Ionization Impact on the Air Cleaning Efficiency in the Interior
References
- [1] Mackensen, S., Bullinger, M., Morfeld, M. (1999). The Sick Building Syndrome as a subjective perception-theoretical approach and assessment methods. Zentralblatt fur Hygiene und Umweltmedizin, 202 (2-4), 243-248.
- [2] Wyon, D.P. (1992). Sick buildings and the experimental approach. Environmental Technology, 13 (4), 313-322.
- [3] Polaškova, A. et al. (2011). The Introduction into the Ecology and the Environment Protection. Charles University in Prague, 284 p. [in Czech]
- [4] Hogner s.r.o. (2005). Air ionization. http://cistickyvzduchu.sk/ionizacia-vzduchu.htm. [in Slovak]
- [5] Jakober, C., Philips, T. (2008). Evaluation of Ozone Emissions From Portable Indoor Air Cleaners. Electrostatic Precipitators and Ionizers. Staff Technical Report. California Environmental Protection Agency, Air Resources Board, 33 p.
- [6] Daniels, S.L. (2007). On the qualities of the air as affected by radiant energies (photocatalyt ionization processes for remediation of indoor environments). Environmental Engineering Science, 6 (3), 329-342.
- [7] Wu, C.C., Lee, G.W.M. (2004). Oxidation of volatile organic compounds by negative air ions. Atmospheric Environment, 38 (37), 6287-6295.
- [8] Goodman, N., Hughes, J.F. (2004). The effect of corona discharge on dust mite and cat allergens. Journal of Electrostatics, 60 (1), 69-91.
- [9] Parts, T-E., Luts, A. (2004). Observed and simulated effects of certain pollutants on small air ion spectra: I. Positive ions. Atmospheric Environment, 38 (9), 1283-1289.
- [10] Tanaka, A., Zhang, Y. (1996). Dust settling efficiency and electrostatic effect of a negative ionization system. Journal of Agricultural Safety and Health, 2 (1), 39-47.
- [11] Britigan, N., Alschawa, A., Nizkorodov, S.A. (2006). Quantification of ozone levels in indoor environments generated by ionization and ozonelysis air purifiers. Journal of the Air & Waste Management Association, 56 (5), 601-610.
- [12] Daniels, S.L. (2001). Applications of air ionization for control of VOCs and PMx. In 94th Air and Waste Management Association Annual Conference, Orlando, Florida.
- [13] Shiue, A., Hu, S.-C., Tu, M.-L. (2011). Particles removal by negative ionic air purifier in cleanroom. Aerosol and Air Quality Research, 11, 179-186.
- [14] Waring, M.S., Siegel, J.A. (2011). Indoor air quality implications of using ion generators in residences. Indoor Air, 21 (3), 267-276.
- [15] Daniels, S.L. (2002). On the ionization of air for removal of noxious effluvia. IEEE Transactions on Plasma Science, 30 (4), 1471-1481.
- [16] Grabarczyk, Z. (2001). Effectiveness of indoor air cleaning with corona ionizers. Journal of Electrostatics, 51-52, 278-283.
- [17] Rexfort, C. (2004). A Contribution to Fire Detection Modelling and Simulation. Dissertation. University of Duisburg-Essen, 88 p.
- [18] Monn, C., Schaeppi, G. (1993). Concentration of total suspended particles and fine particles and their anionic compounds in ambient air and in indoor air. Environmental Technology, 14 (9), 869-875.
- [19] Christoforos, H.H., Assimakopoulos, V.D, Helmis, C.G., Flocas, H.A. (2005). Investigating cigarettesmoke indoor pollution in a controlled environment. Science of The Total Environment, 337 (1-3), 183-190.
- [20] Aggarwal, S., Motevalli, V. (1997). Investigation of an Approach to fuel identification for nonflaming source using light-scattering and ionization smoke detector response. Fire Safety Journal, 29 (2-3), 99-112.
- [21] Halios, C.H., Helmis, C.G., Assimakopoulos, V.D., Flocas, H.A., Petrakis, M. (2003). Studying indoor air quality in a residential apartment in Athens, Greece. In 8th International Conference on Environmental Science and Technology, Lemnos Island, Greece, 8-10 September 2003.
- [22] Paoletti, L., Berardis, B., Arizza, L., Granato, V. (2006). Influence of tobacco smoke on indoor PM10 particulate matter characteristics. Atmospheric Environment, 40 (18), 3269-3280.
- [23] Lin, C.C., Peng, C.K. (2010). Characterization of indoor PM10, PM2.5, and ultrafine particles in elementary school classrooms. Environmental Engineering Science, 27 (11), 915-922.
- [24] Massey, D., Kulshrestha, A., Masih, J., Taneja, A. (2012). Seasonal trends of PM10, PM5.0, PM2.5 & PM1.0 in indoor and outdoor environments of residential homes located in North-Central India. Building and Environment, 47, 223-231.
- [25] Buonanno, G., Morawska, L., Stabile, L., Viola, A. (2010). Exposure to particle number, surface area and PM concentrations in pizzerias. Atmospheric Environment, 44 (32), 3963-3969.
- [26] Diapouli, E., Eleftheriadis, K., Karanasiou, A.A., Vratolis, S., Hermansen, O., Colbeck, I., Lazaridis, M. (2011). Indoor and outdoor particle number and mass concentrations in Athens. Sources, sinks and variability of aerosol parameters. Aerosol and Air Quality Research, 11 (6), 632-642.
- [27] Gao, J., Cao, C., Wang, L., Song, T., Xiang, T., Yang, J., Zhang, X. (2013). Aerosol particles at the oilheating stage in an experimental kitchen. Aerosol and Air Quality Research, 13 (2), 488-496.
- [28] Bartušek, K., Dokoupil, Z. (2003). Automatic device for ion fields measurement. Measurement Science Review, 3, 75-78.
- [29] Jokl, M. (2002). Healthy Living and Working Environment. Prague: Academia. [in Czech]
- [30] Middleton, R. (1989). A Negative-Ion Cookbook. Dept. of Physics, Univ. of Pennsylvania.
- [31] Sawant, V.S., Jadhav, D.B. (2012). Laboratory experiments on aerosol removal by negative air ions. In International Conference on Environmental Science and Technology, IPCBEE vol. 30. Singapore: IACSIT Press, 63-67.
- [32] Fischer, O., Kisova, L., Miadokova, M., Molin, J. (1983). Physical Chemistry. Prague: SPN. [in Czech]
- [33] Dvorak, J., Koryta, J. (1983). Electrochemistry. Prague: Academia. [in Czech].
- [34] Sitar, J. (2006). Aerial ions and our health. In Conference on Humans in Their Earthly and Cosmic Environment, Upice, Czech Republic, 170-174. [in Czech]
- [35] Cernecky, J., Valentova, K. (2012). The effect of ionization on indoor air quality inside of a building. In Proceedings “Nové trendy v technike ochrany ovzdušia 2012.” Technical University in Zvolen, Slovak Republic, 19-24. [in Slovak]
- [36] Obulana, Z., Hostin, S. (2012). Study of oxidizing effect of ozone on vapours of organic substances acetone and ethanol in the air. In Proceedings “Nové trendy v technike ochrany ovzdušia 2012.” Technical University in Zvolen, Slovak Republic, 86-92. [in Slovak]
- [37] Weschler, C.J. (2000). Ozone in indoor environments: Concentration and chemistry. Indoor Air, 10 (4), 269-288.
- [38] Buonanno, G., Dell’Isola, M., Stabile, L., Viola, A. (2011). Critical aspects of the uncertainty budget in the gravimetric PM measurements. Measurement, 44 (1), 139-147.
- [39] Mayer, N.K., Lauber, A., Nussbaumer, T., Burtscher, H. (2009). Influence of particle charging on TEOM measurements in the presence of an electrostatic precipitator. Atmospheric Measurement Techniques, 2, 81-85.
- [40] U.S. Environmental Protection Agency. (2008). Network Design Criteria for Ambient Air Quality Monitoring, 366 p. http://www.epa.gov/roe/docs/ roe_final/EPAROE_FINAL_2008.PDF.
- [41] Brodnianska, Z. (2011). Gas flow visualization by smoke. Technical education as a part of general education. Matej Bel University, Banska Bystrica, Slovak Republic, 113-120. [in Slovak].
- [42] Piadé, J.J., Wajrock, S., Jaccard, G., Janeke, G. (2013). Formation of mainstream cigarette smoke constituents prioritized by the World Health Organization-yield patterns observed in market surveys, clustering and inverse correlations. Food and Chemical Toxicology, 55, 329-347.
- [43] Grinshpun, S.A., Mainelis, G., Trunov, M., Adhikari, A., Reponen, T., Willeke, K. (2005). Evaluation of ionic air purifiers for reducing aerosol exposure in confined indoor spaces. Indoor Air, 15 (4), 235-245.
- [44] Lee, B.U., Yermakov, M., Grinshpun, S.A. (2004). Removal of fine and ultrafine particles from indoor air environments by the unipolar ion emission. Atmospheric Environment, 38 (29), 4815-4823.
- [45] U.S. Environmental Protection Agency. National ambient air quality standards (NAAQS). http://www.epa.gov/air/criteria.html.
- [46] World Health Organization. (2000). Air Quality Guidelines for Europe, 2nd ed., 273 p. http://www.euro.who.int/__data/assets/pdf_file/0005/74732/E71922.pdf.
DOI: https://doi.org/10.1515/msr-2015-0023 | Journal eISSN: 1335-8871
Language: English
Page range: 156 - 166
Submitted on: Nov 12, 2014
Accepted on: Jul 30, 2015
Published on: Aug 27, 2015
Published by: Slovak Academy of Sciences, Institute of Measurement Science
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open
Keywords:
Related subjects:
© 2015 Jozef Černecký, Karina Valentová, Elena Pivarčiová, Pavol Božek, published by Slovak Academy of Sciences, Institute of Measurement Science
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.