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Improving the performance of coalescing filters

机译:改善聚结过滤器的性能

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Aerosol filtration is one of techniques used to remove the particles from the air stream using the fibrous filters and so it has many industrial applications like dehumidification, automobile filters; exhaust filters which separates particles as well as liquid droplets from air source which is important in concern with environmental aspect. So even a small improvement in the performance of the coalescing filters can lead to better economy.The performance of coalescing filters can be improved by adding optimum amount of nanofibers as well as putting drainage channels in the filter media. Nylon nanofibers of about 150 nm are added in micro-glass fibers of 2 to 5 micron size for different area ratios. It was observed that the relative quality factor increases rapidly for small area ratios, it passes through a maximum for area ratio of about 1.0, and gradually declines for larger area ratios. The experimental results indicate that the optimum relative quality factor occurs for 0.1 grams of nylon nanofibers added to 2.0 grams of glass fibers, or about 5 % nanofibers by mass.One more approach for increasing the performance of coalescing filters is by incorporating the drainage channels in the filter media as well as by changing the orientation of the filter media. The paper also discusses various geometries of filter media in different orientations.
机译:气溶胶过滤是使用纤维过滤器从气流中去除颗粒物的技术之一,因此它在除湿,汽车过滤器等许多工业应用中都得到了应用。排气过滤器可从空气源中分离颗粒和液滴,这在环境方面很重要。因此,即使对聚结过滤器的性能进行很小的改进也可以带来更好的经济性。 可以通过添加最佳量的纳米纤维以及在过滤介质中放置排水通道来改善聚结过滤器的性能。对于不同的面积比,将大约150 nm的尼龙纳米纤维添加到2至5微米大小的微玻璃纤维中。可以观察到,相对质量因数在小面积比率时迅速增加,在大约1.0的面积比率时通过最大值,而在较大的面积比率时逐渐下降。实验结果表明,相对于添加到2.0克玻璃纤维中的0.1克尼龙纳米纤维,或按质量计约5%的纳米纤维,出现了最佳的相对质量因数。 增加聚结过滤器性能的另一种方法是将排水通道合并到过滤器介质中,以及更改过滤器介质的方向。本文还讨论了不同方向的过滤器介质的各种几何形状。

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