ГОСТ Р 56748.1—2015
Библиография
[11Kroto H.W., Heath J.R.. O’brian S.C.. Curl R.F.. Smalley R.E. C60: Buckminsterfullerene. Nature. 1985. 318 pp.
162—163
[2)PAS 136:2007 Terminology for narramatenals, British Standards Institution (Терминология нанопроизвод
ства)
(31lijima S. Helical Microtubules of Graphitic Carbon. Nature. 1991.354 pp. 56—58
[4] Current Intelligence Bulletin N.I.O.S.H.63. Occupational Exposure to Titanium Dioxide. 2011.
www.cdc.gov/niosW
docs/2011—160/
[5] Pope C.A.. Burnett R.T.. Thurston G.D. et al. Cardiovascular mortality and long-term exposure to particulate air
pollution: epidemiological evidence of general pathophysiological pathways of disease. Circulation. 2004. 109 pp.
71—74
[6] Donaldson K.. Murphy F.A.. Duffin R., Poland C. Asbestos, carbon nanotubes, and the pleural mesothelium: A
review of the hypothesis regarding the role of long fibre retention in the parietal pleura inflammation and mesotheli
oma. Part. Fibre Toxicol. 2010. 7 pp. 1— 17
[7]The SAFENANO website:
www.safenano.org
[8] Tinkle S.S.. Antonini J.M.. Rich B.A.. Roberts J.R.. Salmon R„ DePree K. et al. Skin as a route of exposure and
sensitization in chronic beryllium disease. Environ. Health Perspect. 2003 Jul. 111 (9) pp. 1202—1208
[9] Ryman-Rasmussen J.P.. Riviere J.E., Monteiro-Riviere N.A. Penetration of intact skin by quantum dots with diverse
physicochemical properties. Toxicol. Sci. 2006 May. 91 (1) pp. 159—165 Epub 2006 Jan 27
[10] Gulson B. et al. Small amounts of zinc from zinc oxide particles in sunscreens applied outdoors are absorbed
through human skin. Toxicol. Sci. 2010. 118 <1)pp. 140—149
[11]The control of hazardous substances regulations (COSHH)2002 (as amended). SI 2002. No. 2677. London: HMSO
[12]Fire and explosion properties of narvopowders. RR782 Health and Safety Executive 2010
[13]ISO/TR 13121
Nanoinaterials — Risk Evaluation (Нанотехнологии. Оценка рисков для наномагериалов)
[14]PAS 6699-2:2007
Guide to Safe Handling and Disposal of Manufactured Nanomaterials. British Standards In
stitution (Нанотехнологии. Руководство no безопасному транспортированию получен
ных наноматериапое)
[15] Engineered Nanopartides — Review of Health and Environmental Safety (ENHRES) Final report, available at:
http://ihcp.jrc.ec.europa.eu/whats-new/enhres-final-report
[16]NIOSH Nanotechnology web page:
wwiv.cdc.gov/niosh/topics/nanotech/default.html
[17]Australia S.A.F.E.W.O.R.K. (SWA). 2010. An Evaluation of MSDS and Labels associated ’With the use of Engineered
Nanomaterials. Commonwealth ofAustralia.
www.safeworkaustralia.gov.au/NR/rdonlyres/9E6C8E6F-AB31-4A0A-BCD8D31742F25F79/0/AnEvaluation-
ofMSDSandLabelsassociatedwiththeuseofengineerednanomaterials_June_2010.pdf
[18] Solids Handling and Processing Association (SHAPA). The webpage can be accessed at:
www.shapa.co.uk/dust-
collection-control.php
[19] Balazy A.. Toivola M.. Reponen T, Podgorski A. et al. Based performance evaluation of N95 f iltering-facepiece
respirators challenged with nanopartides. Ann. Occup. Hyg. 2006, 50 (3) pp. 259—269
[20] Rengasamy S„ King W.P.. Eimer B.C.. Shaffer R.E. Filtration performance of NIOSH-approved N95 and P100 fil
tering facepiece respirators against 4 to 30 nanometer-size nanoparticles. J. Occup. Environ. Hyg. 2008. 5 (9) pp.
556—564
[21]ICS 13.340. Protective Equipment
[22] Health and Safety Executive. OC 282/28: Fit testing of respiratory protective equipment. 2003
http://www.hse.gov
.
uk/foi/intemalops/ocs/200—299Z282_28.pdf
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