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焊接过程中电压的变化会影响超细颗粒的产生、烟雾成分和肺毒性。

Alterations in welding process voltage affect the generation of ultrafine particles, fume composition, and pulmonary toxicity.

机构信息

Health Effects Laboratory Division, National Institute for Occupational Safety and Health, Morgantown, West Virginia 26505, USA.

出版信息

Nanotoxicology. 2011 Dec;5(4):700-10. doi: 10.3109/17435390.2010.550695. Epub 2011 Feb 1.

Abstract

The goal was to determine if increasing welding voltage changes the physico-chemical properties of the fume and influences lung responses. Rats inhaled 40 mg/m³ (3 h/day × 3 days) of stainless steel (SS) welding fume generated at a standard voltage setting of 25 V (regular SS) or at a higher voltage (high voltage SS) of 30 V. Particle morphology, size and composition were characterized. Bronchoalveolar lavage was performed at different times after exposures to assess lung injury. Fumes collected from either of the welding conditions appeared as chain-like agglomerates of nanometer-sized primary particles. High voltage SS welding produced a greater number of ultrafine-sized particles. Fume generated by high voltage SS welding was higher in manganese. Pulmonary toxicity was more substantial and persisted longer after exposure to the regular SS fume. In summary, a modest raise in welding voltage affected fume size and elemental composition and altered the temporal lung toxicity profile.

摘要

目的是确定增加焊接电压是否会改变烟尘的物理化学性质并影响肺部反应。大鼠吸入 40 mg/m³(每天 3 小时× 3 天)的不锈钢(SS)焊接烟尘,这些烟尘是在标准电压设置为 25 V(常规 SS)或更高电压 30 V(高电压 SS)下产生的。对颗粒形态、大小和成分进行了表征。在暴露后不同时间进行支气管肺泡灌洗以评估肺损伤。来自任一焊接条件的烟尘都呈现出纳米级初级颗粒的链状团聚体。高压 SS 焊接产生了更多的超细颗粒。高压 SS 焊接烟尘中的锰含量更高。与常规 SS 烟尘相比,暴露于高压 SS 焊接烟尘后,肺部毒性更大且持续时间更长。总之,焊接电压的适度提高会影响烟尘的大小和元素组成,并改变肺部毒性的时间特征。

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