New particle formation and growth in an isoprene-dominated ozark forest: from sub-5 nm to CCN-active sizes

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New particle formation and growth in an isoprene-dominated ozark forest : from sub-5 nm to CCN-active sizes. / Yu, Huan; Ortega, John; Smith, James N.; Guenther, Alex B.; Kanawade, V. P.; You, Yi; Liu, Yiying; Hosman, Kevin; Karl, Thomas; Seco, Roger; Geron, Chris; Pallardy, Stephen G.; Gu, Lianhong; Mikkilä, Jyri; Lee, Shan Hu.

I: Aerosol Science and Technology, Bind 48, Nr. 12, 2014, s. 1285-1298.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Yu, H, Ortega, J, Smith, JN, Guenther, AB, Kanawade, VP, You, Y, Liu, Y, Hosman, K, Karl, T, Seco, R, Geron, C, Pallardy, SG, Gu, L, Mikkilä, J & Lee, SH 2014, 'New particle formation and growth in an isoprene-dominated ozark forest: from sub-5 nm to CCN-active sizes', Aerosol Science and Technology, bind 48, nr. 12, s. 1285-1298. https://doi.org/10.1080/02786826.2014.984801

APA

Yu, H., Ortega, J., Smith, J. N., Guenther, A. B., Kanawade, V. P., You, Y., Liu, Y., Hosman, K., Karl, T., Seco, R., Geron, C., Pallardy, S. G., Gu, L., Mikkilä, J., & Lee, S. H. (2014). New particle formation and growth in an isoprene-dominated ozark forest: from sub-5 nm to CCN-active sizes. Aerosol Science and Technology, 48(12), 1285-1298. https://doi.org/10.1080/02786826.2014.984801

Vancouver

Yu H, Ortega J, Smith JN, Guenther AB, Kanawade VP, You Y o.a. New particle formation and growth in an isoprene-dominated ozark forest: from sub-5 nm to CCN-active sizes. Aerosol Science and Technology. 2014;48(12):1285-1298. https://doi.org/10.1080/02786826.2014.984801

Author

Yu, Huan ; Ortega, John ; Smith, James N. ; Guenther, Alex B. ; Kanawade, V. P. ; You, Yi ; Liu, Yiying ; Hosman, Kevin ; Karl, Thomas ; Seco, Roger ; Geron, Chris ; Pallardy, Stephen G. ; Gu, Lianhong ; Mikkilä, Jyri ; Lee, Shan Hu. / New particle formation and growth in an isoprene-dominated ozark forest : from sub-5 nm to CCN-active sizes. I: Aerosol Science and Technology. 2014 ; Bind 48, Nr. 12. s. 1285-1298.

Bibtex

@article{e60cbb385ee3451b9afe2244addf67d0,
title = "New particle formation and growth in an isoprene-dominated ozark forest: from sub-5 nm to CCN-active sizes",
abstract = "Particle Investigations at a Northern Ozarks Tower: NOx, Oxidant, Isoprene Research (PINOT NOIR) were conducted in a Missouri forest dominated by isoprene emissions from May to October 2012. This study presents results of new particle formation (NPF) and the growth of new particles to cloud condensation nuclei (CCN)-active sizes (∼100 nm) observed during this field campaign. The measured sub-5 nm particles were up to ∼20,000 cm-3 during a typical NPF event. Nucleation rates J1 were relatively high (11.0 ± 10.6 cm-3 s-1), and one order of magnitude higher than formation rates of 5 nm particles (J5). Sub-5 nm particle formation events were observed during 64% of measurement days, with a high preference in biogenic volatile organic compounds (BVOCs)- and SO2-poor northwesterly (90%) air masses than in BVOCs-rich southerly air masses (13%). About 80% of sub-5 nm particle events led to the further growth. While high temperatures and high aerosol loadings in the southerly air masses were not favorable for nucleation, high BVOCs in the southerly air masses facilitated the growth of new particles to CCN-active sizes. In overall, 0.4-9.4% of the sub-5 nm particles grew to CCN-active sizes within each single NPF event. During a regional NPF event period that took place consecutively over several days, concentrations of CCN size particles increased by a factor of 4.7 in average. This enhanced production of CCN particles from new particles was commonly observed during all 13 regional NPF events during the campaign period.",
author = "Huan Yu and John Ortega and Smith, {James N.} and Guenther, {Alex B.} and Kanawade, {V. P.} and Yi You and Yiying Liu and Kevin Hosman and Thomas Karl and Roger Seco and Chris Geron and Pallardy, {Stephen G.} and Lianhong Gu and Jyri Mikkil{\"a} and Lee, {Shan Hu}",
year = "2014",
doi = "10.1080/02786826.2014.984801",
language = "English",
volume = "48",
pages = "1285--1298",
journal = "Aerosol Science and Technology",
issn = "0278-6826",
publisher = "Taylor & Francis",
number = "12",

}

RIS

TY - JOUR

T1 - New particle formation and growth in an isoprene-dominated ozark forest

T2 - from sub-5 nm to CCN-active sizes

AU - Yu, Huan

AU - Ortega, John

AU - Smith, James N.

AU - Guenther, Alex B.

AU - Kanawade, V. P.

AU - You, Yi

AU - Liu, Yiying

AU - Hosman, Kevin

AU - Karl, Thomas

AU - Seco, Roger

AU - Geron, Chris

AU - Pallardy, Stephen G.

AU - Gu, Lianhong

AU - Mikkilä, Jyri

AU - Lee, Shan Hu

PY - 2014

Y1 - 2014

N2 - Particle Investigations at a Northern Ozarks Tower: NOx, Oxidant, Isoprene Research (PINOT NOIR) were conducted in a Missouri forest dominated by isoprene emissions from May to October 2012. This study presents results of new particle formation (NPF) and the growth of new particles to cloud condensation nuclei (CCN)-active sizes (∼100 nm) observed during this field campaign. The measured sub-5 nm particles were up to ∼20,000 cm-3 during a typical NPF event. Nucleation rates J1 were relatively high (11.0 ± 10.6 cm-3 s-1), and one order of magnitude higher than formation rates of 5 nm particles (J5). Sub-5 nm particle formation events were observed during 64% of measurement days, with a high preference in biogenic volatile organic compounds (BVOCs)- and SO2-poor northwesterly (90%) air masses than in BVOCs-rich southerly air masses (13%). About 80% of sub-5 nm particle events led to the further growth. While high temperatures and high aerosol loadings in the southerly air masses were not favorable for nucleation, high BVOCs in the southerly air masses facilitated the growth of new particles to CCN-active sizes. In overall, 0.4-9.4% of the sub-5 nm particles grew to CCN-active sizes within each single NPF event. During a regional NPF event period that took place consecutively over several days, concentrations of CCN size particles increased by a factor of 4.7 in average. This enhanced production of CCN particles from new particles was commonly observed during all 13 regional NPF events during the campaign period.

AB - Particle Investigations at a Northern Ozarks Tower: NOx, Oxidant, Isoprene Research (PINOT NOIR) were conducted in a Missouri forest dominated by isoprene emissions from May to October 2012. This study presents results of new particle formation (NPF) and the growth of new particles to cloud condensation nuclei (CCN)-active sizes (∼100 nm) observed during this field campaign. The measured sub-5 nm particles were up to ∼20,000 cm-3 during a typical NPF event. Nucleation rates J1 were relatively high (11.0 ± 10.6 cm-3 s-1), and one order of magnitude higher than formation rates of 5 nm particles (J5). Sub-5 nm particle formation events were observed during 64% of measurement days, with a high preference in biogenic volatile organic compounds (BVOCs)- and SO2-poor northwesterly (90%) air masses than in BVOCs-rich southerly air masses (13%). About 80% of sub-5 nm particle events led to the further growth. While high temperatures and high aerosol loadings in the southerly air masses were not favorable for nucleation, high BVOCs in the southerly air masses facilitated the growth of new particles to CCN-active sizes. In overall, 0.4-9.4% of the sub-5 nm particles grew to CCN-active sizes within each single NPF event. During a regional NPF event period that took place consecutively over several days, concentrations of CCN size particles increased by a factor of 4.7 in average. This enhanced production of CCN particles from new particles was commonly observed during all 13 regional NPF events during the campaign period.

U2 - 10.1080/02786826.2014.984801

DO - 10.1080/02786826.2014.984801

M3 - Journal article

AN - SCOPUS:84918558979

VL - 48

SP - 1285

EP - 1298

JO - Aerosol Science and Technology

JF - Aerosol Science and Technology

SN - 0278-6826

IS - 12

ER -

ID: 234280262