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用于EN 15051-2粉尘含量转鼓试验的多孔金属泡沫的表征与改性

Characterisation and modification of the porous metal foams used for the EN 15051-2 dustiness rotating drum test.

作者信息

Bard Delphine, Hunwin Graeme, Thorpe Andrew, Dewberry Kirsty, Burdett Garry, Hemingway Michael

机构信息

Health and Safety Executive (HSE) Science Division, Harpur Hill, Buxton SK 17 9JN, Buxton, United Kingdom.

出版信息

Ann Work Expo Health. 2025 Jan 8;69(1):59-70. doi: 10.1093/annweh/wxae076.

Abstract

Two approaches were used to evaluate the performance of the reticulated metal foams used to size select and collect dust generated in the dustiness rotating drum tester according to the EN 15051-2 standard "Workplace exposure-Measurement of the dustiness of bulk materials-Rotating drum test". Firstly, the detailed performance of the metal foams was measured in a calm air chamber using a polydisperse aerosol of glass particles and assessed against the respirable conventions described in the EN 481 standard "Workplace atmospheres-Size fraction definitions for measurement of airborne particles". Secondly, the performance of the EN 15051-2 metal foam size selection for the respirable fraction was compared using the rotating drum dustiness test, with that of a cyclone set-up, using 4 polydisperse glass powders of different size distribution and dustiness potential. The research discusses further improvements to the EN 15051-2 standard and an approach to more closely match the EN 481 convention. In general, for the respirable fraction, the tests in this study demonstrated a conservative oversampling by the current EN 15051-2 metal foam set-up in comparison with the EN 481 convention. Calculations and tests showed an improved fit was achieved by reducing the inner diameter of the flanges separating the metal foams and the filter. This study also showed the importance of sealing the circumference of the metal foams when testing highly dusty powders. A direct comparison of the respirable dustiness fraction, measured by the current EN 15051-2 metal foams set-up and by a cyclone set-up, showed broad agreement. However, for extremely dusty powders, the metal foams can clog, and dust can accumulate between the 20 and 80 pores per inch foams.

摘要

根据EN 15051-2标准《工作场所暴露——散装材料粉尘度的测量——转鼓试验》,采用两种方法评估用于筛分和收集在粉尘度转鼓试验中产生的粉尘的网状金属泡沫的性能。首先,在平静的气室内使用玻璃颗粒的多分散气溶胶测量金属泡沫的详细性能,并根据EN 481标准《工作场所大气——空气中颗粒物测量的粒径分级定义》中描述的可吸入颗粒物标准进行评估。其次,使用转鼓粉尘度试验,比较了EN 15051-2金属泡沫对可吸入部分的尺寸选择性能与旋风分离器装置的性能,使用了4种不同粒径分布和粉尘度潜力的多分散玻璃粉。该研究讨论了对EN 15051-2标准的进一步改进以及更紧密匹配EN 481标准的方法。总体而言,对于可吸入部分,本研究中的测试表明,与EN 481标准相比,当前EN 15051-2金属泡沫装置存在保守的过采样。计算和测试表明,通过减小分隔金属泡沫和过滤器的法兰的内径,可以实现更好的拟合。本研究还表明,在测试高粉尘粉末时,密封金属泡沫的圆周非常重要。通过当前EN 15051-2金属泡沫装置和旋风分离器装置测量的可吸入粉尘度部分的直接比较显示出广泛的一致性。然而,对于极高粉尘的粉末,金属泡沫可能会堵塞,并且灰尘会积聚在每英寸20至80个孔的泡沫之间。

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