Kim Hyo Jeong, Jeong Chanul, Oh Arom, Seo Yong-Soo, Jeon Hotak, Eom Youngho
Department of Polymer Engineering, Pukyong National University, Busan 48513, Republic of Korea.
Surface Treatment Materials Development Team, Material Development Center, Hyundai Motor Company, Hwaseong 18280, Republic of Korea.
J Hazard Mater. 2024 Jan 5;461:132614. doi: 10.1016/j.jhazmat.2023.132614. Epub 2023 Sep 22.
Volatile organic compounds (VOCs) in vehicle cabins pose some health concerns, especially in new cars where interior plastics contribute substantially to VOCs emissions. We investigated the reasons for enhanced VOCs emissions from surface-coated thermoplastic polyester elastomer (TPEE), an automotive interior plastic. After applying solvent-based primer and clearcoat coatings, total VOCs (TVOC) level increased by 12.1 times (2066-24,983 μg m). Among the 15 emitted VOCs, seven VOCs (esters and ketones) originating from the coating solutions accounted for 77.4 % of TVOC. The remaining solvents resulted from TPEE swelling during coating owing to high chemical affinity with the solvents as evidenced by a low contact angle (14.3°) and high degree swelling (68.9%). Further baking at 80C reduced VOCs levels over time, but some major compounds (methyl isobutyl ketone and butyl acetate) persisted until 6 h. Primer and clearcoat films reduced solvent volatilization by approximately 70 %, creating a blocking effect. Apart from solvents, neat TPEE contained 4.2 % of its weight as potential VOCs. Therefore, enhanced VOCs emissions stem from three factors: (1) excessive TPEE swelling caused by coating solvents and residual solvents released as VOCs, (2) restricted volatilization caused by the coating, and (3) emission of inherent VOCs from neat TPEE.
汽车车厢内的挥发性有机化合物(VOCs)引发了一些健康问题,尤其是在新车中,车内塑料是VOCs排放的主要来源。我们研究了汽车内饰塑料——表面涂层热塑性聚酯弹性体(TPEE)VOCs排放增加的原因。在涂覆溶剂型底漆和面漆后,总挥发性有机化合物(TVOC)水平增加了12.1倍(2066 - 24983μg/m)。在排放的15种VOCs中,源自涂料溶液的7种VOCs(酯类和酮类)占TVOC的77.4%。其余溶剂是由于TPEE在涂覆过程中与溶剂具有高化学亲和力而膨胀产生的,低接触角(14.3°)和高膨胀度(68.9%)证明了这一点。在80°C下进一步烘烤会使VOCs水平随时间降低,但一些主要化合物(甲基异丁基酮和乙酸丁酯)直到6小时后仍有残留。底漆和面漆膜使溶剂挥发减少了约70%,产生了阻隔作用。除了溶剂外,纯TPEE含有其重量4.2%的潜在VOCs。因此,VOCs排放增加源于三个因素:(1)涂料溶剂导致TPEE过度膨胀以及作为VOCs释放的残留溶剂,(2)涂料导致的挥发受限,(3)纯TPEE中固有VOCs的排放。