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Original Articles

Using partial flow dilution to measure PM mass emissions from light-duty vehicles

, &
Pages 136-145 | Received 06 Jun 2017, Accepted 25 Sep 2017, Published online: 23 Oct 2017

References

  • Anderson, R., Azelborn, N., and Wade, W. (1974). Critical Flow Venturi, U.S. Patent 3817100A.
  • Bushkuhl, J., Silvis, W., Szente, J., and Maricq, M. (2013). A New Approach for Very Low Particulate Mass Emissions Measurement. SAE Int. J. Engines, 6:1152–1162.
  • Chang, M. C. O., and Shields, J. E. (2017). Evaluation of Solid Particle Number and Black Carbon for Very Low Particulate Matter Emissions Standards in Light-Duty Vehicles. J. Air Waste Manag. Assoc. 67:677–693.
  • Chase, R. E., Duszkiewicz, G. J., Richert, J. F. O., Lewis, D., Maricq, M. M., and Xu, N. (2004). PM Measurement Artifact: Organic Vapor Deposition on Different Filter Media. SAE Technical Paper, 2004–01-0967.
  • Chase, R. E., Duszkiewicz, G. J., Lewis, D., and Podsiadlik, D. H. (2005). Reducing PM Measurement Variability by Controlling Static Charge. SAE Technical Paper 2005–01-0193.
  • Engeljehringer, K., Schindler, W., and Sulzer, R. (1993). Meeting ISO 8178 Requirements for the Measurement of Diesel Particulates with Partial-Flow Dilution Systems. SAE Technical Paper 932466.
  • Environmental Protection Agency (2016a). Code of Federal Regulations, Title 40: Protection of Environment, Part 1065: Engine-testing Procedures. https://www.ecfr.gov/cgi-bin/text-idx?SID=f6088078f395dcbf83232ff472c90e7f&mc=true&node=pt40.37.1065&rgn=div5
  • Environmental Protection Agency (2016b). Code of Federal Regulations, Title 40: Protection of Environment, Part 1066: Vehicle-testing Procedures. http://www.ecfr.gov/cgi-bin/text-idx?SID=6c78b46d9c39453655d5dafb5238f476&mc=true&node=pt40.37.1066&rgn=div5
  • Foote, E., Maricq, M., Sherman, M., Carpenter, D., Guenther, M., Peabody, J., Polster, M., Szente, J., and Loos, M. (2013). Evaluation of Partial Flow Dilution Methodology for Light Duty Particulate Mass Measurement. SAE Technical Paper 2013-01-1567.
  • Guenther, M., Vaillancourt, M., and Polster, M. (2003). Advancements in Exhaust Flow Measurement Technology. SAE Technical Paper 2003-01-0780.
  • Hall, D. E. and Dickens, C. J. (2000). Measurement of the Numbers of Emitted Gasoline Particles: Genuine or Artefact? SAE Technical Paper 2000-01-2957.
  • Hu, S., Zhang, S., Sardar, S., Chen, S., Dzhema, I., Huang, S. M., Quiros, D., Sun, H., Laroo, C., Sanchez, L. J., Watson, J., Chang, M. C. O., Huai, T., and Ayala, A. (2014). Evaluation of a Gravimetric Method to Measure Light-Duty Particulate Matter Emissions at Levels Below One Milligram Per Mile (1mg/mile). SAE Technical Paper, 2014-01-1571.
  • Jung, H., Johnson, K. C., Russell, R. L., Durbin, T. D., Miller, W., Xue, E. J., Swanson, J., and Kittelson, D. (2016). Very Low PM Mass Measurements. Coordinating Research Council Project E-99.
  • Jung, H., Johnson, K. C., Russell, R. L., Durbin, T. D., Miller, W., Xue, E. J., Swanson, J., and Kittelson, D. (2017a). Very Low Particle Matter Mass Measurements from Light-Duty Vehicles. J. Aerosol Sci., ( submitted).
  • Jung, H., Johnson, K. C., Russell, R. L., Durbin, T. D., Miller, W., Xue, E. J., and Kittelson, D. (2017b). Very Low PM Mass Measurements. Coordinating Research Council Project E-99 Phase 2. https://www.crcao.org/reports/recentstudies2017/E-99-2/E-99-2%20Exec%20Summary.pdf
  • Kamboures, M. A., Rieger, P. L., Zhang, S., Sardar, S. B., Chang, M. C. O., Huang, S. M., Dzhema, I., Fuentes, M., Benjamin, M. T., Hebert, A., and Ayala, A. (2015). Evaluation of a Method for Measuring Vehicular PM with a Composite Filter and a Real-Time BC Instrument. Atmos. Environ., 123:63–71.
  • Khalek, I. A. (2007). 2007 Diesel Particulate Measurement Research. Coordinating Research Council Project E-66-Phase 3. https://crcao.org/reports/recentstudies2007/E-66-3/E-66%20Phase%203%20Final%20Report%20R8-%20IAK-Revised%2010SEP2007.pdf
  • Khalek, I. A., Bougher, T., and Jetter, J. J. (2010). Particle Emissions from a 2009 Gasoline Direct Injection Engine Using Different Commercially Available Fuels. SAE Technical Paper 2010-01-2117.
  • Khalek, I. A., Ullman, T. L., Shimpi, S. A., Jackson, C. C., Dharmawardhana, B., Silvis, W. M., Kreft, N., Harvey, R. N., Munday, D., Yamagishi, Y., Graze, R., Smitherman, J., and Adkins, J. (2002). Performance of Partial Flow Sampling Systems Relative to Full Flow CVS for Determination of Particulate Emissions Under Steady-State and Transient Diesel Engine Operation. SAE Technical Paper 2002-01-1718.
  • Kupnik, M., Schroder, A., O'Leary, P., Benes, E., and Groschl, M. (2004). An Ultrasonic Transit-Time Gas Flowmeter for Automotive Applications. In Sensors, 2004. Proceedings of IEEE (pp. 451–454). IEEE.
  • Maricq, M. M., Chase, R. E., Podsiadlik, D. H., and Ogt, R. (1999). Vehicle Exhaust Particle Size Distributions: A Comparison of Tailpipe and Dilution Tunnel Measurements. SAE Technical Paper 1999-01-1461.
  • Maricq, M. M., Szente, J. J., Harwell, A. L., and Loos, M. J. (2016). How well can Aerosol Instruments Measure Particulate Mass and Solid Particle Number in Engine Exhaust? Aerosol Sci. Technol., 50:605–614.
  • Maricq, M. M., Szente, J. J., Harwell, A. L., and Loos, M. J. (2017). Impact of Aggressive Drive Cycles on Motor Vehicle Exhaust PM Emissions. J. Aerosol Sci., 113:1–11.
  • Saliba, G., Saleh, R., Zhao, Y., Presto, A. A., Lambe, A. T., Frodin, B., Sardar, S., Maldonado, H., Maddox, C., May, A. A., Drozd, G. T., Goldstein, A. H., Russell, L. M., Hagen, F. P., and Robinson, A. L. (2017). A Comparison of Gasoline Direct Injection (GDI) and Port Fuel Injection (PFI) Vehicle Emissions: Emission Certification Standards, Cold Start, Secondary Organic Aerosol Formation Potential, and Potential Climate Impacts. Environ. Sci. Technol., 50:13592–13599.
  • Sardar, S. B., Zhang, S., Frodin, B., McMahon, W., Huang, S. M., Larson, L., Chang, M. C. O. (2016). Evaluation of PM Measurement Precision and the Equivalency of the Single and Three Filter Sampling Methods for LEV III FTP Standards. SAE Int. J Engines, 9:342–354.
  • Schindler, W., Haisch, C., Beck, H. A., Niessner, R., Jacob, E., and Rothe, D. (2004). A Photoacoustic Sensor System for Time Resolved Quantification of Diesel Soot Emissions. SAE Technical Paper 2004-01-0968.
  • Schweizer, T., and Stein, H. J. (2000). A New Approach to Particulate Measurement on Transient Test Cycles: Partial Flow Dilution – Alternative to CVS Full Flow Systems. SAE Technical Paper 2000-01- 1134.
  • Wiers, W. W. and Scheffler, C. E. (1972). Carbon Dioxide (CO2) Tracer Technique for Modal Mass Exhaust Emission Measurement. SAE Technical Paper 720126.
  • Yi, J., Wooldridge, S., Coulson, G., Hilditch, J., Iyer, C. O., Moilanen, P., Papaioannou, G., Reiche, D., Shelby, M., VanDerWege, B., Weaver, C., Xu, Z., Davis, G., Hinds, B., and Schamel, A. (2009). Development and Optimization of the Ford 3.5 L V6 EcoBoost Combustion System. SAE Int. J. Engines, 2:1388–1407.
  • Zhang, S., and McMahon, W. (2012). Particulate Emissions for LEV II Light-Duty Gasoline Direct Injection Vehicles. SAE Int. J. Fuels Lubr., 5:637–646.

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