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Secondary Voc Emissions From Flooring Material Surfaces Exposed To Ozone Or Uv Irradiation

机译:暴露于臭氧或紫外线的地板材料表面的二次Voc排放

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Chemical reactions on the surface of building materials can lead to secondary emissions from these materials that influence indoor air quality. Many studies have been made on the physical processes that influence material emissions. However, there are only a few studies on secondary emissions resulting from exposure of building material surfaces to ozone or ultraviolet (UV) irradiation. Therefore, this study was aimed at elaborating on the emission of chemicals resulting from chemical reactions initiated by the exposure of the surface of flooring materials to ozone or UV irradiation. The laboratory tests were conducted to estimate gas-phase emissions from the flooring materials when they were exposed to ozone or various kinds of light irradiation (infrared, sunlight, UV-A and UV-B lamps). The infrared and sunlight lamps significantly increased the temperature of the test specimens and, in turn, increased the emission rate for various organic compounds. The flooring materials used in this study had been treated with UV-cured surface coatings during their manufacturing. As a result, when exposed to UV irradiation, chemical transformations occurred resulting in the emission of a number of secondary products, including formaldehyde, acetaldehyde, cyclohexanone and benzaldehyde. Ozone reacted with chemicals present in the flooring materials to increase the emission rates of formaldehyde and acetaldehyde. Hence, the exposure of ozone and UV irradiation increased the secondary emissions of formaldehyde, even though the low formaldehyde emission type of flooring material was employed.
机译:建筑材料表面的化学反应会导致这些材料产生二次排放,从而影响室内空气质量。已经对影响材料排放的物理过程进行了许多研究。但是,关于建筑材料表面暴露于臭氧或紫外线(UV)辐射而产生的二次排放的研究很少。因此,本研究的目的是详细阐述由于地板材料表面暴露于臭氧或紫外线辐射而引发的化学反应所产生的化学物质的排放。进行了实验室测试,以估计地板材料在暴露于臭氧或各种光辐射(红外,日光,UV-A和UV-B灯)下的气相排放。红外灯和日光灯显着提高了试样的温度,进而提高了各种有机化合物的发射率。本研究中使用的地板材料在制造过程中已经过UV固化的表面涂层处理。结果,当暴露于紫外线辐射下时,发生化学转化,导致释放出许多次级产物,包括甲醛,乙醛,环己酮和苯甲醛。臭氧与地板材料中存在的化学物质发生反应,以增加甲醛和乙醛的排放速率。因此,即使采用低甲醛排放类型的地板材料,臭氧和紫外线辐射的暴露也会增加甲醛的二次排放。

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