ГОСТ Р 70063.2—2022
Библиография
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[2]Wang J., & Tronville P. 2014. Toward standardized test methods to determine the effectiveness of filtration media
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Equivalent Size Range of 1.2-8 nm. J. Aerosol Sci., 41,207
[5]ИСО 29463 (все части)
Высокоэффективные фильтры и фильтрующие материалы для улавливания частиц
в воздухе
[6]ИСО 16890 (все части)
Фильтры очистки воздуха общего назначения
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[8] Japuntich D., Franklin L., Pui D., Kuehn T, Kim S.C., Viner A.S. 2007) A comparison of two nano-sized particle air
filtration tests in the diameter range of 10 to 400 nanometers, J. Nanoparticle Research, 9, 93—107
[9] Buha J., Fissan H., Wang J. 2013) Filtration Behavior of Silver NanoparticleAgglomerates and Effects of theAgglom
erate Model in Data Analysis, Journal of Nanoparticle Research, 15:1709, DOI: 10.1007/s11051-013-1709-z
[10] Wiedensohler A. 1988) Technical Note: An Approximation of the Bipolar Charge Distribution for Particles in the Sub
micron Range, Journal of Aerosol Science, 19:3, 387—389
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Size Magnifier, Aerosol Science and Technology, 3:4, 353-366, DOI: 10.1080/02786828408959024
[12] ИСО 27891:2015 Счетная концентрация аэрозольных частиц. Калибровка конденсационных счетчиков
частиц
[13] Yook Se-Jin, Fissan Heinz, Engelke Thomas, Asbach Christof, van derZwaag Till, Kim Jung Hyeun, Wang Jing, Pui
David Y.H. 2008) Classification of highly monodisperse nanoparticles of NIST-traceable sizes by TDMA and control of
deposition spot size on a surface by electrophoresis, J. Aerosol Science 39 ( 2008) 537—548
[14] ISO/TS 19713-1:2010Дорожные транспортные средства. Оборудование для очистки поступающего воздуха
для двигателей внутреннего сгорания и компрессоров. Часть 1. Определение фрак
ционной эффективности улавливания частиц малого размера (оптического диаметра
от 0,3 мкм до 5 мкм)
[15] Heim М., Attoui М., Kasper G. 2010) The Efficiency of Diffusional Particle Collection onto Wire Grids in the Mobility
Equivalent Size Range of 1.2-8 nm. J. Aerosol Sci., 41,207
[16] Hinds WC 1999). Aerosol Technology: Properties behavior and measurement of airborne particles, Second edition,
John Willey & Sons
[17] Davies CN (ed). (1973). Air filtration. Academic Press. London
[18] Sachinidou P, Tang M., Zhang M., Chen S.C., Pui D.Y.H., Lima B.A., Bosco G., Tronville P., Thomas Mosimann T,
Eriksson M., Wang J. (2017) Inter-Laboratory Validation ofthe Method to Determinethe Filtration EfficiencyforAirborne
Particles in the 3-500 nm Range and Results Sensitivity Analysis. AAQR. 17:8. DOI: 10.4209/aaqr.2017.03.0104.
[19] Farrance I, & Frenkel R 2012). Uncertainty of Measurement: A Review of the Rules for Calculating Uncertainty Com
ponents through Functional Relationships. Clin Biochem Rev. 33
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