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Structural improvement to quadruple service life of a high-efficiency electret filter

机译:高效驻极体滤波器的结构改进使其使用寿命提高了四倍

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The electret filter is composed of permanently charged electret fibers highly capable of collecting charged and uncharged nanosize particles. Compared to the ordinary non-electret fiber, the aerosol collection efficiency η of the electret fiber can initially be significantly higher. In our previous study, η of the electret fiber under dust loading is found to be approximated as the sum of the electrical and mechanical collection efficiencies. It is also shown that the former efficiency can be approximated as a logarithmic function of the dust load. Since the expensive electret filter cannot practically be cleaned and re-used, it is crucial to lengthen its service life without compromising its collection efficiency. In the present study, the time-dependent dust-loaded collection efficiencies of four electret filters with the same average packing density of 0.04 but different linear spatial distributions of the packing density along the filter thickness (0.04 throughout, front 0.03 back 0.05, front 0.02-back 0.06, front 0.01-back 0.07) are simulated and compared. The maximum penetrations and clogging points of the four filters are different. At the maximum 4% penetration through filter D (front 0.01-back 0.07) is two times higher than filter A (0.04 throughout), but the dust load at clogging point of filter D is about 4 times higher than filter A. The results show a significant difference in the distributions of the mass deposited particles along the filter thickness as time passes. As a result, it is possible to quadruple the filter service life by packing the filter loosely on the inlet side and progressively more densely towards the outlet side, while maintaining a sufficiently high aerosol collection efficiency at all times.
机译:驻极体过滤器由永久带电的驻极体纤维组成,该纤维能够收集带电和不带电的纳米级颗粒。与普通的非驻极体纤维相比,驻极体纤维的气溶胶收集效率η最初可以明显更高。在我们之前的研究中,发现驻极体纤维在粉尘载荷下的η近似等于电气和机械收集效率的总和。还表明,前一个效率可以近似为粉尘负荷的对数函数。由于昂贵的驻极体滤波器实际上无法清洗和重复使用,因此延长其使用寿命而不损害其收集效率至关重要。在本研究中,四个驻极体过滤器随时间变化的集尘效率,其平均堆积密度为0.04,但沿着过滤器厚度的堆积密度线性空间分布不同(始终为0.04,正面为0.03,背面为0.05,正面为0.02) -后0.06,前0.01-后0.07)进行模拟和比较。四个过滤器的最大穿透力和堵塞点不同。在最大4%的渗透率下,通过过滤器D的渗透(前0.01-后0.07)是过滤器A的两倍(整个0.04),但在过滤器D堵塞点的粉尘负荷大约是过滤器A的4倍。随着时间的流逝,沉积的质量颗粒沿过滤器厚度的分布有明显差异。结果,通过在入口侧上松散地填充过滤器并且朝出口侧上逐渐更密集地填充过滤器,可以使过滤器使用寿命增加三倍,同时始终保持足够高的气雾收集效率。

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