1,296
Views
10
CrossRef citations to date
0
Altmetric
New Generation of Aerosol Instrumentation for Distributed or Personal Sampling

Experimental evaluation of miniature plate DMAs (mini-plate DMAs) for future ultrafine particle (UFP) sensor network

&
Pages 297-307 | Received 23 Jul 2015, Accepted 24 Jan 2016, Published online: 22 Mar 2016

References

  • Bräuner, E. V., Forchhammer, L., Meller, P., Simonsen, J., Glasius, M., Wåhlin, P., Raaschou-Nielsen, O., and Loft, S. (2007). Exposure to Ultrafine Particles from Ambient Air and Oxidative Stress-Induced DNA Damage. Environ. Health Perspect., 115(8):1177–1182.
  • Brunelli, N. A., Flagan, R. C., and Giapis, K. P. (2009). Radial Differential Mobility Analyzer for One Nanometer Particle Classification. Aerosol Sci. Technol., 43(1):53–59.
  • Chen, D. R., Li, W. L., and Cheng, M. D. (2007). Development of a Multiple-Stage Differential Mobility Analyzer (MDMA). Aerosol Sci. Technol., 41:217–230.
  • Chen, D. R., Pui, D. Y. H., Hummes, D., Fissan, H., Quant, F. R., and Sem, G. J. (1998). Design and Evaluation of a Nanometer Aerosol Differential Mobility Analyzer (Nano-DMA). J. Aerosol Sci., 29:497–509.
  • Delfino, R. J., Sioutas, C., and Malik, S. (2005). Potential Role of Ultrafine Particles in Associations Between Airborne Particle Mass and Cardiovascular Health. Environ. Health Perspect., 113:934–946.
  • Fernández de la Mora, J., and Kozlowski, J. (2013). Hand-Held Differential Mobility Analyzers of High Resolution for 1–30 nm Particles: Design and Fabrication Considerations. J. Aerosol Sci., 57:45–53.
  • Fissan, H., Hummes, D., Stratmann, F., Buscher, P., Neumann, S., Pui, D. Y. H., and Chen, D. R. (1996). Experimental Comparison of Four Differential Mobility Analyzers for Nanometer Aerosol Measurements. Aerosol Sci. Technol., 24:1–13.
  • Hoek, G., Brunekreef, B., Goldbohm, S., Fischer, P., and van den Brandt, P. A. (2002). Association Between Mortality and Indicators of Traffic-Related Air Pollution in the Netherlands: A Cohort Study. Lancet, 360:1203–1209.
  • Holguin, F. (2008). Traffic, Outdoor Air Pollution, and Asthma. Immunol. Allergy Clin. North Am., 28:577–588, viii–ix.
  • Hummes, D., Stratmann, F., Neumann, S., and Fissan, H. (1996). Experimental Determination of the Transfer Functions of a Differential Mobility Analyzer (DMA) in the Nanometer Size Range. Part. Part. Syst. Charact., 5:327–332.
  • Knutson, E. O., and Whitby, K. T. (1975). Aerosol Classification by Electric Mobility: Apparatus, Theory, and Applications. J. Aerosol Sci., 6:443–451.
  • Larriba, C., Hogan Jr., C. J., Attoui, M., Borrajo, R., Fernandez Garcia, J., and Fernández de la Mora, J. (2011). The Mobility-Volume Relationship Below 3.0 nm Examined by Tandem Mobility-Mass Measurement. Aerosol Sci. Technol., 45(4):453–467.
  • Li, L., Chen, D. R., Qi, C., and Kulkarni, P. S. (2009). A Miniature Disk Electrostatic Aerosol Classifier (Mini-disk EAC) for Personal Nanoparticle Sizers. J. Aerosol Sci., 40(11):982–992.
  • Li, N., Harkema, J. R., Lewandowski, R. P., Wang, M., Bramble, L. A., Gookin, G. R., Ning, Z., Kleinman, M. T., Sioutas, C., and Nel, A. E. (2010). Ambient Ultrafine Particles Provide a String Adjuvant Effect in the Secondary Immune Response: Implication for Traffic-Related Asthma Flares. Am. J. Physiol. Lung Cell Mol. Physiol., 299:L374–L383.
  • Li, W., Li, L., and Chen, D. R. (2006). Technical Note: A New Deconvolution Scheme for the Retrieval of True DMA Transfer Function from Tandem DMA Data. Aerosol Sci. Technol., 40:1052–1057.
  • Liu, B. Y. H., and Pui, D. Y. H. (1974). A Submicron Aerosol Standard and the Primary, Absolute Calibration of the Condensation Nucleus Counter. J. Colloid Interface Sci., 47(1):155–171.
  • Liu, B. Y. H., and Pui, D. Y. H. (1975). On the Performance of the Electrical Aerosol Analyzer. J. Aerosol Sci., 6:249–264.
  • Mei, F., Fu, H., and Chen, D.-R. (2011). Design and Evaluation of a Cost-effective Differential Mobility Analyzer. J. Aerosol Sci., 42:462–473.
  • Mui, W., Thomas, D. A., Downard, A. J., Beauchamp, J. L., Seinfeld, J. H., and Flagan, R. C. (2013). Ion Mobility-Mass Spectrometry with a Radial Opposed Migration Ion and Aerosol Classifier (ROMIAC). Anal. Chem., 85:6319–6326.
  • Oberdörster, G., Oberdörster, E., and Oberdörster, J. (2005). Nanotoxicology: An Emerging Discipline Evolving from Studies of Ultrafine Particles. Environ. Health Perspect., 113:823–839.
  • Patel, M. M., and Miller, R. L. (2009). Air Pollution and Childhood Asthma: Recent Advances and Future Directions. Curr. Opin. Pediatr., 21:235–242.
  • Peters, A., von, K. S., Heier, M., Trentinaglia, I., Hormann, A., Wichmann, H. E., and Lowel, H. (2004). Exposure to Traffic and the Onset of Myocardial Infarction. N. Engl. J. Med., 351:1721–1730.
  • Qi, C., Chen, D. R., and Greenberg, P. (2008). Fundamental Study of a Miniaturized Disk-Type Electrostatic Aerosol Precipitator for a Personal Nanoparticle Sizer. Aerosol Sci. Technol., 42:505–512.
  • Qi, C., Kulkarni, P., Kato, T., and Fukushima, N. (2011). Development of Portable Aerosol Electrical Mobility Spectrometer (PAEMS) for AerosolExposure Measurement, in Poster Presented at the American Association for Aerosol Research 30th Annual Conference, Orlando, Florida.
  • Rader, D. J., and McMurry, P. H. (1986). Application of the Tandem Differential Mobility Analyzer to Studies of Droplet Growth or Evaporation. J. Aerosol Sci., 17:771–787.
  • Ranjan, M., and Dhaniyala, S. (2007). Theory and Design of a New Miniature Electrical-Mobility Aerosol Spectrometer. Aerosol Sci., 38:950–963.
  • Rus, J., Moro, D., Antonio Sillero, J., Royuela, J., Casado, A., Estevez-Molinero, F., and Fernández de la Mora, J. (2010). IMS-MS Studies Based on Coupling a Differential Mobility Analyzer (DMA) to Commercial API-MS System. Int. J. Mass Spectrom., 298:30–40.
  • Russell, L. M., Stolzenburg, M. R., Zhang, S. H., Caldow, R., Flagan, R. C., and Seinfeld, J. H. (1996). Radially Classified Aerosol Detector for Aircraft Based Submicron Aerosol Measurements. J. Atmos. Oceanic Technol., 13:598–609.
  • Salam, M. T., Islam, T., and Gilliland, F. D. (2008). Recent Evidence for Adverse effects of Residential Proximity to Traffic Sources on Asthma. Curr. Opin. Pulm., Med., 14:3–8.
  • Samet, J. M., Dominici, F., Curriero, F. C., Coursac, I., and Zeger, S. L. (2000). Fine Particulate Air Pollution and Mortality in 20 US Cities, 1987–1994. N. Engl. J. Med., 343:1742–1749.
  • Santos, J. P., Hontañón, E., Ramiro, E., and Alonso, M. (2009). Performance Evaluation of a High-Resolution Parallel-Plate Differential Mobility Analyzer. Atmos. Chem. Phys., 9:2419–2429.
  • Scheibel, H. G., and Porstendorfer, J. (1983). Generation of Monodisperse Ag and NaCl Aerosols with Particle Diameters Between 2 and 300 nm. J. Aerosol Sci., 14:113–126.
  • Shah, A. P., Pietropaoli, A. P., Frasier, L. M., Speers, D. M., Chalupa, D. C., Delehanty, J. M., Huang, L. S., Utell, M. J., and Frampton, M. W. (2008). Effect of Inhaled Carbon Ultrafine Particles on Reactive Hyperemia in Healthy Huna Subjects. Environ. Health Perspect., 116(3):375–380.
  • Steer, B., Gorbunov, B., Muir, R., Ghimire, A., and Rowles, J. (2014). Portable Planar DMA: Development and Tests. Aerosol Sci. Technol., 48:250–259.
  • Stewart, J., Chalupa, D. C., Devlin, R., Frasier, L. M., Huang, L. S., Little, E. L., Lee, S. M., Phipps, R. P., Pietropaoli, A. P., Taubman, M. B., Utell, M. J., and Frampton, M. W. (2010). Vascular Effects of Ultrafine Particles in Persons with Type 2 Diabetes. Environ. Health Perspect., 118:1692–1698.
  • Tritscher, T., Beeston, M., Zerrath, A. F., Elzey, S., Krinke, T. J., Filimundi, E., and Bischof, O. F. (2013). NanoScan SMPS - A Novel, Portable Nanoparticle Sizing and Counting Instrument. J. Phys. Conf. Ser., 429:012061.
  • Zhang, S. H., Akutsu, Y., Russell, L. M., and Flagan, R. C. (1995). Radial Differential Mobility Analyzer. Aerosol Sci. Technol., 23:357–372.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.