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Emissions of selected monoaromatic hydrocarbons as a factor affecting the removal of single-use polymer barbecue and kitchen utensils from everyday use

机译:选定的单芳烃的排放是影响从日常使用中去除一次性聚合物烧烤和厨房用具的因素

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The main focus of this study is the emission of monoaromatic hydrocarbons because these are the preliminary factors of potential solvent and monomer residues present in single-use plastic barbecue and kitchen utensils comprising polystyrene, polypropylene, natural cellulose, and biodegradable polymers intended for use with hot meal or beverages. Herein, the emissions of monoaromatic hydrocarbons (styrene, benzene, toluene, ethyl-benzene, and xylene compounds and the total volatile organic compounds (TVOC)) from nine types of disposable plastic utensils are reported. Seventy two samples of single-use plastic utensils were conditioned at 40 and 80 ℃ using a stationary emission microchamber system. The average TVOC released from the studied polystyrene, polypropylene, and natural or biodegradable utensils were (2.3 ± 1.3), (1.01 ± 0.15), and (0.48 ± 0.37) μg g~(-1) respectively,at 40 ℃ and (11.1 ± 1.2), (46.1 ± 9.5), and (5.5 ± 1.1) μg·g~(-1) respectively, at 80 ℃. Significant emissions of styrene (ranged from 3.5 up to 15.3 ×10~3 ng·g~(-1)), toluene (from 2.8 up to 0.53 ×10~3 ng·g~(-1)), and ethylbenzene (from 3.7 up to 5.7 × 10~3 ng·g~(-1)) from the studied samples were observed, especially at 80 ℃.Thus, elevated temperatures increase the potential emission of solvent and monomer residues from plastics and could affect the quality of consumed meals or beverages, such as taste. Additionally, to determine the possible interactions between the measured chemical compounds in the plastic utensils, the Pearson's correlation coefficients were calculated.
机译:这项研究的主要重点是单芳烃的排放,因为这些是一次性塑料烧烤和厨房用具(包括聚苯乙烯,聚丙烯,天然纤维素和可热降解的可生物降解的聚合物)中潜在的溶剂和单体残留的初步因素。餐或饮料。本文报道了从九种类型的一次性塑料器皿中排放的单芳烃(苯乙烯,苯,甲苯,乙苯和二甲苯化合物以及总挥发性有机化合物(TVOC))。使用固定发射微腔系统将72个一次性塑料器皿样品分别置于40和80℃下。在40℃和(11.1)下,所研究的聚苯乙烯,聚丙烯和天然或可生物降解的器皿释放的平均TVOC分别为(2.3±1.3),(1.01±0.15)和(0.48±0.37)μgg〜(-1)。在80℃下分别为±1.2),(46.1±9.5)和(5.5±1.1)μg·g〜(-1)。大量排放的苯乙烯(3.5至15.3×10〜3 ng·g〜(-1)),甲苯(2.8至0.53×10〜3 ng·g〜(-1))和乙苯(来自尤其是在80℃时,观察到的样品高达3.7×10〜3 ng·g〜(-1)),因此,升高的温度会增加塑料中溶剂和单体残留物的潜在排放量,并可能影响塑料的质量。食用的食物或饮料,例如味道。此外,为了确定塑料器具中所测化合物之间的可能相互作用,计算了皮尔森相关系数。

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