1,182
Views
3
CrossRef citations to date
0
Altmetric
Technical Paper

Assessment of exhaust emissions from carbon nanotube production and particle collection by sampling filters

, , , &
Pages 1376-1385 | Received 11 Jun 2015, Accepted 12 Sep 2015, Published online: 20 Oct 2015

References

  • Amade, R., S. Hussain, I.R. Ocaña, and E. Bertran. 2014. Growth and functionalization of carbon nanotubes on quartz filter for environmental applications. J. Environ. Eng. Ecol. Sci. 3(2). doi:10.7243/2050-1323-3-2
  • Faghihnejad, A., and H. Zeng. 2013. Interaction mechanism between hydrophobic and hydrophilic surfaces: Using polystyrene and mica as a model system. Langmuir 29(40):12443–51, doi:10.1021/la402244h
  • Golanski, L., A. Guiot, F. Rouillon, J. Pocachard, and F. Tardif. 2009. Experimental evaluation of personal protective devices against graphite nanoaerosols: Fibrous filter media, masks, protective clothing, and gloves. Hum. Exp. Toxicol. 28:353–59. doi:10.1177/0960327109105157
  • Golanski, L., A. Guiot, and F. Tardif. 2010. Experimental evaluation of individual protection devices against different types of nanoaerosols: Graphite, TiO2, and pt. J. Nanopart. Res. 12:83–89. doi:10.1007/s11051-009-9804-x
  • Golanski, L., A. Guiot, and F. Tardif. 2008. Efficiency of fibrous filters and personal protective equipments against nanoaerosols. Nanosafe Dissemination Report, DR-325/326-200801-1, Project ID-NMP2-CT-2005-515843. Nanosafe2 project website: http://www.nanosafe.org.
  • Grosse, Y., D. Loomis, K. Z. Guyton, B. Laugy-Secretan, F. El Ghissassi, V. Bouvard, L. Bernbrahim-Tallea, et al. 2014. Carcinogenicity of fluoro-edenite, silicon carbide fibres and whiskers, and carbon nanotubes. Lancet Oncol. 15(13):1427–28. doi:10.1016/S1470-2045(14)71109-X
  • Ji, J.H., J.B. Kim, G. Lee, J.H. Noh, S.J. Yook, S.H. Cho, and G.N. Bae. 2015. Workplace exposure to titanium dioxide nanopowder released from a bag filter system. Biomed. Res. Int. article ID 524283. doi:10.1155/2015/524283
  • Lundgren, D., and T. Gunderson. 1975. Efficiency and loading characteristics of EPA’s high-temperature quartz fiber filter media. Am. Ind. Hyg. Assoc. J. 36:866–72. doi:10.1080/0002889758507358
  • Lundgren, D., and T. Gunderson. 1976. Filtration characteristics of class fiber filter media at elevated temperatures, Environmental Sciences Research Laboratory. U.S. Environmental Protection Agency, Environmental Protection Technology Series EPA-600/2-76-192. http://nepis.epa.gov/Adobe/PDF/91015XO6.pdf.
  • Ma-Hock, L., S. Treumann, V. Strauss, S. Brill, F. Luizi, M. Mertler, K. Wiench, A.O. Gamer, B. van Ravenzwaay, and R. Landsiedel. 2009. Inhalation toxicity of multiwall carbon nanotubes exposed in rats for 3 months. Toxicol. Sci. 112(2):468–81. doi:10.1093/toxsci/kfp146
  • Maynard, A.D., and E.D. Kuempel. 2005. Airborne nanostructured particles and occupational health. J. Nanopart. Res. 7(6):587–614. doi:10.1007/s11051-005-6770-9
  • Occupational Safety and Health Administration. 2006. Table Z-1 Limits for Air Contaminants. 29 CFR 1910.1000 Table Z-1. https://www.osha.gov/pls/oshaweb/owadisp.show_document?p_table=STANDARDS&p_id=9992
  • Pall Corporation. 2011. Glass fiber filters, Pall product brochure. http://labfilters.pall.com/catalog/laboratory_20027.asp (accessed February 2015).
  • Poland, C.A., R. Duffin, I. Kinloch, A. Maynard, W.A.H. Wallace, A. Seaton, V. Stone, S. Brown, W. MacNee, and K. Donaldson. 2008. Carbon nanotubes introduced into the abdominal cavity of mice show asbestos-like pathogenicity in a pilot study. Nat. Nanotech. 3:423–28. doi:10.1038/nnano.2008.111
  • Rengasamy, S., B.C. Eimer, and R.E. Shaffer. 2009. Comparison of nanoparticle filtration performance of NIOSH-approved and CE-marked particulate filtering facepiece respirators. Ann. Occup. Hyg. 53(2):117–28. doi:10.1093/annhyg/men086
  • Rengasamy, S., W.P. King, B.C. Eimer, and R.E. Shaffer. 2008. Filtration performance of NIOSH-approved N95 and P100 filtering facepiece respirators against 4 to 30 nanometer-size nanoparticles. J. Occup. Environ. Hyg. 5(9):556–64. doi:10.1080/15459620802275387
  • Ryman-Rasmussen, J.P., M.F. Cesta, A.R. Brody, J.K. Shipley-Phillips, J.I. Everitt, E.W. Tewksbury, O.R. Moss, et al. 2009. Inhaled carbon nanotubes reach the subpleural tissue in mice. Nat. Nanotech. 4:747–51. doi:10.1038/nnano.2009.305
  • Seto, T., T. Furukawa, Y. Otani, K. Uchida, and S. Endo. 2010. Filtration of multi-walled carbon nanotube aerosol by fibrous filters. Aerosol Sci. Technol. 44:734–40. doi:10.1080/02786826.2010.487881
  • Shvedova, A.A., E.R. Kisin, R. Mercer, A.R. Murray, V.J. Johnson, A.I. Potapovich, Y.Y. Tyurina, et al. 2005. Unusual inflammatory and fibrogenic pulmonary responses to single-walled carbon nanotubes in mice. Am. J. Physiol. Lung Cell. Mol. Physiol. 289:698–708. doi:10.1152/ajplung.00084.2005
  • Shvedova, A.A., E.R. Kisin, A.R. Murray, V.J. Johnson, O. Gorelik, S. Arepalli, A.F. Hubbs, et al. 2008. Inhalation vs. aspiration of single-walled carbon nanotubes in C57BL/6 mice: Inflammation, fibrosis, oxidative stress, and mutagenesis. Am. J. Physiol. Lung Cell. Mol. Physiol. 295:L552–65. doi:10.1152/ajplung.90287.2008
  • Smith, B.D., and S.B.H. Bach. 2015. Deposition of carbon nanotubes in commonly used sample filter media. Global J. Environ. Sci. Manage. 1(3):189–98.
  • Takagi, A., A. Hirose, T. Nishimura, N. Fukumori, A. Ogata, N. Ohashi, S. Kitajima, and J. Kanno. 2008. Induction of mesothelioma in p53+/- mouse by intraperitoneal application of multi-wall carbon nanotube. J. Toxicol. Sci. 33(1):105–16, http://www.jstage.jst.go.jp/article/jts/33/1/33_105/_article. doi:10.2131/jts.33.105
  • Tsai, C.S.J. 2015. Characterization of airborne nanoparticle loss in sampling tubing. J. Occup. Environ. Hyg. doi:10.1080/15459624.2015.1019077
  • Tsai, S.J., M. Echevarría-Vega, G. Sotiriou, C. Santeufemio, C. Huang, D. Schmidt, P. Demokritou, and M. Ellenbecker. 2012. Evaluation of environmental filtration control of engineered nanoparticles using the harvard versatile engineered nanomaterial generation system (VENGES). J. Nanopart. Res. 14:812. doi:10.1007/s11051-012-0812-x
  • Tsai, S.J., M. Hofmann, M. Hallock, E. Ada, J. Kong, and M.J. Ellenbecker. 2009. Characterization and evaluation of nanoparticle release during the synthesis of single-walled and multi-walled carbon nanotubes by chemical vapor deposition. Environ. Sci. Technol. 43(15):6017–23. doi:10.1021/es900486y
  • Wang, C., and Y. Otani. 2012. Removal of nanoparticles from gas streams by fibrous filters: A review. Ind. Eng. Chem. Res. doi:10.1021/ie300574m.
  • Wang, J., and D. Pui. 2013. Dispersion and filtration of carbon nanotubes (CNTs) and measurement of nanoparticle agglomerates in diesel exhaust. Chem. Eng. Sci. 85:69–76. doi:10.1016/j.ces.2011.12.045
  • Whatman GE Healthcare. 2011. Whatman filter, air sampling filters and quartz filters. http://www.whatman.com/AirSamplingandQuartzFilters.aspx (accessed February 2015).
  • Xiang, R., G. Luo, W. Qian, Y. Wang, F. Wei, and Q. Li. 2007. Large area growth of aligned CNT arrays on spheres: Towards the large scale and continuous production. Chem. Vap. Dep. 13(10):533–36. doi:10.1002/cvde.200704249

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.