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Analysis of the performance of a novel dust collector combining cyclone separator and cartridge filter

机译:旋风分离器和盒式滤筒结合新型集尘器性能的分析

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The cyclone separator has a simple structure but cannot effectively separate respirable dust of smaller particle sizes. The cartridge filter has a high separation efficiency, but its pressure drop increases too rapidly, requiring frequent cleaning operations. To make up for these defects, a novel cartridge-filtering cyclone combining both cyclone separator and cartridge filter is presented. Its performance parameters, including pressure drop, overall separation efficiency, grading efficiency, and cleaning interval, were studied experimentally and compared with those of the common cyclone and cartridge filter. The cartridge-filtering cyclone first pre-separates the larger particles by swirling airflow, and then filters out the fine particles through the filter cartridges, thus slowing down the increasing rate of the pressure drop and forming denser dust layers attached to the surface of the filter cartridges. The experimental results show that the cartridge-filtering cyclone has a better dust removal effect. At an inlet flow rate of 50 m(3)/h, the separation efficiency of the cartridge-filtering is 99.86%, which is 15.32% and 0.05% higher than that of the common cyclone and cartridge filter, respectively. In particular, the cartridge-filtering cyclone has a preferable separation effect on fine particles, with a separation efficiency for 2.5 mu m particles of 99.11%, which is 70.80% and 0.08% higher than that of the common cyclone and cartridge filter, respectively. Compared with the cartridge filter, the cleaning interval of the cartridge-filtering cyclone is extended and the total dust emission is reduced. Over the whole experimental period, the average cleaning interval and dust emission concentration of the cartridge-filtering cyclone are 1290.05 seconds and 12.06 mg/m(3) respectively, while that of the cartridge filter are 80532 seconds and 14.59 mg/m(3), respectively. (C) 2018 Elsevier B.V. All rights reserved.
机译:旋风分离器具有简单的结构,但不能有效地分离较小的粒径的可吸入粉尘。墨盒过滤器具有高的分离效率,但其压降越来越迅速,需要频繁的清洁操作。为了弥补这些缺陷,提出了一种组合旋风分离器和盒式滤筒的新型盒式滤筒滤波器。实验研究其性能参数,包括压降,整体分离效率,分级效率和清洁间隔,与共同旋风分离器和盒式筒滤波器进行比较。滤筒滤波器旋风首先通过旋转气流将较大的颗粒预先分离,然后通过滤筒过滤出细颗粒,从而减慢压降的增加速率并形成附着在过滤器表面的压缩灰尘层墨盒。实验结果表明,盒式滤芯旋风器具有更好的除尘效果。在50μm(3)/ h的入口流速下,盒式滤筒的分离效率为99.86%,分别比公共旋风器和盒式滤筒的高度为15.32%和0.05%。特别地,盒式滤筒旋风器对细颗粒具有优选的分离效果,其分离效率为2.5μm颗粒,99.11%,分别比公共旋风器和盒式滤筒的70.80%和0.08%。与盒式滤光器相比,延长盒式滤筒旋风旋风的清洁间隔,并且减少了总粉尘排放。在整个实验期间,盒式滤筒的平均清洁间隔和除尘浓度分别为1290.05秒和12.06mg / m(3),而盒式滤筒过滤器为80532秒和14.59mg / m(3) , 分别。 (c)2018 Elsevier B.v.保留所有权利。

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