POLYPROPYLENE MULTILAYER MELT-BLOWN CARTRIDGE: THE UNIVERSAL PARTICLES REMOVER FOR LIQUIDS FILTRATION

Authors

  • V.L. Ponomarev ООО «НПО «Экософт»,
  • S.L. Vasilyuk

DOI:

https://doi.org/10.20535/2218-93002522019188264

Keywords:

filtering cartridges, melt-blown technology, polypropylene, multilayer, tap water

Abstract

In this paper special emphasis is making on the so-called mechanical filter elements made of polypropylene obtained by melt-blown (MB) technology. Presented information about production and testing multilayer polypropylene filtering cartridges, and their properties comparison with monolayer analogues.

References

Bo Z. Production of polypropylene melt blown nonwoven fabrics: Part II -Effect of process parameters Indian Journal of Fibre and Textile Research. 2012. 37 (4), 326-330.

Dutton K.C. Overview and analysis of the meltblown process and parameters. J. Text. Apparel, Technol. Manage. 2009. 6 (1), 1-25.

Ellison C. J., Phatak A., Giles D. W.. Macosko C. W., Bates F. S. Melt blown nanofibers: Fiber diameter distributions and onset of fiber breakup. Polymer. 2007. 48 (11), 3306-3316. doi: 10.1016/j.polymer.2007.04.005

Hangzhou Darlly Filtration Equipment Co.,Ltd. http://www.darllyfiltration.com/en/. 2019.

Kirsh A. A., Budyka A. K., Kirsh V. A. Filtration of aerosols with fiber materials FP. Russian Journal of General Chemistry. 2009. 79 (9), 2045-2050.

Lee Y., Wadsworth L. C. Effects of melt-blowing process conditions on morphological and mechanical properties of polypropylene webs. Polymer. 1992. 33 (6), 1200-1209. doi: 10.1016/0032-3861(92)90764-N

Petrânov I. V., Kozlov V. I., Basanov P. I., Ogorodnikov B. I. Voloknistye filʹtruûŝie materialy FP. Moscow: Khimiya, 1968. [In Russian].

Ponomarev V. L. Filter cartridges: from simple to complex. Water and water treatment technologies. 2015. 1-2, 75-76. [In Russian].

Promyšlennaâ čistota. Filʹtry i filʹtruûŝie èlementy. Metody ispytanij. [GOST R 50554-93].

Road vehicles. Test dust for filter evaluation. Arizona test dust. [British standard. BS ISO 12103-1:1997].

Sikorska E. Ph. D. Thesis. Warsaw, 2017.

Sikorska E., Gac J. M., Gradon L. Performance of a depth fibrous filter at particulate loading conditions. Description of temporary and local phenomena with structure development. Chemical Engineering Research and Design. 2018. 132, 743-750.

SUEZ Water Technologies & Solutions. www.suezwatertechnologies.com. 2019.

Water conditioning equipment inside buildings. Mechanical filters. Particle rating. [British standard. BS EN 13443-2:2005 +Al:2007].

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Published

2021-06-02

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