(en) Roy M. Harrison, James Allan, David Carruthers et Mathew R. Heal, « Non-exhaust vehicle emissions of particulate matter and VOC from road traffic: A review », Atmospheric Environment, vol. 262, , p. 118592 (ISSN1352-2310, DOI10.1016/j.atmosenv.2021.118592, lire en ligne, consulté le ).
Christian Bauer, Johannes Hofer, Hans-Jörg Althaus et Andrea Del Duce, « The environmental performance of current and future passenger vehicles: Life cycle assessment based on a novel scenario analysis framework », Applied Energy, vol. 157, , p. 871–883 (ISSN0306-2619, DOI10.1016/j.apenergy.2015.01.019, lire en ligne, consulté le ).
Roy M. Harrison, Alan M. Jones, Johanna Gietl et Jianxin Yin, « Estimation of the Contributions of Brake Dust, Tire Wear, and Resuspension to Nonexhaust Traffic Particles Derived from Atmospheric Measurements », Environmental Science & Technology, vol. 46, no 12, , p. 6523–6529 (ISSN0013-936X et 1520-5851, DOI10.1021/es300894r, lire en ligne, consulté le ).
Fulvio Amato, Flemming R. Cassee, Hugo A.C. Denier van der Gon et Robert Gehrig, « Urban air quality: The challenge of traffic non-exhaust emissions », Journal of Hazardous Materials, vol. 275, , p. 31–36 (ISSN0304-3894, DOI10.1016/j.jhazmat.2014.04.053, lire en ligne, consulté le ).
B.R. Denby, I. Sundvor, C. Johansson et L. Pirjola, « A coupled road dust and surface moisture model to predict non-exhaust road traffic induced particle emissions (NORTRIP). Part 1: Road dust loading and suspension modelling », Atmospheric Environment, vol. 77, , p. 283–300 (ISSN1352-2310, DOI10.1016/j.atmosenv.2013.04.069, lire en ligne, consulté le ).
Andrew Simons, « Road transport: new life cycle inventories for fossil-fuelled passenger cars and non-exhaust emissions in ecoinvent v3 », The International Journal of Life Cycle Assessment, vol. 21, no 9, , p. 1299–1313 (ISSN0948-3349 et 1614-7502, DOI10.1007/s11367-013-0642-9, lire en ligne, consulté le ).
(en) Ewa Adamiec, Elżbieta Jarosz-Krzemińska et Robert Wieszała, « Heavy metals from non-exhaust vehicle emissions in urban and motorway road dusts », Environmental Monitoring and Assessment, vol. 188, no 6, , p. 369 (ISSN1573-2959, PMID27226173, PMCIDPMC4880625, DOI10.1007/s10661-016-5377-1, lire en ligne, consulté le ).
W. Österle, M. Griepentrog, Th. Gross et I. Urban, « Chemical and microstructural changes induced by friction and wear of brakes », Wear, vol. 251, nos 1-12, , p. 1469–1476 (ISSN0043-1648, DOI10.1016/s0043-1648(01)00785-2, lire en ligne, consulté le ).
(en) Jana Kukutschová, Pavel Moravec, Vladimír Tomášek et Vlastimil Matějka, « On airborne nano/micro-sized wear particles released from low-metallic automotive brakes », Environmental Pollution, vol. 159, no 4, , p. 998–1006 (ISSN0269-7491, DOI10.1016/j.envpol.2010.11.036, lire en ligne, consulté le ).
S.N. Nagesh, C. Siddaraju, S.V. Prakash et M.R. Ramesh, « Characterization of Brake Pads by Variation in Composition of Friction Materials », Procedia Materials Science, vol. 5, , p. 295–302 (ISSN2211-8128, DOI10.1016/j.mspro.2014.07.270, lire en ligne, consulté le ).
Akihiro Iijima, Keiichi Sato, Kiyoko Yano et Masahiko Kato, « Emission Factor for Antimony in Brake Abrasion Dusts as One of the Major Atmospheric Antimony Sources », Environmental Science & Technology, vol. 42, no 8, , p. 2937–2942 (ISSN0013-936X et 1520-5851, DOI10.1021/es702137g, lire en ligne, consulté le ).
Akihiro Iijima, Keiichi Sato, Kiyoko Yano et Hiroshi Tago, « Particle size and composition distribution analysis of automotive brake abrasion dusts for the evaluation of antimony sources of airborne particulate matter », Atmospheric Environment, vol. 41, no 23, , p. 4908–4919 (ISSN1352-2310, DOI10.1016/j.atmosenv.2007.02.005, lire en ligne, consulté le ).
Jens Wahlström, Anders Söderberg, Lars Olander et Anders Jansson, « A pin-on-disc simulation of airborne wear particles from disc brakes », Wear, vol. 268, nos 5-6, , p. 763–769 (ISSN0043-1648, DOI10.1016/j.wear.2009.11.014, lire en ligne, consulté le ).
Payam Dadvand, Bart Ostro, Fulvio Amato et Francesc Figueras, « Particulate air pollution and preeclampsia: a source-based analysis », Occupational and Environmental Medicine, vol. 71, no 8, , p. 570–577 (ISSN1351-0711 et 1470-7926, DOI10.1136/oemed-2013-101693, lire en ligne, consulté le ).
Liza Selley, Linda Schuster, Helene Marbach et Theresa Forsthuber, « Brake dust exposure exacerbates inflammation and transiently compromises phagocytosis in macrophages », Metallomics, vol. 12, no 3, , p. 371–386 (ISSN1756-5901 et 1756-591X, DOI10.1039/c9mt00253g, lire en ligne, consulté le ).
(en) Ewa Adamiec, Elżbieta Jarosz-Krzemińska et Robert Wieszała, « Heavy metals from non-exhaust vehicle emissions in urban and motorway road dusts », Environmental Monitoring and Assessment, vol. 188, no 6, , p. 369 (ISSN1573-2959, PMID27226173, PMCIDPMC4880625, DOI10.1007/s10661-016-5377-1, lire en ligne, consulté le ).
(en) Roy M. Harrison, James Allan, David Carruthers et Mathew R. Heal, « Non-exhaust vehicle emissions of particulate matter and VOC from road traffic: A review », Atmospheric Environment, vol. 262, , p. 118592 (ISSN1352-2310, DOI10.1016/j.atmosenv.2021.118592, lire en ligne, consulté le ).
Christian Bauer, Johannes Hofer, Hans-Jörg Althaus et Andrea Del Duce, « The environmental performance of current and future passenger vehicles: Life cycle assessment based on a novel scenario analysis framework », Applied Energy, vol. 157, , p. 871–883 (ISSN0306-2619, DOI10.1016/j.apenergy.2015.01.019, lire en ligne, consulté le ).
Roy M. Harrison, Alan M. Jones, Johanna Gietl et Jianxin Yin, « Estimation of the Contributions of Brake Dust, Tire Wear, and Resuspension to Nonexhaust Traffic Particles Derived from Atmospheric Measurements », Environmental Science & Technology, vol. 46, no 12, , p. 6523–6529 (ISSN0013-936X et 1520-5851, DOI10.1021/es300894r, lire en ligne, consulté le ).
Fulvio Amato, Flemming R. Cassee, Hugo A.C. Denier van der Gon et Robert Gehrig, « Urban air quality: The challenge of traffic non-exhaust emissions », Journal of Hazardous Materials, vol. 275, , p. 31–36 (ISSN0304-3894, DOI10.1016/j.jhazmat.2014.04.053, lire en ligne, consulté le ).
B.R. Denby, I. Sundvor, C. Johansson et L. Pirjola, « A coupled road dust and surface moisture model to predict non-exhaust road traffic induced particle emissions (NORTRIP). Part 1: Road dust loading and suspension modelling », Atmospheric Environment, vol. 77, , p. 283–300 (ISSN1352-2310, DOI10.1016/j.atmosenv.2013.04.069, lire en ligne, consulté le ).
Andrew Simons, « Road transport: new life cycle inventories for fossil-fuelled passenger cars and non-exhaust emissions in ecoinvent v3 », The International Journal of Life Cycle Assessment, vol. 21, no 9, , p. 1299–1313 (ISSN0948-3349 et 1614-7502, DOI10.1007/s11367-013-0642-9, lire en ligne, consulté le ).
(en) Ewa Adamiec, Elżbieta Jarosz-Krzemińska et Robert Wieszała, « Heavy metals from non-exhaust vehicle emissions in urban and motorway road dusts », Environmental Monitoring and Assessment, vol. 188, no 6, , p. 369 (ISSN1573-2959, PMID27226173, PMCIDPMC4880625, DOI10.1007/s10661-016-5377-1, lire en ligne, consulté le ).
W. Österle, M. Griepentrog, Th. Gross et I. Urban, « Chemical and microstructural changes induced by friction and wear of brakes », Wear, vol. 251, nos 1-12, , p. 1469–1476 (ISSN0043-1648, DOI10.1016/s0043-1648(01)00785-2, lire en ligne, consulté le ).
(en) Jana Kukutschová, Pavel Moravec, Vladimír Tomášek et Vlastimil Matějka, « On airborne nano/micro-sized wear particles released from low-metallic automotive brakes », Environmental Pollution, vol. 159, no 4, , p. 998–1006 (ISSN0269-7491, DOI10.1016/j.envpol.2010.11.036, lire en ligne, consulté le ).
S.N. Nagesh, C. Siddaraju, S.V. Prakash et M.R. Ramesh, « Characterization of Brake Pads by Variation in Composition of Friction Materials », Procedia Materials Science, vol. 5, , p. 295–302 (ISSN2211-8128, DOI10.1016/j.mspro.2014.07.270, lire en ligne, consulté le ).
Akihiro Iijima, Keiichi Sato, Kiyoko Yano et Masahiko Kato, « Emission Factor for Antimony in Brake Abrasion Dusts as One of the Major Atmospheric Antimony Sources », Environmental Science & Technology, vol. 42, no 8, , p. 2937–2942 (ISSN0013-936X et 1520-5851, DOI10.1021/es702137g, lire en ligne, consulté le ).
Akihiro Iijima, Keiichi Sato, Kiyoko Yano et Hiroshi Tago, « Particle size and composition distribution analysis of automotive brake abrasion dusts for the evaluation of antimony sources of airborne particulate matter », Atmospheric Environment, vol. 41, no 23, , p. 4908–4919 (ISSN1352-2310, DOI10.1016/j.atmosenv.2007.02.005, lire en ligne, consulté le ).
Jens Wahlström, Anders Söderberg, Lars Olander et Anders Jansson, « A pin-on-disc simulation of airborne wear particles from disc brakes », Wear, vol. 268, nos 5-6, , p. 763–769 (ISSN0043-1648, DOI10.1016/j.wear.2009.11.014, lire en ligne, consulté le ).
Payam Dadvand, Bart Ostro, Fulvio Amato et Francesc Figueras, « Particulate air pollution and preeclampsia: a source-based analysis », Occupational and Environmental Medicine, vol. 71, no 8, , p. 570–577 (ISSN1351-0711 et 1470-7926, DOI10.1136/oemed-2013-101693, lire en ligne, consulté le ).
Liza Selley, Linda Schuster, Helene Marbach et Theresa Forsthuber, « Brake dust exposure exacerbates inflammation and transiently compromises phagocytosis in macrophages », Metallomics, vol. 12, no 3, , p. 371–386 (ISSN1756-5901 et 1756-591X, DOI10.1039/c9mt00253g, lire en ligne, consulté le ).
(en) Ewa Adamiec, Elżbieta Jarosz-Krzemińska et Robert Wieszała, « Heavy metals from non-exhaust vehicle emissions in urban and motorway road dusts », Environmental Monitoring and Assessment, vol. 188, no 6, , p. 369 (ISSN1573-2959, PMID27226173, PMCIDPMC4880625, DOI10.1007/s10661-016-5377-1, lire en ligne, consulté le ).
patents.google.com
(en) Klaue Hermann, Disk brake for use in motor cars, airplanes, and the like, (lire en ligne).
(en) Roy M. Harrison, James Allan, David Carruthers et Mathew R. Heal, « Non-exhaust vehicle emissions of particulate matter and VOC from road traffic: A review », Atmospheric Environment, vol. 262, , p. 118592 (ISSN1352-2310, DOI10.1016/j.atmosenv.2021.118592, lire en ligne, consulté le ).
(en) Jana Kukutschová, Pavel Moravec, Vladimír Tomášek et Vlastimil Matějka, « On airborne nano/micro-sized wear particles released from low-metallic automotive brakes », Environmental Pollution, vol. 159, no 4, , p. 998–1006 (ISSN0269-7491, DOI10.1016/j.envpol.2010.11.036, lire en ligne, consulté le ).