Bibliografi Ministeriet for Videnskab, Teknologi og Udvikling. The Royal Society & The Royal Academy of Engineering.



Relaterede dokumenter
Standarder og køreplan for udvikling af metoder til karakterisering af nanomaterialer

Internationale strategier for vurdering og måling af eksponering for nanomaterialer på arbejdspladser

NANOKEM Afrunding, perspektiver og diskussion. Anne Thoustrup Saber, Ismo Koponen, Karin Sørig Hougaard og Frank Fotel

Sl. No. Title Volume

Sustainable use of pesticides on Danish golf courses

Hermed følger til delegationerne dokument - D048947/06.

Luftfiltre i boliger: Kan vi vha. filtrering af luften forbedre sundheden hos storbyernes befolkninger?

Nanosikkerhed. Professor Ulla Vogel Dansk Center for Nanosikkerhed Det Nationale Forskningscenter for Arbejdsmiljø

Nanosikkerhed. Professor Ulla Vogel Dansk Center for Nanosikkerhed Det Nationale Forskningscenter for Arbejdsmiljø

Udvalget for Videnskab og Teknologi. UVT alm. del - Svar på Spørgsmål 34 Offentligt. Udvalget for Videnskab og Teknologi

Byg din informationsarkitektur ud fra en velafprøvet forståelsesramme The Open Group Architecture Framework (TOGAF)

Lovkrav vs. udvikling af sundhedsapps

Stoffenmanager og Nanosafer

KOMMISSIONENS DELEGEREDE FORORDNING (EU) / af

Emerging risk identification systems. Gijs Kleter, Hans Marvin

PEMS RDE Workshop. AVL M.O.V.E Integrative Mobile Vehicle Evaluation

Kan virksomheder identificere nanomaterialer i deres produktion og vurdere, om medarbejderne udsættes for dem?

Online kursus: Certified Information Security Manager (CISM)

Integrated Coastal Zone Management and Europe

Studieordning del 3,

Central Statistical Agency.

Afprøvning af InVentilate Ventilationssystem

Nanosikkerhed. Professor Ulla Vogel Dansk Center for Nanosikkerhed Det Nationale Forskningscenter for Arbejdsmiljø

KALK- OG TEGLVÆRKSFORENINGEN. CPR Sustainable Construction

( ) .(Gorst 1999) .(Motwani et al. 1994) .(Saraph et al. 1989)

Maskinsikkerhed Risikovurdering Del 2: Praktisk vejledning og metodeeksempler

Basic statistics for experimental medical researchers

Mission and Vision. ISPE Nordic PAT COP Marts Jesper Wagner, AN GROUP A/S, Mejeribakken 8, 3540 Lynge, Denmark

Current studies Future perspective (Ph.D proposal)

SIKKERHED VED BRUG AF NANOPARTIKLER!

Miljø- og Planlægningsudvalget (2. samling) MPU alm. del - Bilag 63 Offentligt NANOTEKNOLOGI OG SUNDHED - DECEMBER 2007

Kvalitet af regnafstrømning. Karin Cederkvist, Marina Bergen Jensen, Peter E. Holm

Time- og eksamensplaner, efterår 2014

Information Meeting for DE5 and DE3 Further Study Possibilities

Forventer du at afslutte uddannelsen/har du afsluttet/ denne sommer?

What s Our Current Position? Uddannelsesstruktur i AUE. What Can You Choose After DE5? Uddannelsesstruktur i AUE

MILJØSTYRELSEN Strandgade København K Att.: Peter Schaarup. Arbejdstilsynets kommentarer til høring af LOUS-kortlægninger. Kære Peter Schaarup

Europa-Parlamentets og Rådets direktiv 2006/121/EF. af 18. december 2006

TOP SAFE projektet: fra idé til igangværende GUDP projekt. Anne Elsser-Gravesen ISI Food Protection ApS

Temperaturer på varme overflader, det er sandsynligt man kan komme til at berøre Vejledning til Tekniske Komitéer og fabrikanter

Tork Aftørringspapir Standard, M1. Fordel. Produktspecifikation. Beskrivelse. Farve: Hvid Type: Mini Centerfeed Rulle

Miljøledelsessystemer Kravbeskrivelse med råd om anvendelse

Forventer du at afslutte uddannelsen/har du afsluttet/ denne sommer?

ISO-standarder for sikkerhed på store og små anlæg. Dansk Træpillekonference 2015 Niels Peter K. Nielsen

Rådet for Den Europæiske Union Bruxelles, den 5. september 2017 (OR. en)

Nanomaterialer i miljøet den lille forskel. Anders Baun Professor i risikovurdering af nanomaterialer

Statistik for MPH: 7

The effects of occupant behaviour on energy consumption in buildings

Arbejds- og Organisationspsykologi Læseplan

For klimaets skyld? Gundelach, Peter; Hauge, Bettina

Miljø- og sundhedsrisici ved nanoteknologi. Professor Steffen Loft, Københavns Universitet

Indførelse og integrering af usabilityarbejde i en IT-virksomhed

Vesela Kardzhilova-Dimitrova. GGR 904 GIS for Research and Analysis Instructor: Dr. Marcos Luna Spring 2009

NANOKEM Risikovurdering af nanopartikler i farve-lak industrien

Patientinddragelse i forskning. Lars Henrik Jensen Overlæge, ph.d., lektor

Teknologispredning i sundhedsvæsenet DK ITEK: Sundhedsteknologi som grundlag for samarbejde og forretningsudvikling

Possibilities for Reuse of Calcium Carbonate Pellets from Drinking Water Softening

Forskningsbaseret undervisning i onlinekurser

STYRKELSE AF BØRNS TIDLIGE PROBLEMLØSNINGSKOMPETENCER I FREMTIDENS DAGTILBUD

Rettelser pr. 17. oktober 2017 er markeret med *

Boligministeriet, Bygge- og Boligstyrelsen, 1992, Vejledning om Kvalitetsnormer og friarealforbedring i byfornyelse. 1992, genoptryk 1995.

Carsten Broder Hansen - DTU Orbit (12/08/2016) Carsten Broder Hansen

The Arctic Dimension, Horizon 2020

Challenges for the Future Greater Helsinki - North-European Metropolis

Knowledge FOr Resilient

Miljøfremmede stoffer i regnvand monitering og modellering

Kationiske polymerer - en risiko for det akvatiske miljø? En introduktion til itap-projektet omkring risikovurdering af kationiske polymerer

IT og hygiejneadfærd i et ledelsesperspektiv Storkøkkener. Christian Coff cco@ucsj.dk UCSJ og VIFFOS Ankerhus, 30. Maj 2013

AARHUS UNIVERSITET 16 NOVEMBER 2011 PROPIG TINE ROUSING & JAN TIND SØRENSEN INSTITUT FOR HUSDYRVIDENSKAB, AU

Nanosikkerhed. Professor Ulla Vogel Dansk Center for Nanosikkerhed Det Nationale Forskningscenter for Arbejdsmiljø

Strategic Enrolment Management

Shared space - mellem vision og realitet. - Lyngby Idrætsby som case

5. Regulering og lovgivning

Vandramme Direktivet implementering i EU

Statistical information form the Danish EPC database - use for the building stock model in Denmark

EUROPEAN SUSTAINABLE CITIES REFERENCE FRAMEWORK. Member States / Institutions Group

ÆLDRE OG KRÆFT. Introduktion. Trine Lembrecht Jørgensen Læge, ph.d., post. doc. University of Southern Denmark. Odense University Hospital

Aalborg Universitet. Borgerinddragelse i Danmark Lyhne, Ivar; Nielsen, Helle; Aaen, Sara Bjørn. Publication date: 2015

C3844Series[LM]-SDS_DENMARK-Danish-02.pdf. C3844Series[Y]-SDS_DENMARK-Danish-02.pdf

Lægemiddelstyrelsens perspektiv på pædiatriske studier

Eksponering for partikler og hjertekarsygdomme

Bilag 1: Beskæftigelsesministerens svar på Beskæftigelsesudvalgsspørgsmål nr. 38, 54-57, 90-94, , 227 samt nr. S

ATU Seminar 2014: Innova4on

The Urban Turn i en dansk kontekst. Høgni Kalsø Hansen Institut for geografi & geologi, KU

CONNECTING PEOPLE AUTOMATION & IT

Ledelsessystemer for fødevaresikkerhed Vejledning i anvendelsen af ISO 22000:2005

Teknisk tegning Flowdiagrammer til procesanlæg Generelle regler

Data handling: observatories/databases/data storage/legal framework: EFSA data collection

Fra best practice til next practice: Projektledelse 2.0

Ekstraordinær Generalforsamling Vilvorde Kursuscenter 27. maj 2009

CONNECTING PEOPLE AUTOMATION & IT

Tilmelding sker via stads selvbetjening indenfor annonceret tilmeldingsperiode, som du kan se på Studieadministrationens hjemmeside

INDUSTRIAL relations

Interim report. 24 October 2008

Medinddragelse af patienter i forskningsprocessen. Hanne Konradsen Lektor, Karolinska Institutet Stockholm

Dansk standard DS/EN 15424

(Text with EEA relevance)

Industri Farmaceut Foreningen

Myndighedernes håndtering af miljø- og sundhedsrisici ved nanoteknologi. Per Nylykke, kontorchef i Miljøstyrelsen

Rådet for Den Europæiske Union Bruxelles, den 24. april 2017 (OR. en)

Transkript:

Bibliografi 1. Ministeriet for Videnskab, Teknologi og Udvikling. Teknologisk fremsyn om dansk nanovidenskab og nanoteknologi. København, Danmark : Videnskabsministeriet, 2004. ISBN: 87-91469-37-6, link: http://www.fi.dk/publikationer/2004/teknologisk-fremsyn-om-dansk-nanovidenskab-ognanoteknologi/nanovidenskab%20og%20nanoteknologi.pdf. 2. The Royal Society & The Royal Academy of Engineering. Nanoscience and nanotechnologies: Opportunities and uncertainties. London, U.K. : The Royal Society, 2004. ISBN 0-85403-604-0, Link: http://www.nanotec.org.uk/report/nano%20report%202004%20fin.pdf. 3. Nordan M.M., Holman M., Cline D. og Bradley J. Change Required for the National Nanotechnology Initiative as Commercialization Eclipses Discovery, Testimony before the Senate Committee on Commerce, Science, and Transportation, NPS-T-08-001. Lux Research. [Online] http://commerce.senate.gov/public/?a=files.serve&file_id=ed727755-4847-41de-b242-600d9c36ae09. 4. Nelson D.I., Concha-Barrientos M., Driscoll T., Steenland K., Fingerhut M., Punnett L., Pruss- Ustun A., Leigh J. og Corvalan C. The global burden of selected occupational diseases and injury risks: Methodology and summary. American Journal of Industrial Medicine. 2005, Årg. Vol. 48, Issue 6, s. 400-418. 5. Driscoll T., Nelson D.I., Steenland K., Leigh J., Concha-Barrientos M., Fingerhut M. og Pruss-Ustun A. The-global burden of non-malignant respiratory disease due to occupational airborne exposures. American Journal of Industrial Medicine. 2005, Årg. Vol. 48, Issue 6, s. 432-445. 6. Dockery D.W., Pope C.A., Xu X., Spengler J.D., Ware J.H., Fay M.E., Ferris B.G. og Speizer F.E. An association between air-pollution and mortality in 6 United-States cities. New England Journal of Medicine. Vol. 329, 1993, Issue 24, s. 1753-1759. 7. (NIOSH) National Institute for Occupational Safety and Health. Approaches to Safe Nanotechnology Managing the Health and Safety Concerns Associated with Engineered Nanomaterials. Cincinnati, Ohio : Centers for Disease Control and Prevention, U.S. Department of Health and Human Services, 2009. DHHS (NIOSH) Publication No. 2009-125, link http://www.cdc.gov/niosh/docs/2009-125/pdfs/2009-125.pdf. 8. (ASTM) American Society for Testing and Materials. Standard guide for handling unbound engineered nanoscale particles in occupational settings. West Conshohocken, Pennsylvania : ASTM International, 2007. Standard E2535 - DOI: 10.1520/E2535-07. 9. Aitken R.J., Creely K.S. og Than C.L. Nanoparticles: An occupational hygiene review. Riccarton, Edinburgh : Institute of Occupational Medicine, Health and Safety Executive Books, 2004. ISBN 0 7176 2908 2. 116

10. Oberdörster G., Oberdörster E. og Oberdörster J. Nanotoxicology: An Emerging Discipline Evolving from Studies of Ultrafine Particles. Environmental Health Perspectives. Vol. 113, 2005, Issue 7, s. 823-839. 11. Oberdörster, G. Safety assessment for nanotechnology and nanomedicine: concepts of nanotoxocology. Journal of Internal Medicine. Vol. 267, 2010, Issue 1, s. 89-105. 12. The Royal Society. New and emerging technologies: Are nanotechnologies safe? [Online] 2009. http://royalsociety.org/news.aspx?id=5460. 13. Hänninen O., Brüske-Hohlfeld I., Loh M., Stoeger T., Kreyling W., Schmid O. og Peters A. Estimation of health risks and safety margins due to inhalation of ultrafine particles and nanoparticles in selected occupational, consumer and environmental settings. Journal of Physics: Conference series. Vol. 170, 2009, Issue 1 (012031). 14. (BSI) British Standards Institution. Guide to safe handling and disposal of manufactured nanomaterials. London, England : BSI, 2007. BSI publication PD 6699-2, ISBN: 978 0 580 60832 2. 15.. Terminology for nanomaterials. London, England : BSI, 2007. BSI publication PAS 136, ISBN: 978 0 580 61321 0. 16. (ISO) International Organization for Standardization. Nanotechnologies Terminology and definitions for nano-objects Nanoparticle, nanofibre and nanoplate. Geneve, Switzerland : ISO/TC 229 Nanotechnologies, 2008. CEN ISO/TS 27687:2008(E). 17. (SCENIHR) Scientific Committee on Emerging and Newly Identified Health Risks. Scientific Basis for the Definition of the Term "Nanomaterial" [DRAFT]. Bruxelles, Belgien : European Commission, Health and consumers DG, 2010. 18. Gerritzen G., Huang L.-C., Killpack K., Mircheva M., Conti J., Holden P., Delmas M., Harthorn B.H. og Appelbaum R. Review of safety practices in the nanotechnology industry Phase one report: Current knowledge and practices regarding environmental health and safety in the nanotechnology workplace. Houston, Texas : International Council On Nanotechnology, Rice University, 2006. link: http://cohesion.rice.edu/centersandinst/icon/emplibrary/phase%20i%20report_ucsb_icon%20fi nal.pdf. 19. Hansen, et al. Nanoteknologisk Horisonter. Lyngby : Danmarks Tekniske Universitet, 2008. 20. Schneider T., Jansson A., Jensen K.A., Kristjansson V., Luotamo M., Nygren O., Savolainen K., Skaug V., Thomassen Y., Tossavainen A., Tuomi T. og Wallin H. Evaluation and control of occupational health risks from nanoparticles. København, Danmark : Nordisk Råd, 2007. TemaNord 2007:581, ISBN: 978-92-893-1563-0. 21. (VFA) Videnscenter For Arbejdsmiljø. Det ufine ved ultrafine partikler. s.l. : Det Nationale Forskningscenter for Arbejdsmijlø (NFA), 2003, blad nr. 4. link: http://www.arbejdsmiljoviden.dk/aktuelt/magasinet_arbejdsmiljo/magasinoversigt/2003/04/det%2 0ufine%20ved%20ultrafine%20partikler.aspx. 117

22. Johnson D.R., Methner M.M., Kennedy A.J., og Steevens J.A. Potential for Occupational Exposure to Engineered Carbon-based Nanomaterials in Environmental laboratory Studies. Environmental Health Perspectives. Vol. 118, 2010, Issue 1, s. 49-54. 23. Park J., Kwak B.K., Bae E., Lee J., Kim Y., Choi K. og Yi J. Characterization of exposure to silver nanoparticles in a manufacturing facility. Journal of Nanoparticle Research. 2009, Årg. Vol. 11, Issue 7, s. 1705-1712. 24. Schneider, T. og Jensen, K.A. Relevance of aerosol dynamics and dustiness for personal exposure to manufactured nanoparticles. Journal of Nanoparticle Research [Special Issue]. Vol. 11, 2009, Issue 7, s. 1637-1650. 25. Jensen K.A., Koponen I.K., Clausen P.A. og Schneider T. Dustiness behaviour of loose and compacted Bentonite and organoclay powders: What is the difference in exposure risk? Journal of Nanoparticle Research. 2009, Årg. Vol. 11, Issue 1, s. 133-146. 26. Schneider T., Brouwer D.H., Koponen I.K., Jensen K.A., van Fransman W., Duuren-Stuurman B., van Tongeren M. og Tielemans E. Conceptual model for assessment of inhalation exposure to manufactured nanoparticles. Journal of Exposure Science And Environmental Epidemiology. Forthcoming. 27. Tsai S.-J., Ada E., Isaacs J.A. og Ellenbecker M.J. Airborne nanoparticle exposures associated with the manual handling of nanoalumina and nanosilver in fume hoods. Journal of Nanoparticle Research. Vol. 11, 2009, Issue 1, s. 147-161. 28. Mazzuckelli L.F., Methner M.M., Birch M.E., Evans D.E., Ku B.-K., Crouch K. og Hoover M.D. Case study: Identification and characterization of potential sources of worker exposure to carbon nanofibers during polymer composite laboratory operations. Journal of Occupational and Environmental Hygiene. Vol. 4, 2007, Issue 12, s. 125-130. 29. (ISO) International Organization for Standardization. Preliminary guidance notes on sample preparation and dosimetry for the safety testing of manufactured nanomaterials. Geneve, Switzerland : ISO/TC 229 Nanotechnologies, 2010. 30. Folkmann J.K., Risom L., Jacobsen N.R., Wallin H., Loft S. og Moller P. Oxidatively Damaged DNA in Rats Exposed by Oral Gavage to C-60 Fullerenes and Single-Walled Carbon Nanotubes. Environmental Health Perspectives. 2009, Årg. Vol. 117, Issue 5, s. 703-708. 31. Ostiguy C., Roberge B., Ménard L. og Endo C.-A. Best practices guide to synthetic nanoparticle risk management. Montreal, Québec : (IRSST) Occupational Health and Safety Research Institute, 2009. Report R-599, ISBN: 978-2-89631-345-7, link: http://www.irsst.qc.ca/files/documents/pubirsst/r-599.pdf. 32. (FMER) Federal Ministry of Education and Research. Nanoparticles - small things, big effects: Opportunities and risks. Bonn, Germany : Nanomaterials, New Materials, German Federal Ministry of Education and Research, 2008. 118

33. Ostiguy C., Soucy B., Lapointe G., Woods C. og Ménard L. Health effects of nanoparticles second edition. Montreal, Québec : (IRSST) Occupational Health and Safety Research Institute, 2008. Report R-589, ISBN: 978-2-89631-320-4, link: http://www.irsst.qc.ca/files/documents/pubirsst/r- 589.pdf. 34. (EC) European Commission. ESIS: European chemical Substances Information System. Joint Research Centre: Institute for Health and Consumer Protection. [Online] [Citeret: 11. August 2010.] http://ecb.jrc.ec.europa.eu/esis/. 35. Takaki A., Hirose A., Nishimura T., Fukumori N., Ogata A., Ohashi N., Kitajima S. og Kanno J. Induction of mesothelioma in p53+/- mouse by intraperitoneal application of multi-wall carbon nanotube. Journal of Toxicological Sciences. Vol. 33, 2008, Issue 1, s. 105-116. 36. Sakamoto Y., Nakae D., Fukumori N., Tayama K., Maekawa A., Imai K., Hirose A., Nishimura T., Ohashi N. og Ogata A. Induction of mesothelioma by a single intrascrotal administration of multi-wall carbon nanotube in intact male Fischer 344 rats. Journal of Toxicological Sciences. Vol. 34, 2009, Issue 1, s. 65-76. 37. Maynard A.D., Baron P.A., Foley M., Shvedova A.A., Kisin E.R. og Castranova V. Exposure to carbon nanotube material: Aerosol release during the handling of unrefined single-walled carbon nanotube material. Journal of Toxicology and Environmental Health. 2004, Årg. Vol. 67, Issue 1, s. 87-107. 38. Han J.H., Lee E.J., Lee J.H., So K.P., Lee Y.H., Bae G.N., Lee S.B., Ji J.H., Cho M.H. og Yu I.J. Monitoring multiwalled carbon nanotube exposure in carbon nanotube research facility. Inhalation Toxicology. 2008, Årg. Vol. 20, Issue 8, s. 741-749. 39. Bayer MaterialScience. Occupational Exposure Limit (OEL) for Baytubes defined by Bayer MaterialScience. [Online] 2009. http://www.baytubes.com/news_and_services/news_091126_oel.html. 40. (MSF) Ministeriet for Sundhed og Forebyggelse. Nanoteknologi og sundhed. København, Danmark : s.n., 2007. link: http://www.sum.dk/aktuelt/publikationer/~/media/filer%20- %20Publikationer_i_pdf/2007/Nanoteknolog_Sundhed.ashx. 41. (EC) European Commission. Europa-parlamentets og rådets forordning (EF) Nr. 1907/2006 af 18. December 2006 om registrering, vurdering og godkendelse af samt begrænsninger for kemikalier (REACH). Bruxelles, Belgien : s.n., 2007. link: http://eurlex.europa.eu/lexuriserv/lexuriserv.do?uri=oj:l:2007:136:0003:0280:da:pdf. 42.. Nanomaterials in REACH, Follow-up to the 6th meeting of the REACH competent authorities for the implementation of regulation (EC) 1907/2006 (REACH), 15-16 December 2008. Bruxelles, Belgien : s.n., 2008. CA/59/2008 rev. 1, link: http://ec.europa.eu/environment/chemicals/reach/pdf/nanomaterials.pdf. 43.. Regulatory aspects of nanomaterials, Communication from the commission to the European parliament, the council and the European economic and social committee. Bruxelles, Belgien : s.n., 119

2008. COM(2008) 366 final, link: link: http://ec.europa.eu/nanotechnology/pdf/comm_2008_0366_en.pdf. 44. European Trade Union Confederation. Trade Union Priority List for REACH Authorisation, version 2.0. Belgium : s.n., 2010. ISBN: 978-84-613-0098-3, link: http://www.etuc.org/img/pdf/tulistreach.pdf. 45. (EC) European Commission. Classification, labelling and packaging of nanomaterials in REACH and CLP. Bruxelles, Belgien : s.n., 2009. CA/90/2009 rev.2, link: http://ec.europa.eu/environment/chemicals/reach/pdf/classif_nano.pdf. 46. Poulamaa, M. Reach and nanomaterials. European Commission. [Online] 2010. http://ihcp.jrc.ec.europa.eu/docs/nbs_enpra/reach_puolamaa.pdf. 47. (SCENIHR) Scientific Committee on Emerging and Newly Identified Health Risks. Risk assessment of products of nanotechnologies. Bruxelles, Belgien : European Commission, Health and consumers DG, 2009. link: http://ec.europa.eu/health/ph_risk/committees/04_scenihr/docs/scenihr_o_023.pdf. 48. Miljøministeriet. Bekendtgørelse af lov om kemiske stoffer og produkter (Kemikalieloven). [Online] [Citeret: 11. August 2010.] https://www.retsinformation.dk/forms/r0710.aspx?id=12997. LBK nr 1755 af 22/12/2006. 49.. Bekendtgørelse om klassificering, emballering, mærkning,salg og opbevaring af kemiske stoffer og produkter (Klassificeringsbekendtgørelsen). [Online] [Citeret: 11. August 2010.] https://www.retsinformation.dk/forms/r0710.aspx?id=12523. BEK nr 329 af 16/05/2002. 50. (EC) European Commission. Europa-Parlamentets og Rådets forordning (EF) Nr. 1272/2008 om klassificering, mærkning og emballering af stoffer og blandinger og om ændring og ophævelse af direktiv 67/548/EØF og 1999/45/EF og om ændring af forordning (EF) nr. 1907/2006. Bruxelles, Belgien : s.n., 2008. link: http://eurlex.europa.eu/lexuriserv/lexuriserv.do?uri=oj:l:2008:353:0001:1355:en:pdf. 51. Andersen, H.M. Kemikalier Ny mærkning og klassificering, CLP Hvad er det, og hvad betyder det for mig? København, Danmark : Industriens Branchemiljøarbejdsråd, 2010. EAN 9788792141033. 52. Miljøministeriet. Harmoniseret klassificering og mærkning af visse farlige stoffer. [Online] [Citeret: 11. August 2010.] http://www.mst.dk/nr/rdonlyres/2d5bd889-df65-44b3-861e- E06A4D3ED276/0/BilagVI.pdf. 53.. Listen over harmoniseret klassificering. [Online] [Citeret: 11. August 2010.] http://www.mst.dk/virksomhed_og_myndighed/kemikalier/stoflister+og+databaser/listen+over+far lige+stoffer/02010100.htm. 54. Beskæftigelsesministeriet. Bekendtgørelse af lov om arbejdsmiljø (Arbejdsmiljøloven). [Online] [Citeret: 11. August 2010.] https://www.retsinformation.dk/forms/r0710.aspx?id=30120. LBK nr 268 af 18/03/2005. 120

55. (VFA) Videnscenter For Arbejdsmiljø. Fakta om arbejdsmiljø 2009. 13. udgave. København, Danmark : Det Nationale Forskningscenter for Arbejdsmijlø (NFA), AOF s forlag, 2008. ISBN:87-7403- 671-8. 56. Beskæftigelsesministeriet. Bekendtgørelse om arbejdets udførelse. [Online] [Citeret: 11. August 2010.] https://www.retsinformation.dk/forms/r0710.aspx?id=30092. BEK nr 559 af 17/06/2004. 57. Økonomi- og Erhvervsministeriet. Lov om produktsikkerhed (produktsikkerhedsloven). [Online] [Citeret: 11. August 2010.] https://www.retsinformation.dk/forms/r0710.aspx?id=129114. LOV nr 1262 af 16/12/2009. 58. Miljøministeriet. Bekendtgørelse af lov om miljøbeskyttelse (Miljøbeskyttelsesloven). [Online] [Citeret: 11. August 2010.] https://www.retsinformation.dk/forms/r0710.aspx?id=132218. LBK nr 879 af 26/06/2010. 59. Beskæftigelsesministeriet. Bekendtgørelse om arbejde med stoffer og materialer. [Online] [Citeret: 11. August 2010.] https://www.retsinformation.dk/forms/r0710.aspx?id=3665. BEK nr 292 af 26/04/2001. 60.. Bekendtgørelse om ændring af bekendtgørelse om arbejde med stoffer og materialer (kemiske agenser). [Online] [Citeret: 11. August 2010.] https://www.retsinformation.dk/forms/r0710.aspx?id=114269. BEK nr 20 af 12/01/2009. 61. Bartis, J.T. og Landree, E. Nanomaterials in the workplace: Policy and planning workshop on occupational safety and health. Santa Monica, California : RAND Corporation, 2006. Conference proceedings CF227, ISBN 0-8330-3952-0, Link: http://www.rand.org/pubs/conf_proceedings/2006/rand_cf227.pdf. 62. Dansk Standard. Nanoteknologi (S-418). [Online] [Citeret: 11. August 2010.] http://www.ds.dk/da-dk/ydelser/standardisering/s-udvalg/s-418/sider/default.aspx. 63. (OECD) Organisation for Economic Co-operation and Development. Safety of Manufactured Nanomaterials. [Online] [Citeret: 11. August 2010.] http://www.oecd.org/department/0,3355,en_2649_37015404_1_1_1_1_1,00.html. 64. (CEN) Comité Européen de Normalisation. Nanotechnologies. [Online] [Citeret: 11. August 2010.] http://www.cen.eu/cen/sectors/sectors/nanotechnologies/pages/default.aspx. 65. (ISO) International Organization for Standardization. TC 229: Nanotechnologies. [Online] [Citeret: 11. August 2010.] http://www.iso.org/iso/iso_technical_committee?commid=381983. 66. (ECHA) European Chemicals Agency. European Chemicals Agency (ECHA). [Online] [Citeret: 11. August 2010.] http://echa.europa.eu/home_en.asp. 67. Arbejdstilsynet. AT-vejledning: Arbejde med stoffer og materialer. [Online] [Citeret: 11. August 2010.] http://www.at.dk/regler/at-vejledninger-mv/stoffer-og-materialer/at-vejledninger-om- 121

stoffer-og-materialer/c1-kemiskeagenser/~/link.aspx?_id=b14504f74d8049909f933b2fd5c2b764&_z=z. AT-vejledning C.1.3. 68. Safe Work Australia. Engineered Nanomaterials: Evidence on the Effectiveness of Workplace Controls to Prevent Exposure. Australia : s.n., 2009. ISBN: 978-0-642-32885-4, link: http://www.safeworkaustralia.gov.au/nr/rdonlyres/e3c113ac-4363-4533-a128-6d682fde99e0/0/effectivenessreport.pdf. 69. (BAuA) Bundesanstalt für Arbeitsschutz und Arbeitsmedizin. Guidance for handling and use of nanomaterials at the workplace. Dortmund, Germany : German Federal Institute for Occupational Safety and Health, 2007. link: http://www.baua.de/cae/servlet/contentblob/717966/publicationfile/48345/guidance.pdf;jsessioni d=1244ac38c6c396e72658ba8fb5670fe5. 70. Ellenbecker, M. og Tsai, S. Interim Best Practices for Working with Nanoparticles (revision 1). Boston, Massachusetts : Center for High-Rate Nanomanufacturing, 2008. link: http://www.nsec.neu.edu/press/documents/best_practices_for_working_with_nanoparticles.pdf. 71. Industriens Branchearbejdsmiljøråd. Stinkskabe - Vejledning om arbejde i stinkskabe. København : CO-industri, Dansk Industri og Lederne, 2010. 72. Bissel A., Bouillard J., Crossley A., Dien J-M., Dobson P., Klepping T., Vignes A., Wehrli V. og Wong K. What about explosivity and flammability of nanopowders? - Safety Parameter Characterisation Techniques for Nanoparticles. s.l. : NANOSAFE, 2008. DR-152-200802-2, link: http://www.nanosafe.org/home/liblocal/docs/dissemination%20report/dr2_s.pdf. 73. Arbejdstilsynet. AT-vejledning: Arbejde i forbindelse med eksplosiv atmosfære. [Online] [Citeret: 11. August 2010.] http://www.at.dk/regler/at-vejledninger-mv/stoffer-og-materialer/atvejledninger-om-stoffer-og-materialer/c0-generelt-og-diverse/c09-arbejde-i-eksplosivatmosfaere.aspx?sc_lang=da. AT-vejledning C.0.9. 74. Larsen S.T., Roursgaard M., Jensen K.A. og Nielsen G.D. Nano Titanium Dioxide Particles Promote Allergic Sensitization and Lung Inflammation in Mice. Basic & Clinical Pharmacology & Toxicology. Vol. 106, 2010, Issue 2, s. 114-117. 75. Shaffer, R.E. og Rengasamy, S. Respiratory protection against airborne nanoparticles: a review. Journal of Nanoparticle Research. Vol. 11, 2009, Issue 7, s. 1661-1672. 76. Arbejdstilsynet. AT-vejledning: Kræftrisikable stoffer og materialer. [Online] [Citeret: 11. August 2010.] http://www.at.dk/regler/at-vejledninger-mv/stoffer-og-materialer/at-vejledninger-omstoffer-og-materialer/c2-kraeftrisikable-stoffer-og-materialer/rloia-c21-kraeftrisikablestoffer.aspx?sc_lang=da. AT-vejledning C.2.1. 77.. AT-vejledning: Asbest. [Online] [Citeret: 11. August 2010.] http://www.at.dk/regler/atvejledninger-mv/stoffer-og-materialer/at-vejledninger-om-stoffer-og-materialer/c2-kraeftrisikablestoffer-og-materialer/c22-asbest.aspx?sc_lang=da. AT-vejledning C.2.2. 122

78. Beskæftigelsesministeriet. Bekendtgørelse om asbest. [Online] [Citeret: 11. August 2010.] https://www.retsinformation.dk/forms/r0710.aspx?id=30157. BEK nr 1502 af 21/12/2004. 79. Nygaard U.C., Hansen J.S., Samuelsen M., Alberg T., Marioara C.D. og Lovik M. Single-Walled and Multi-Walled Carbon Nanotubes Promote Allergic Immune Responses in Mice. Toxicological Sciences. Vol 109, 2009, Issue 1, s. 113-123. 80. K.A, Schneider T. and Jensen. Combined single drop and rotating drum dustiness test of fine to nanosized powders using a small drum. Annals of Occupational Hygiene. 52, 2008, Årg. 1, 23-34. 81. Demou E., Stark W.J. og Hellweg S. Particle Emission and Exposure during Nanoparticle Synthesis in Research Laboratories. Annals of Occupational Hygiene. Vol. 53, 2009, Issue 8, s. 829-838. 82. Sahu, M., Biswas, P. Size distributions of aerosols in an indoor environment with engineered nanoparticles synthesis reactors operating under different scenarios. Journal of Nanoparticle Research. 12, 2010, 1055-1064. 83. Manodori L., Benedetti, A. Journal of Physics: Conference Series. 170, 2009, Årg. 1, 4 p. doi: 10.1088/1742-6596/170/1/012001. 84. Yeganeh, B., Kull, C.M., Hull, M.S., Marr, L.C. Characterization of airborne particles during production of carbonaceous nanomaterials. Environmental Science and Technology. 2008. 85. Methner, M., Hodson, L., Dames, A., Geraci, C. Nanoparticle emission assessment technique (NEAT) for the identification and measurement of potential inhalation exposure to engineered nanomaterials Part B: Results from 12 field studies. Journal of Occupational and Environmental Hygiene. 7, 2010, 163-176. 86. Peters, T.M., Elzey, S., Johnson, R., Park, H., Grassian, V.H., Maher, T., O Shaughnessy, P. Airborne monitoring to distinguish engineered nanomaterials from incidental particles for environmental health and safety. Journal of Occupational and Environmental Hygiene. 6, 2009, 73-81. 87. Fujitani, Y., Kobayashi, T. Measurements of aerosols in engineered nanomaterials factories for risk assessment. Nano: Brief reports and Reviews. 3, 2008, Årg. 4, 245-249. 88. Bello, D., Wardie, B.L., Yamamoto, N., Guzman de Villoria, R., Garcia, E.J., Hart, A.J., Ahn, K., Ellenbecker, M.J., Hallock, M. Exposure to nanoscale particles and fibres during machining of hybrid advanced composites containing carbon nanotubes.. Journal of Nanoparticle Research. 11, 2009, 231-249. 89. Elihn, K., Berg, P. Ultrafine particles in the in seven industrial plants. Annals of Occupational Hygiene. 53, 2009, Årg. 5, 475-484. 90. Genaidy A, Sequeiraa R, Rinderb M, A-Rehimb A. Risk analysis and protection measures in a carbon nanofiber manufacturing enterprise: An exploratory investigation. Science of the Total Environment. 407, 2009, Årg. 22, 5825-5838. 123

91. Giacobbe F., Monica L., Geraci, D. Risk assessment model for occupational exposure to nanomaterials. Human and Experimental Toxicology. 28, 2009, 401-406. 92. Paik S.Y., Zalk D.M. og Swuste P. Application of a pilot control banding tool for risk level assessment and control of nanoparticle exposures. Annals of Occupational Hygiene. Vol. 52, 2008, Issue 6, s. 419-428. 93. Höck J., Hofmann H., Krug H., Lorenz C., Limbach L., Nowack B., Riediker M., Schirmer K., Som C., Stark W., Studer C., von Götz N., Wengert S. og Wick P. The precautionary matrix for synthetic nanomaterials. Bern, Switzerland : Federal office for public health and federal office for the environment, 2008. 94. DHHS (Department of Human Health and Safety, NIOSH).. Approaches to Safe Nanotechnology Managing the Health and Safety Concerns Associated with Engineered Nanomaterials. Publication No. 2009-125. s.l. : DHHS (NIOSH), 2009. 95. K.A., Jensen. Nye metoder til vurdering af eksponeringsfaren for tekniske nanopartikler. Miljø og Sundhed. 16, 2010, Årg. 1, 4-12. 96. Nicas, M. Two-Zone Model. In AIHA Exposure Assessment Strategies Committee and C.B. Keil (Eds.) Mathematical models for estimating occupational exposure to chemicals. 2000. 97. Lide, D.R. (Ed. In Chief). CRC Handbook of Chemistry and Physics. A ready-reference book of chemical and physical data. 82nd Edition. New York, Washington D.C. : CRC Press., 2001. 98. (HSE) Health and Safety Executive. Control of substances hazardous to health (Fifth edition). London, England : HSE Books, 2005. 99. Watari F., Takashi N., Yokoyama A., Uo M., Akasaka., T., Sato Y., Abe S., Totsuka Y., Tohji K. Material nanosizing effect on living organisms: non-specific, biointeractive, physical size effects.. Journal of the Royal Society Interface. 2009, Årg. 6, S371-S388. 100. Fransman, W., Cherrie, J., van Tongeren M., Schneider, T., Tischer, M., Schinkel, J., Marquart, H., Warren, N., Kromhout, H., Tielemans, E. Development of a mechanistic model for the Advanced REACH Tool (ART). Beta release September 2009. s.l. : TNO, 2009. 101. Cherrie, J.W. The effect of room size and general ventilation on the relationship between nearfield and far-field concentrations. Applied occupational and environmental hygiene.. 14, 1999, Årg. 8, 539-546. 102. Schneider, T., Jensen, K.A., Clausen, P.A., Afshari, A., Gunnarsen, L., Wåhlin, P., Palmgren, F., Nielsen, O.J., and Fogh, C.L. Prediction of indoor concentration of 0.5-4 µm particles of outdoor origin in an uninhabited apartment. Atmospheric Environment. 38, 2004, 6349-6359. 103. Stoeger T, Reinhard C, Takenaka S, Schroeppel A, Karg E, Ritter B, Heyder J, Schulz H. Instillation of six different ultrafine carbon particles indicates a surface area threshold dose for acute lung inflammation in mice. Environmental Health Perspectives. 114, 2006, Årg. 3, 328-333. 124

104. Johnston H.J., Hutchison G.R., Christensen F.M., Peters S., Hankin S., Stone V. Identification of the mechanisms that drive the toxicity of TiO2 particulates: the contribution of physicochemical characteristics. Particle and Fibre Toxicology. Vol. 6, 2009, Issue 33. 105. Oberdörster G., Elder A. og Rinderknecht A. Nanoparticles and the Brain: Cause for Concern? Journal of Nanoscience and Nanotechnology. Vol. 9, 2009, Issue 8, s. 4996-5007. 106. Borm P.J.A., Robbins D., Haubold S., Kuhlbusch T., Fissan H., Donaldson K., Schins R., Stone V., Kreyling W., Lademann J., Krutmann J., Warheit D. og Oberdörster E. The potential risks of nanomaterials: a review carried out for ECETOC. Particle and Fibre Toxicology. Vol. 3, 2006, Issue 11. 107. Ravenzwaay B.v., Landsiedel R., Fabian E., Burkhardt S., Strauss V. og Ma-Hock L. Comparing fate and effects of three particles of different surface properties: Nano-TiO2, pigmentary TiO2 and quartz. Toxicology Letters. Vol. 182, 2009, Issue 3, s. 152-159. 108. (NIOSH) National Institute for Occupational Safety and Health. NIOSH update: Draft Document on Titanium Dioxide Posted by NIOSH for Public Comment. [Online] 2005. http://www.cdc.gov/niosh/updates/upd-11-23-05.html. 109. Niwa Y., Hiura Y., Murayama T., Yokode M. og Iwai N. Nano-sized carbon black exposure exacerbates atherosclerosis in LDL-receptor knockout mice. Circulation Journal. Vol. 71, 2007, Issue 7, s. 1157-1161. 110. (HSE) Health and Safety Executive. Risk Management of Carbon nanotubes. [Online] 2009. http://www.hse.gov.uk/pubns/web38.pdf. 111. Baan, R.A. Carcinogenic hazards from inhaled carbon black, titanium dioxide, and talc not containing asbestos or asbestiform fibers: recent evaluations by an IARC Monographs Working Group. Inhalation Toxicology. Vol. 19, 2007, Årg. Suppl. 1, s. 213-228. 112. Madl, A.K. og Pinkerton, K.E. Health effects of inhaled engineered and incidental nanoparticles. Critical Reviews in Toxicology. Vol. 38, 2009, Issue 8, s. 629-658. 113. Haddon, W.Jr. The basic strategies for reducing damage from hazards of all kinds. Hazard Prevention. 16:8-12, 1980. 114. Genaidy A., Sequeira R., Rinder M. og A-Rehim A. Risk analysis and protection measures in a carbon nanofiber manufacturing enterprise: An exploratory investigation. Science of the Total Environment. Vol. 407, 2009, Issue 22, s. 5825-5838. 115. Liden, G. Dustiness testing of materials handled at workplaces. Annals of Occupational Hygiene. Vol. 50, 2006, Issue 5, s. 437-439. 116. Teknologisk Institut. Nanoteknologiske overflader og nye kvalifikationskrav. København : Teknologisk Institut og Industriens Uddannelser, 2010. 117. BSI (British Standards Institute). Nanotechnologies Part 2: Guide to safe handling and disposal of manufactured nanomaterials. Report No. PD 6699-2:2007. s.l. : British Standards Institute, 2007. 125

118. Tervonen, T., Linkov, I. Figueira J.R., Steevens J., Chappel, M., Merad, M. Risk-based Classification system of nanomaterials. Journal of Nanoparticle Research. 11, 2009, 757-766. 119. US DOD (US Department of Defence).. Standard Practise for System Safety-MIL-STD-882D.. s.l. : US Department of Defence, 10. February 2000. 120. www.safetycenter.navy.mil/instructions/osh/milstd882d.pdf. [Online] 12. 4 2010. 126