is one of the main indoor organic pollutants due to its carcinogenicity and teratogenicity. However, CH2O has been an undetectable species for common VUV lamp-based photoionization mass spectrometry (PI-MS) due to its high ionization energy. In this article, we report a mass spectrometric technique developed for detecting gas-phase CH2O by monitoring C2H5O+ (m/z 45) formed in VUV illumination and enhanced by doping propionaldehyde. The unique mass peak at m/z 45 was observed by VUV illuminating ppm-level CH2O in ∼1300 Pa of nitrogen or synthetic air. The m/z 45 ion was assigned to be C2H5O+ via verification with a high-resolution mass spectrometric measurement and a deuteron transfer experiment. The formation process of the C2H5O+ ion observed in the experiment is similar to that of C2H5O+ formed in the combustion of hydrocarbons, discussed in the paper. Doping propionaldehyde in the carrier gas remarkably enhanced the signal intensity of C2H5O+ by nearly 13 times. The detection sensitivities of CH2O via C2H5O+ reached 46.0 counts ppb-1, and the LOD of the method was 4.3 ppb, enhanced by doping propionaldehyde. The influence of the humidity on the detection could be alleviated with desiccants, and the recovery with CaCl2·2H2O as the desiccant was achieved at 30% of the dry condition under 100% RH. This experiment demonstrated that the m/z 45 ions can be used as the characteristic ion for detecting CH2O.
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