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Original Articles

Exposure Limit Values for Nanomaterials—Capacity and Willingness of Users to Apply a Precautionary Approach

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Pages 46-53 | Published online: 05 Dec 2012

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Read on this site (4)

Raluca Mihalache, Jos Verbeek, Halshka Graczyk, Vladimir Murashov & Pieter van Broekhuizen. (2017) Occupational exposure limits for manufactured nanomaterials, a systematic review. Nanotoxicology 11:1, pages 7-19.
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Mirlande Présumé, Angélique Simon-Deckers, Céline Tomkiewicz-Raulet, Béatrice Le Grand, Jeanne Tran Van Nhieu, Gregory Beaune, Olivier Duruphty, Jean Doucet, Xavier Coumoul, Jean-Claude Pairon, Jorge Boczkowski, Sophie Lanone & Pascal Andujar. (2016) Exposure to metal oxide nanoparticles administered at occupationally relevant doses induces pulmonary effects in mice. Nanotoxicology 10:10, pages 1535-1544.
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Amanda Juric, Richard Meldrum & Eric N. Liberda. (2015) Achieving Control of Occupational Exposures to Engineered Nanomaterials. Journal of Occupational and Environmental Hygiene 12:8, pages 501-508.
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William A. Heitbrink, Li-Ming Lo & Kevin H. Dunn. (2015) Exposure Controls for Nanomaterials at Three Manufacturing Sites. Journal of Occupational and Environmental Hygiene 12:1, pages 16-28.
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Articles from other publishers (21)

Mary Gulumian, Melusi Thwala, Xolani Makhoba & Victor Wepener. (2023) Current situation and future prognosis of health, safety and environment risk assessment of nanomaterials in South Africa. South African Journal of Science 119:1/2.
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Beatrice Bocca, Veruscka Leso, Beatrice Battistini, Stefano Caimi, Marta Senofonte, Mauro Fedele, Domenico Maria Cavallo, Andrea Cattaneo, Piero Lovreglio & Ivo Iavicoli. (2023) Human biomonitoring and personal air monitoring. An integrated approach to assess exposure of stainless-steel welders to metal-oxide nanoparticles. Environmental Research 216, pages 114736.
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Szymon Jakubiak & Przemysław Oberbek. (2021) Determination of the Concentration of Ultrafine Aerosol Using an Ionization Sensor. Nanomaterials 11:6, pages 1625.
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Halshka Graczyk, Luca Fontana, Maged Younes & Ivo Iavicoli. 2021. Health and Environmental Safety of Nanomaterials. Health and Environmental Safety of Nanomaterials 83 95 .
Md. Ershadul Karim. 2020. Handbook of Functionalized Nanomaterials for Industrial Applications. Handbook of Functionalized Nanomaterials for Industrial Applications 995 1006 .
Rikke Bramming Jørgensen. (2019) Comparison of four nanoparticle monitoring instruments relevant for occupational hygiene applications. Journal of Occupational Medicine and Toxicology 14:1.
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Stefan Kuhlmann, Peter Stegmaier & Kornelia Konrad. (2019) The tentative governance of emerging science and technology—A conceptual introduction. Research Policy 48:5, pages 1091-1097.
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Mona Connolly, Yu Zhang, Sohaib Mahri, David M. Brown, Natalia Ortuño, Maria Jordá-Beneyto, Krystyna Maciaszek, Vicki Stone, Teresa F. Fernandes & Helinor J. Johnston. (2019) The influence of organic modification on the cytotoxicity of clay particles to keratinocytes, hepatocytes and macrophages; an investigation towards the safe use of polymer-clay nanocomposite packaging. Food and Chemical Toxicology 126, pages 178-191.
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Jonathon A. Brame, Erik M. Alberts, Mary K. Schubauer-Berigan, Kevin H. Dunn, Kelsey R. Babik, Eftihia Barnes, Robert Moser, Aimee R. Poda & Alan J. Kennedy. (2018) Characterization and workplace exposure assessment of nanomaterial released from a carbon nanotube-enabled anti-corrosive coating. NanoImpact 12, pages 58-68.
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Bo-Xi Liao, Neng-Chun Tseng, Ziyi Li, Yingshu Liu, Jen-Kun Chen & Chuen-Jinn Tsai. (2018) Exposure assessment of process by-product nanoparticles released during the preventive maintenance of semiconductor fabrication facilities. Journal of Nanoparticle Research 20:7.
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M. Ellenbecker, S-J. Tsai, M. Jacobs, M. Riediker, T. Peters, S. Liou, A. Avila & S. FossHansen. (2018) The difficulties in establishing an occupational exposure limit for carbon nanotubes. Journal of Nanoparticle Research 20:5.
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Diana M Bowman. (2017) More than a Decade On: Mapping Today’s Regulatory and Policy Landscapes Following the Publication of Nanoscience and Nanotechnologies: Opportunities and Uncertainties. NanoEthics 11:2, pages 169-186.
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. 2016. Embedding New Technologies into Society. Embedding New Technologies into Society 35 60 .
Marisa L. Kreider, William D. Cyrs, Melissa A. Tosiano & Julie M. Panko. (2015) Evaluation of Quantitative Exposure Assessment Method for Nanomaterials in Mixed Dust Environments: Application in Tire Manufacturing Facilities. Annals of Occupational Hygiene 59:9, pages 1122-1134.
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William A. Heitbrink & Li-Ming Lo. (2015) Effect of carbon nanotubes upon emissions from cutting and sanding carbon fiber-epoxy composites. Journal of Nanoparticle Research 17:8.
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Michael J. Ellenbecker & Candace Su‐Jung Tsai. 2015. Exposure Assessment and Safety Considerations for Working with Engineered Nanoparticles. Exposure Assessment and Safety Considerations for Working with Engineered Nanoparticles 249 268 .
Cheng-Teng Ng, Lin-Yue Lanry Yung, Hannah Lee-Foon Swa, Rebecca Wan-Yan Poh, Jayantha Gunaratne & Boon-Huat Bay. (2015) Altered protein expression profile associated with phenotypic changes in lung fibroblasts co-cultured with gold nanoparticle-treated small airway epithelial cells. Biomaterials 39, pages 31-38.
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Carlos Fito-López, Maida Domat-Rodriguez, M. Van Tongeren & Sally Spankie. 2016. Indoor and Outdoor Nanoparticles. Indoor and Outdoor Nanoparticles 93 126 .
Antti Koivisto, Jaana Palomäki, Anna-Kaisa Viitanen, Kirsi Siivola, Ismo Koponen, Mingzhou Yu, Tomi Kanerva, Hannu Norppa, Harri Alenius, Tareq Hussein, Kai Savolainen & Kaarle Hämeri. (2014) Range-Finding Risk Assessment of Inhalation Exposure to Nanodiamonds in a Laboratory Environment. International Journal of Environmental Research and Public Health 11:5, pages 5382-5402.
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. (2013) An Occupational Exposure Assessment for Engineered Nanoparticles Used in Semiconductor Fabrication. The Annals of Occupational Hygiene.
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Kátia Duarte, Celine I.L. Justino, Ana Cristina Freitas, Armando C. Duarte & Teresa A.P. Rocha-Santos. (2014) Direct-reading methods for analysis of volatile organic compounds and nanoparticles in workplace air. TrAC Trends in Analytical Chemistry 53, pages 21-32.
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