Characterisation of nanoparticles resulting from different braking behaviours

A. Perrenoud, Michael Gasser, B. Rothen‐Rutishauser, P. Gehr, M. Riediker
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引用次数: 16

Abstract

Brake wear particulate matter (PM) may provoke cardiovascular effects. A system was developed to expose cells to airborne PM from brakes. Six car models were tested, each with full stop and normal deceleration. PM numbers, mass and surface, metals, and carbon compounds were measured. Full stop produced higher PM number and mass concentrations than normal deceleration (up to 10 million particles/cm³ in 0.2 m³ volume). 87% of the PM mass was in the fine (100 nm to 2.5 μm) and 12% in the coarse (2.5 to 10 μm) fraction, whereas 74% of the PM number was nanoscaled (ultrafine < 0.1 μm) and 26% fine PM. Elemental concentrations were 2,364, 236, and 18 μg/m³ of iron, copper and manganese, respectively, and 664 and 36 μg/m³ of organic and elemental carbon. PM-release differed between cars and braking behaviour. Temperature and humidity were stable. In conclusion, the established system seems feasible for exposing cell cultures to brake wear PM.
由不同制动行为产生的纳米颗粒的表征
制动磨损颗粒物(PM)可能引起心血管影响。开发了一种系统,使细胞暴露于空气中来自制动器的PM。测试了六种车型,每一种都有完全停止和正常减速。测量了PM数、质量和表面、金属和碳化合物。完全停止比正常减速产生更高的PM数和质量浓度(在0.2 m³体积中高达1000万个颗粒/cm³)。细粒(100 nm ~ 2.5 μm) PM质量占87%,粗粒(2.5 ~ 10 μm) PM质量占12%,纳米级(超细< 0.1 μm) PM质量占74%,细粒PM质量占26%。铁、铜和锰的元素浓度分别为2364、236和18 μg/m³,有机碳和元素碳的元素浓度分别为664和36 μg/m³。不同车型的pm释放和制动行为不同。温度和湿度稳定。总之,所建立的系统似乎是可行的暴露细胞培养制动磨损PM。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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