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解构当代一次性电子烟:材料与元素分析

Deconstructing contemporary disposable vapes: A material and elemental analysis.

作者信息

Turner Andrew, Scott John W, Backshall-Kennedy Thomas, Dabrowski Maya C

机构信息

School of Geography, Earth and Environmental Sciences, University of Plymouth, Drake Circus, Plymouth PL4 8AA, UK.

The Illinois Sustainable Technology Center, Prairie Research Institute, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Sci Total Environ. 2024 Dec 1;954:176292. doi: 10.1016/j.scitotenv.2024.176292. Epub 2024 Sep 19.

Abstract

Disposable e-cigarettes (vapes) are becoming increasingly popular but there are concerns about their impacts on human health, the environment and resource sustainability. A better understanding of these impacts and potential solutions requires characterisation and quantification of the materials and chemicals used in their construction. In the present study we dismantle nine types of popular, single-use vapes and analyse the components by X-ray fluorescence spectrometry and pyrolysis-gas chromatography mass spectrometry. The median dry mass of vapes was about 50 g, and the main material contribution was either plastic (up to about 80 %) or metal (up to about 85 %, and including the battery). Polycarbonate was the principal plastic used in the casing and nylon was always employed in the wick, but a range of other polymers were identified in other components used in wire insulation, sleeving, packaging, bundling and sealing. Various elements, as additives, residues or contaminants, were encountered in these parts that included As, Ba, Bi, Cr, Hg, Pb and Sb. Metal components were constructed of Al (often with Ti), stainless steel or Ni-based alloys (mainly in the coils), but other metals were often incorporated in alloys (e.g., Bi, Pb, W) or were present in trace quantities (including Co and Nb). Common metals in the Al-plastic-laminated Li-ion batteries were Cu, Co, Fe and Ni, but Au, Ba, Hg and Pb were also detected, while additional metals in the Cu-based printed circuit boards included Ag, Al, Ni, Sn, Ti and V, with traces of Ag, Bi, Mn, Nb and Pb present. The presence of toxic or potentially toxic metals in the vapes poses an environmental hazard through leaching after littering or landfilling, while metals within or in contact with the wick raise concerns about transfer to the e-liquid and exposure to the user. The overall material and chemical complexity of vapes presents challenges for safe disposal and component recycling, but the presence of critical elements, like Bi, Co, Nb, Sb, Sn, V and W, has additional implications for resource management.

摘要

一次性电子烟越来越受欢迎,但人们担心其对人类健康、环境和资源可持续性的影响。要更好地了解这些影响及潜在解决方案,需要对其制造过程中使用的材料和化学品进行表征和量化。在本研究中,我们拆解了九种流行的一次性电子烟,并通过X射线荧光光谱法和热解气相色谱-质谱联用分析法对其组件进行分析。电子烟的干质量中位数约为50克,主要成分是塑料(高达约80%)或金属(高达约85%,包括电池)。聚碳酸酯是外壳使用的主要塑料,尼龙则一直用于吸液芯,但在电线绝缘、套管、包装、捆绑和密封等其他组件中也鉴定出了一系列其他聚合物。在这些部件中发现了各种作为添加剂、残留物或污染物的元素,包括砷、钡、铋、铬、汞、铅和锑。金属部件由铝(通常含钛)、不锈钢或镍基合金(主要在线圈中)制成,但其他金属也常被纳入合金中(如铋、铅钨)或微量存在(包括钴和铌)。铝塑复合锂离子电池中的常见金属有铜、钴、铁和镍,但也检测到了金、钡、汞和铅,而铜基印刷电路板中的其他金属包括银、铝、镍、锡、钛和钒,还存在微量的银、铋、锰、铌和铅。电子烟中有毒或潜在有毒金属的存在,会在乱扔或填埋后通过浸出对环境造成危害,而吸液芯内部或与之接触的金属则引发了人们对其转移到电子烟液并接触使用者的担忧。电子烟整体的材料和化学复杂性给安全处置和组件回收带来了挑战,但铋、钴、铌、锑、锡、钒和钨等关键元素的存在,对资源管理有额外影响。

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