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Effects of humidity, temperature, and nanofibers on drop coalescence in glass fiber media

机译:湿度,温度和纳米纤维对玻璃纤维介质中液滴聚结的影响

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摘要

Compressed air is used in a variety of industrial applications. For many of these applications the air must be treated to remove undesired contaminants such as solid particles and droplets of oil and water. Glass fiber filter media are often used to remove the oil droplets out of the compressed gas. This paper describes an experimental study to explore the effects of humidity and temperature on the performance of the glass fiber filter media. This work also considers the effects of the addition of polymer nanofibers to the glass fiber media on the filter performaence. The results show that generally at higher temperatures the glass fiber media have better coalescence filtration performance. The glass fiber media also performed better with a humidity dewoint of -15 deg C compared with dewpoints of -10 and -20 deg C, suggesting that there may be competing mechanisms affected by the humidity. The coalescence performance of the media improved significantly when nanofibers were added to the glass fiber media.
机译:压缩空气用于各种工业应用。对于许多此类应用,必须处理空气以去除不希望的污染物,例如固体颗粒以及油和水的液滴。玻璃纤维过滤介质通常用于从压缩气体中去除油滴。本文描述了一项实验研究,以探索湿度和温度对玻璃纤维滤料性能的影响。这项工作还考虑了向玻璃纤维介质中添加聚合物纳米纤维对过滤器性能的影响。结果表明,通常在较高温度下,玻璃纤维介质具有较好的聚结过滤性能。与-10和-20℃的露点相比,玻璃纤维介质在-15℃的露点下性能也更好,这表明可能存在竞争机制。当将纳米纤维添加到玻璃纤维介质中时,介质的聚结性能显着提高。

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