耐火陶瓷纤维工业中导电取样罩上纤维沉积的评价

Michael J. Cornett, C. Rice, V. Hertzberg, J. Lockey
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引用次数: 5

摘要

摘要:美国国家职业安全与卫生研究所(NIOSH)用于纤维分析的分析方法7400最近受到了质疑,因为当空气中的纤维粘附在导电取样罩的内表面时,可能会引入误差来源。在本研究中,作为一个主要耐火陶瓷纤维(RCF)项目的环境监测质量保证计划的一部分,专门研究了纤维损失到冷却器的问题。实验过程涉及使用NIOSH方法7400对113个25毫米混合纤维素酯(MCE)过滤器进行分析,这些过滤器来自工作环境中空气中RCF的采样。这些样品的延伸罩被洗涤,颗粒重新沉积在25毫米MCE过滤器上,并以与原始采样过滤器相同的方式进行分析。总纤维沉积率为16.5%。在88%的头罩中,头罩上的纤维肉眼可见;在没有纤维可见的地方,延伸上的沉积…
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of Fiber Deposition on the Conductive Sampling Cowl in the Refractory Ceramic Fiber Industry
Abstract The National Institute for Occupational Safety and Health (NIOSH) analytical method 7400 for fiber analysis recently has been challenged regarding the source of error that may be introduced when airborne fibers adhere to the inner surface of the conductive sampling cowl. In this study, the problem of fiber loss to the cowl is examined specifically as a part of the environmental monitoring quality assurance program of a major Refractory Ceramic Fiber (RCF) project. The experimental procedure involved using NIOSH method 7400 for the analysis of 113 25-mm mixed cellulose ester (MCE) filters from sampling airborne RCF in the work environment. The extension cowls from these samples were washed, the particulate redeposited on 25-mm MCE filters, and analyzed in the same manner as the original sampling filters. There was an overall fiber deposition to the cowl of 16.5 percent. In 88 percent of the cowls, fibers on the cowl were visible to the eye; where no fibers were visible, the deposition on the exten...
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