Cite

1. Keith, C.H.: The Particulate Removal Efficiency of Cellulose Acetate Filters; 24th Tobacco Chemists' Research Conference, Montreal, Canada, October 1970.Search in Google Scholar

2. Keith, C.H.: Physical Mechanisms of Smoke Filtration; Rec. Adv. Tob. Sci. 4 (1978) 25-45.Search in Google Scholar

3. Hirota, K. and E. Takase: Filtration Efficiency of Cigarette Filters Made of Ultra Low Denier Acetate Tow; CORESTA Congress, Kyoto, Japan, Smoke Science/Product Technology Groups, abstr. PT3, 2004, available at: http://www.coresta.org/Meetings/Past_ Abstracts/Kyoto2004-SmokeTech.pdf (accessed September 15, 2014).Search in Google Scholar

4. Shibata, M., K. Hirota, E. Takase, and T. Matsumoto: Smoke Flow Analysis in Cigarette Filters; CORESTA Congress, Kyoto, Japan, Smoke Science/Product Technology Groups, abstr. PT1, 2004, available at: http://www.coresta.org/Meetings/Past_Abstracts/Kyoto2004-SmokeTech.pdf (accessed September 15, 2014).Search in Google Scholar

5. Keith, C.H. and J.C. Denick: Cigarette Filter Efficiency as Measured with a Homogeneous Solid Aerosol; Tob. Sci. 9 (1965) 116-120.Search in Google Scholar

6. Overton, J.R.: Filtration of Cigarette Smoke: Relative Contributions of Inertial Impaction, Diffusional Deposition, and Direct Interception; Beitr. Tabakforsch. 7 (1973) 117-120.Search in Google Scholar

7. Masafumi, T., K. Kazuhiko, and H. Takashi: Two Kinds of Filters Formaldehyde Filtering Behavior in Mainstream Smoke; 59th Tobacco Science Research Conference, Atlanta, GA, USA, September 2005.Search in Google Scholar

8. Han, M., Y.H. Dai, and S.X. Tuo: Comparison of Filtration Effects of Cellulose Acetate and Modified Polypropylene Filters for Harmful Components in Cigarette Smoke; Chin. Tob. Sci. & Tech. 272 (2010) 8-14.Search in Google Scholar

9. Norman, V., A.M. Ihrig, R.A. Shoffner, and M.S. Ireland: The Effect of Tip Dilution on the Filtration Efficiency of Upstream and Downstream Segments of Cigarette Filters; Beitr. Tabakforsch. Int. 12 (1984) 178-185.Search in Google Scholar

10. Jing Y., C. Gong, K. Xian, C. Wang, and P. Lu: The Effects of Filter Ventilation on Flavor Constituents in Cigarette Smoke; Beitr. Tabakforsch. Int. 21 (2005) 280-285.Search in Google Scholar

11. Kiefer, J.E.: Ventilation Filters and Their Effect on Smoke Composition; Rec. Adv. Tob. Sci. 4 (1978) 69-84.Search in Google Scholar

12. Baker, R.R.: The Effect of Ventilation on Cigarette Combustion Mechanisms; Rec. Adv. Tob. Sci. 10 (1984) 88-150.Search in Google Scholar

13. Formella K., T. Braumann, and H. Elmenhorst: The Influence of Different Parameters on the Semivolatile Composition of Mainstream Smoke; Beitr. Tabak- forsch. Int. 15 (1992) 123-128.Search in Google Scholar

14. Dagnon, S., A. Stoilova, I. Ivanov, and S. Nikolova: The Effect of Cigarette Design on the Content of Phenols in Mainstream Tobacco Smoke; Beitr. Tabakforsch. Int. 24 (2011) 187-193.Search in Google Scholar

15. Colard, S., T. Verron, R. Julien, X. Cahours, and S.W. Purkis: Relationship Between Cigarette Yields and Smoking Time Under Different Machine Smoking Regimes; Beitr. Tabakforsch. Int. 26 (2014) 4-18.Search in Google Scholar

16. Purkis, S.W., C. Mueller, M. Intorp, and H. Seidel: The Influence of Cigarette Designs and Smoking Regimes on Vapour Phase Yields; Beitr. Tabakforsch. Int. 24 (2010) 33-46.Search in Google Scholar

17. Yip, S.H., L.T. Taylor, M. Ashraf-Khorassani, J. Yu, M.F. Borgerding, W.M. Coleman III, and J.A. Bodnar: HPLC-MS Ddetermination of Acrolein and Acetone Generated from 13C3-Labeled Glycerol Added to Cigarette Tobacco Using Two Machine-Smoking Regimes; Beitr. Tabakforsch. Int. 24 (2010) 48-57.Search in Google Scholar

18. Kong, H.H., Y.Q. Pang, R. Zhou, G.L. Tang, and J.Z. Wu: Effects of Design Parameters of Cigarette Materials on Deliveries of Carbon Monoxide, Phenol and NNK in Mainstream Cigarette Smoke Under Intensive Smoking Regime; Chin. Tob. Sci. &Tech. 309 (2013), 28-31.Search in Google Scholar

19. China State Bureau of Quality and Technical Supervision (CSBQTS): GB/T 23355-2009. Cigarettes -- Determination of Nicotine in Smoke Condensates -- Gas-Chromatographic Method (ISO 10315: 2000, MOD); CSBQZ, Bejing, 2009.Search in Google Scholar

20. China State Bureau of Quality and Technical Supervision (CSBQTS): YC/T 154-2001. Cigarettes -- Determination of Nicotine in Cigarette Filters -- Gas- Chromatographic Method; CSBQZ, Bejing, 2001.Search in Google Scholar

21. China State Bureau of Quality and Technical Supervision (CSBQTS): YC/T 255-2008. Cigarettes -- Determination of Major Phenolic Compounds in Mainstream Cigarette Smoke -- High Performance Liquid Chromatographic Method; CSBQZ, Bejing, 2008.Search in Google Scholar

22. China State Bureau of Quality and Technical Supervision (CSBQTS): GB/T 21130-2007. Cigarettes -- Determination of Benzo[a]pyrene in Total Particulate Matter; CSBQZ, Bejing, 2007.Search in Google Scholar

23. China State Bureau of Quality and Technical Supervision (CSBQTS): YC/T 253-2008. Cigarettes -- Determination of Hydrogen Cyanide in Cigarette Mainstream Smoke -- Continuous Flow Method; CSBQZ, Bejing, 2008.Search in Google Scholar

24. China State Bureau of Quality and Technical Supervision (CSBQTS): YC/T 377-2010. Cigarettes -- Determination of Ammonia in Mainstream Cigarette Smoke -- Ion Chromatography Method; CSBQZ, Bejing, 2010.Search in Google Scholar

25. Wu, M.J., Y.H. Dai, S.X. Tuo, N.N. Hu, Y. Li, and X.M. Chen: Analysis of Four Tobacco-Specific Nitrosamines in Mainstream Cigarette Smoke of Virginia Cigarettes by LC-MS/MS; J. Cent. South Univ. Technol. 15 (2008) 627-631.Search in Google Scholar

26. International Organisation for Standardization (ISO): ISO 3308:2000. Routine Analytical Cigarette-Smoking Machine -- Definitions and Standard Conditions; ISO, Geneva, Switzerland.Search in Google Scholar

27. World Health Organization (WHO): Decisions; Conference of the Parties to the WHO Framework Convention on Tobacco Control, Third Session, Durban, South Africa, November 17-22, 2008, WHO, Geneva, Switzerland, 2009, available at: http://apps.who.int/gb/fctc/E/E_cop3.htm#monter (accessed September 15, 2014). Search in Google Scholar

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