154. Burtscher H, Scherrer L, Siegmann H (2001) The
electrical diffusion battery for dynamic classification
of nanoparticles. In: Proceedings of ETH conference
on nanoparticle measurement. BUWAL, Bern
155. Jimenez JL, Jayne JT, Shi Q, Kolb CE, Worsnop DR,
Yourshaw I, Seinfeld JH, Flagan RC, Zhang X, Smith
KA (2003) Ambient aerosol sampling using the aerodyne aerosol mass spectrometer. J Geophys Res
Atmos 108(D7):8425. https://doi.org/10.1029/
2001JD001213
156. Canagaratna M, Jayne J, Jimenez J, Allan J,
Alfarra M, Zhang Q, Onasch T, Drewnick F, Coe H,
Middlebrook A (2007) Chemical and microphysical
characterization of ambient aerosols with the aerodyne aerosol mass spectrometer. Mass Spectrom Rev
26(2):185–222
157. Su Y, Sipin MF, Furutani H, Prather KA
(2004) Development and characterization of an aerosol time-of-flight mass spectrometer with increased
detection efficiency. Anal Chem 76(3):712–719
158. Goldstein JI, Newbury DE, Michael JR, Ritchie NW,
Scott JHJ, Joy DC (2017) Scanning electron microscopy and X-ray microanalysis. Springer, New York
159. Zhou W, Wang ZL (2007) Scanning microscopy for
nanotechnology: techniques and applications.
Springer science & business media, New York
160. Ferrante R, Boccuni F, Tombolini F, Iavicoli S (2019)
Measurement techniques of exposure to nanomaterials in workplaces. In: Nanotechnology in ecoefficient construction, 2nd edn. Woodhead Publishing, Sawston, Cambridge, UK, pp 785–813
161. Gonzalez-Pech NI, Stebounova LV, Ustunol IB, Park
JH, Renee Anthony T, Peters TM, Grassian VH
(2019) Size, composition, morphology, and health
implications of airborne incidental metal-containing
nanoparticles. J Occup Environ Hyg 16(6):1–13
162. Ervik TK, Benker N, Weinbruch S, Thomassen Y,
Ellingsen DG, Berlinger B (2019) Size distribution
and single particle characterization of airborne particulate matter collected in a silicon carbide plant.
Environ Sci Process Impacts 21(3):564–574
Airborne Nanoparticles: Control and Detection
133
electrical diffusion battery for dynamic classification
of nanoparticles. In: Proceedings of ETH conference
on nanoparticle measurement. BUWAL, Bern
155. Jimenez JL, Jayne JT, Shi Q, Kolb CE, Worsnop DR,
Yourshaw I, Seinfeld JH, Flagan RC, Zhang X, Smith
KA (2003) Ambient aerosol sampling using the aerodyne aerosol mass spectrometer. J Geophys Res
Atmos 108(D7):8425. https://doi.org/10.1029/
2001JD001213
156. Canagaratna M, Jayne J, Jimenez J, Allan J,
Alfarra M, Zhang Q, Onasch T, Drewnick F, Coe H,
Middlebrook A (2007) Chemical and microphysical
characterization of ambient aerosols with the aerodyne aerosol mass spectrometer. Mass Spectrom Rev
26(2):185–222
157. Su Y, Sipin MF, Furutani H, Prather KA
(2004) Development and characterization of an aerosol time-of-flight mass spectrometer with increased
detection efficiency. Anal Chem 76(3):712–719
158. Goldstein JI, Newbury DE, Michael JR, Ritchie NW,
Scott JHJ, Joy DC (2017) Scanning electron microscopy and X-ray microanalysis. Springer, New York
159. Zhou W, Wang ZL (2007) Scanning microscopy for
nanotechnology: techniques and applications.
Springer science & business media, New York
160. Ferrante R, Boccuni F, Tombolini F, Iavicoli S (2019)
Measurement techniques of exposure to nanomaterials in workplaces. In: Nanotechnology in ecoefficient construction, 2nd edn. Woodhead Publishing, Sawston, Cambridge, UK, pp 785–813
161. Gonzalez-Pech NI, Stebounova LV, Ustunol IB, Park
JH, Renee Anthony T, Peters TM, Grassian VH
(2019) Size, composition, morphology, and health
implications of airborne incidental metal-containing
nanoparticles. J Occup Environ Hyg 16(6):1–13
162. Ervik TK, Benker N, Weinbruch S, Thomassen Y,
Ellingsen DG, Berlinger B (2019) Size distribution
and single particle characterization of airborne particulate matter collected in a silicon carbide plant.
Environ Sci Process Impacts 21(3):564–574
Airborne Nanoparticles: Control and Detection
133
