Measurement of total volatile organic compound (TVOC) in indoor air using passive solvent extraction method

被引:14
|
作者
Ishizaka, Takahiro D. [1 ]
Kawashima, Ayato [1 ]
Hishida, Naoki [1 ]
Hamada, Noriaki [1 ]
机构
[1] Ehime Univ, Grad Sch Agr, 3-5-7 Tarumi, Matsuyama, Ehime 7908566, Japan
来源
AIR QUALITY ATMOSPHERE AND HEALTH | 2019年 / 12卷 / 02期
关键词
Total volatile organic compounds; Passive air sampler; Indoor air sampling; Sampling rate; Indoor air quality; Solvent extraction method; QUALITY; VOCS; POLLUTANTS; POLLUTION; HOMES;
D O I
10.1007/s11869-018-0639-4
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The measurement of total volatile organic compound (TVOC) is effective for evaluating indoor air quality. This study aimed to develop a procedure for TVOC measurement using a passive solvent extraction method (SD_passive). The quantitative and qualitative performances of SD_passive for TVOC measurement were compared to those of the active thermal desorption method (TD_active). TVOC concentrations of the SD_passive method were highly correlated with those of the TD_active method. However, below 600g/m(3), they were slightly underestimated compared to those of the TD_active method. This was because the sampling rates (SRs) of specific volatile organic compounds (VOCs), such as cyclic siloxane and nonanal, which are often detected in indoor air, were lower than those of toluene used for calculating TVOC concentration in the SD_passive method. Therefore, several correction methods using the appropriate SR were explored to obtain TVOC concentrations equivalent to those obtained using the TD_active method. In the proposed method, individual SRs were used for specific VOCs and estimated SRs were used for other VOCs as a function of the total ion chromatogram retention time (Rt) (SR=96, Rt<25; SR=-3.2, Rt+150, Rt25). Consequently, below 600g/m(3), the SD_passive method could achieve a qualitative performance equivalent to that of the TD_active method. The ten major compounds of TVOC identified using the SD_passive method agreed with those using the TD_active method. Overall, the proposed method is easy to implement, inexpensive, and suitable for rapid evaluation of indoor air quality.
引用
收藏
页码:173 / 187
页数:15
相关论文
共 50 条
  • [41] Solvent Extraction of PDMS Tubing as a New Method for the Capture of Volatile Organic Compounds from Headspace
    Gareth Thomas
    John Caulfield
    Lucia Nikolaeva-Reynolds
    Michael A. Birkett
    József Vuts
    [J]. Journal of Chemical Ecology, 2024, 50 : 85 - 99
  • [42] Interlaboratory study of a test method measuring total volatile organic compound content of consumer products
    Rickman, EE
    Howe, GB
    Jayanty, RKM
    Whitfield, JK
    [J]. JOURNAL OF THE AIR & WASTE MANAGEMENT ASSOCIATION, 1997, 47 (05): : 608 - 613
  • [43] Development of a ppb-level sensor based on catalytic combustion for total volatile organic compounds in indoor air
    Sasahara, T.
    Kato, H.
    Saito, A.
    Nishimura, M.
    Egashira, M.
    [J]. SENSORS AND ACTUATORS B-CHEMICAL, 2007, 126 (02) : 536 - 543
  • [44] Background concentrations of individual and total volatile organic compounds in residential indoor air of Schleswig-Holstein, Germany
    Hippelein, M
    [J]. JOURNAL OF ENVIRONMENTAL MONITORING, 2004, 6 (09): : 745 - 752
  • [45] Comparison of the volatile organic compound recovery rates of commercial active samplers for evaluation of indoor air quality in work environments
    Yuichi Miyake
    Masahiro Tokumura
    Qi Wang
    Zhiwei Wang
    Takashi Amagai
    [J]. Air Quality, Atmosphere & Health, 2017, 10 : 737 - 746
  • [46] Optimization of the solvent-based dissolution method to sample volatile organic compound vapors for compound-specific isotope analysis
    Bouchard, Daniel
    Wanner, Philipp
    Luo, Hong
    McLoughlin, Patrick W.
    Henderson, James K.
    Pirkle, Robert J.
    Hunkeler, Daniel
    [J]. JOURNAL OF CHROMATOGRAPHY A, 2017, 1520 : 23 - 34
  • [47] Comparison of the volatile organic compound recovery rates of commercial active samplers for evaluation of indoor air quality in work environments
    Miyake, Yuichi
    Tokumura, Masahiro
    Wang, Qi
    Wang, Zhiwei
    Amagai, Takashi
    [J]. AIR QUALITY ATMOSPHERE AND HEALTH, 2017, 10 (06): : 737 - 746
  • [48] Evaluation of a real-time method for monitoring volatile organic compounds in indoor air in a Japanese university
    Hori, Hajime
    Ishimatsu, Sumiyo
    Fueta, Yukiko
    Ishidao, Toru
    [J]. ENVIRONMENTAL HEALTH AND PREVENTIVE MEDICINE, 2013, 18 (04) : 285 - 292
  • [49] Observations on persistent organic pollutants in indoor and outdoor air using passive polyurethane foam samplers
    Bohlin, Pernilla
    Jones, Kevin C.
    Tovalin, Horacio
    Strandberg, Bo
    [J]. ATMOSPHERIC ENVIRONMENT, 2008, 42 (31) : 7234 - 7241
  • [50] IMPACT OF AMBIENT TOTAL VOLATILE ORGANIC COMPOUND (TVOC) DURING IN VITRO FERTILIZATION (IVF) LABORATORY PROCEDURES UPON SUBSEQUENT EMBRYO IMPLANTATION: A RETROSPECTIVE STUDY.
    Liu, Yanhe
    Mang, Lie
    Wang, Xiaoling
    Li, Zhang
    Jiang, Yuying
    Yan, Xue
    Wen, Chunyan
    Matson, Phillip
    Afnan, Masoud
    [J]. FERTILITY AND STERILITY, 2019, 112 (03) : E340 - E340