Identification and analysis of odor-active compounds from Choerospondias axillaris (Roxb.) Burtt et Hill with different moisture content levels and lacquer treatments

Author:

Wang Qifan,Shen Jun,Zeng Bin,Wang Huiyu

Abstract

AbstractThe problem of indoor odors can greatly affect a room’s occupants. To identify odorants and comprehensively evaluate emissions from wooden materials, emissions and odors from Choerospondias axillaris (Roxb.) Burtt et Hill with different moisture content percentages and lacquer treatments were investigated in this study. Thermal desorption–gas chromatography–mass spectroscopy/olfactometry was used to analyze the release characteristics. In total, 11 key odor-active compounds were identified as moisture content gradually decreased, concentrating between 15 and 33 min. Total volatile organic compounds, total very volatile organic compounds, and total odor intensity decreased as moisture content decreased. In addition, 35 odor-active compounds, including aromatics, alkenes, aldehydes, esters, and alcohols, were identified in the odor control list. Polyurethane (PU), ultraviolet (UV), and waterborne coatings had a good inhibitory effect on eight odor characteristics, but some scents arose after lacquer treatment. For equilibrium moisture content, the major characteristics of Choerospondias axillaris were fragrant (9.4) and mint-like (3.0) compared with the fragrant (8.2), fruity (7.8), and pleasant (5.8) characteristics of PU coating; the flowery (5.9), fragrant (5.0), glue-like (4.3), and pineapple-like (4.3) characteristics of UV coating; and the antiseptic solution (3.6), fragrant (2.9), cigarette-like (2.8), and fruity (2.5) characteristics of waterborne coating. Based on multicomponent evaluation, a Choerospondias axillaris board with waterborne coating was suggested for use indoors.

Funder

Fundamental Research Funds for the Central Universities

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference56 articles.

1. Kee, T.Y. “Indoors environmental performance of UV curable wood coating”, Proceedings of the 8th International Conference on Radiation Curing. Beijing, China (2001).

2. Liu, W. J., Shen, J. & Wang, Q. F. Design of DL–SW micro-cabin for rapid detection and analysis of VOCs from wood-based panels. J. For. Eng. 2(04), 40–45 (2017).

3. Lu, Z. G., Wang, Q. F., Xia, K. Y. & Hou, J. J. Development of a simulated indoor environment release cabin equipment. J. For. Eng. 5(03), 130–137 (2020).

4. Du, C. & Shen, J. Comparison of the rapid testing method for VOCs-emissions from wood-based panels with the chamber method. Sci. Silvae Sin. 51(3), 109–115 (2015).

5. Jiang, L. Q., Shen, J., Zhao, Z., Dong, H. J. & Li, Y. B. Study on film properties and VOCs of nano-TiO2 and ZnO modified waterborne paints. J. For. Eng. 4(04), 148–155 (2019).

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