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建筑材料中的有害物质:高通量筛选。

Chemicals of concern in building materials: A high-throughput screening.

机构信息

Department of Environmental Health Sciences, School of Public Health, University of Michigan, Ann Arbor, MI, USA.

Quantitative Sustainability Assessment, Department of Technology, Management and Economics, Technical University of Denmark, Produktionstorvet 424, 2800 Kgs. Lyngby, Denmark.

出版信息

J Hazard Mater. 2022 Feb 15;424(Pt C):127574. doi: 10.1016/j.jhazmat.2021.127574. Epub 2021 Oct 23.

Abstract

Chemicals used in building materials can be a major passive emission source indoors, associated with the deterioration of indoor environmental quality. This study aims to screen the various chemicals used in building materials for potential near-field human exposures and related health risks, identifying chemicals and products of concern to inform risk reduction efforts. We propose a mass balance-based and high-throughput suited model for predicting chemical emissions from building materials considering indoor sorption. Using this model, we performed a screening-level human exposure assessment for chemicals in building materials, starting from product chemical composition data reported in the Pharos Building Products Database for the USA. Health risks and MAximum chemical Contents from High-Throughput Screening (MAC) were determined, combining exposure estimates with toxicity information. Exposures were estimated for > 300 unique chemical-product combinations from the Pharos databases, of which 73% (25%) had non-cancer (cancer) toxicity data available. We identified 55 substances as chemicals of high concern, with actual chemical contents exceeding MAC by up to a factor 10, in particular diisocyanates and formaldehyde. This stresses the need for more refined investigations to select safer alternatives. This study serves as a suitable starting point for prioritizing chemicals/products and thus developing safer and more sustainable building materials.

摘要

建筑材料中使用的化学物质可能是室内主要的被动排放源,与室内环境质量恶化有关。本研究旨在筛选建筑材料中各种可能对人体产生近场暴露的潜在化学物质,并评估相关健康风险,以确定需要关注的化学物质和产品,从而为减少风险提供信息。我们提出了一种基于质量平衡和高通量的模型,用于预测考虑室内吸附的建筑材料中化学物质的排放。使用该模型,我们根据美国 Pharos 建筑产品数据库中报告的产品化学成分数据,对建筑材料中的化学物质进行了筛选水平的人体暴露评估。我们结合暴露估计和毒性信息,确定了健康风险和高通量筛选最大化学含量 (MAC)。从 Pharos 数据库中对 >300 种独特的化学-产品组合进行了暴露估计,其中 73%(25%)具有非癌症(癌症)毒性数据。我们确定了 55 种高关注物质,其实际化学含量超过 MAC 多达 10 倍,特别是二异氰酸酯和甲醛。这强调了需要进行更精细的调查,以选择更安全的替代品。本研究为优先考虑化学物质/产品提供了合适的起点,从而开发更安全和更可持续的建筑材料。

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