Simple proxies for estimating the concentrations of monoterpenes and their oxidation products at a boreal forest site release_ugyl7wnsorhntffl2xph5ckbh4

by Jenni Kontkanen, Pauli Johannes Paasonen, Juho Aalto, Jaana Bäck, Pekka Rantala, Tuukka Petäjä, Markku Kulmala

References

NOTE: currently batch computed and may include additional references sources, or be missing recent changes, compared to entity reference list.
Fuzzy reference matching is a work in progress!
Read more about quality, completeness, and caveats in the fatcat guide.
Showing 1 - 30 of 38 references (in 59ms)
[b0]

via grobid
Aalto, P., Hämeri, K., Becker, E.,Weber, R., Salm, J.,Mäkelä, J. M., Hoell, C., O'Dowd, C. D., Karlsson, H., Hansson, H.-C., Väkevä, M., Koponen, I. K., Buzorius, G., and Kulmala, M.: Physical characterization of aerosol particles during nucleation events, Tellus, 53B, 344-358, 2001.
[b1]

via grobid
Onset of photosynthesis in spring speeds up monoterpene synthesis and leads to emission bursts
J. Aalto, A. Porcar-Castell, J. Atherton, P. Kolari, T. Pohja, P. Hari, E. Nikinmaa, T. PetÄJÄ (+ more)
2015   Plant, Cell and Environment
doi:10.1111/pce.12550  pmcid:PMC5324583  pmid:25850935 
web.archive.org [PDF]
[b2]

via grobid
Atkinson, R. and Arey, J.: Gas-phase tropospheric chemistry of bio- genic volatile organic compounds: a review, Atmos. Environ., 37, Supplement No. 2, S197-S219, 2003.
[b3]

via grobid
Evaluated kinetic and photochemical data for atmospheric chemistry: Volume I - gas phase reactions of O<sub>x</sub>, HO<sub>x</sub>, NO<sub>x</sub> and SO<sub>x</sub> species
R. Atkinson, D. L. Baulch, R. A. Cox, J. N. Crowley, R. F. Hampson, R. G. Hynes, M. E. Jenkin, M. J. Rossi (+ more)
2004   Atmospheric Chemistry and Physics
doi:10.5194/acp-4-1461-2004 
web.archive.org [PDF]
[b4]

via grobid
Atkinson, R., Baulch, D. L., Cox, R. A., Crowley, J. N., Hamp- son, R. F., Hynes, R. G., Jenkin, M. E., Rossi, M. J., Troe, J., and IUPAC Subcommittee: Evaluated kinetic and photochemi- cal data for atmospheric chemistry: Volume II -gas phase re- actions of organic species, Atmos. Chem. Phys., 6, 3625-4055, doi:10.5194/acp-6-3625-2006, 2006.
[b5]

via grobid
Evaluated kinetic and photochemical data for atmospheric chemistry: Volume II – gas phase reactions of organic species
R. Atkinson, D. L. Baulch, R. A. Cox, J. N. Crowley, R. F. Hampson, R. G. Hynes, M. E. Jenkin, M. J. Rossi (+ more)
2006   Atmospheric Chemistry and Physics
doi:10.5194/acp-6-3625-2006 
web.archive.org [PDF]
[b6]

via grobid
Bäck, J., Aalto, J., Henriksson, M., Hakola, H., He, Q., and Boy, M.: Chemodiversity of a Scots pine stand and implica- tions for terpene air concentrations, Biogeosciences, 9, 689-702, doi:10.5194/bg-9-689-2012, 2012.
[b7]

via grobid
Chemodiversity of a Scots pine stand and implications for terpene air concentrations
J. Bäck, J. Aalto, M. Henriksson, H. Hakola, Q. He, M. Boy
2012   Biogeosciences
doi:10.5194/bg-9-689-2012 
web.archive.org [PDF]
[b8]

via grobid
A large source of low-volatility secondary organic aerosol
Mikael Ehn, Joel A. Thornton, Einhard Kleist, Mikko Sipilä, Heikki Junninen, Iida Pullinen, Monika Springer, Florian Rubach (+ more)
2014   Nature
doi:10.1038/nature13032  pmid:24572423 
web.archive.org [PDF]
[b9]

via grobid
Guenther, A. B., Zimmerman, P. R., Harley, P. C., Monson, R. K., and Fall, R.: Isoprene and monoterpene emission rate variabil- ity: Model evaluations and sensitivity analyses, J. Geophys. Res. Atmos., 98, 12609-12617, 1993.
[b10]

via grobid
Guenther, A. B., Jiang, X., Heald, C. L., Sakulyanontvittaya, T., Duhl, T., Emmons, L. K., and Wang, X.: The Model of Emissions of Gases and Aerosols from Nature version 2.1 (MEGAN2.1): an extended and updated framework for modeling biogenic emis- sions, Geosci. Model Dev., 5, 1471-1492, doi:10.5194/gmd-5- 1471-2012, 2012.
[b11]

via grobid
The Model of Emissions of Gases and Aerosols from Nature version 2.1 (MEGAN2.1): an extended and updated framework for modeling biogenic emissions
A. B. Guenther, X. Jiang, C. L. Heald, T. Sakulyanontvittaya, T. Duhl, L. K. Emmons, X. Wang
2012   Geoscientific Model Development
doi:10.5194/gmd-5-1471-2012 
web.archive.org [PDF]
[b12]

via grobid
Seasonal variation of mono- and sesquiterpene emission rates of Scots pine
H. Hakola, V. Tarvainen, J. Bäck, H. Ranta, B. Bonn, J. Rinne, M. Kulmala
2006   Biogeosciences
doi:10.5194/bg-3-93-2006 
web.archive.org [PDF]
[b13]

via grobid
Hakola, H., Hellén, H., Hemmilä, M., Rinne, J., and Kulmala, M.: In situ measurements of volatile organic compounds in a boreal forest, Atmos. Chem. Phys., 12, 11665-11678, doi:10.5194/acp- 12-11665-2012, 2012.
[b14]

via grobid
In situ measurements of volatile organic compounds in a boreal forest
H. Hakola, H. Hellén, M. Hemmilä, J. Rinne, M. Kulmala
2012   Atmospheric Chemistry and Physics
doi:10.5194/acp-12-11665-2012 
web.archive.org [PDF]
[b15]

via grobid
Ilvesniemi, H., Levula, J., Ojansuu, R., Kolari, P., Kulmala, L., Pumpanen, J., Launiainen, S., Vesala, T., and Nikinmaa, E.: Long-term measurements of the carbon balance of a boreal Scots pine dominated forest ecosystem, Boreal Env. Res., 14, 731-753, 2009.
[b16]

via grobid
Production of extremely low volatile organic compounds from biogenic emissions: Measured yields and atmospheric implications
Tuija Jokinen, Torsten Berndt, Risto Makkonen, Veli-Matti Kerminen, Heikki Junninen, Pauli Paasonen, Frank Stratmann, Hartmut Herrmann (+ more)
2015   Proceedings of the National Academy of Sciences of the United States of America
doi:10.1073/pnas.1423977112  pmcid:PMC4466755  pmid:26015574 
web.archive.org [PDF]
[b17]

via grobid
Kulmala, M., Toivonen, A., Mäkelä, J. M., and Laaksonen, A.: Analysis of the growth of nucleation mode particles observed in Boreal forest, Tellus, 50B, 449-462, 1998.
[b18]

via grobid
Kulmala, M., Maso, M. D., Mäkelä, J. M., Pirjola, L., Väkevä, M., Aalto, P., Miikkulainen, P., Hämeri, K., and O'Dowd, C. D.: On the formation, growth and composition of nucleation mode par- ticles, Tellus B, 53, 79-490, 2001.
[b19]

via grobid
Direct Observations of Atmospheric Aerosol Nucleation
M. Kulmala, J. Kontkanen, H. Junninen, K. Lehtipalo, H. E. Manninen, T. Nieminen, T. Petaja, M. Sipila (+ more)
2013   Science
doi:10.1126/science.1227385  pmid:23430652 
[b20]

via grobid
Lappalainen, H. K., Sevanto, S., Bäck, J., Ruuskanen, T. M., Ko- lari, P., Taipale, R., Rinne, J., Kulmala, M., and Hari, P.: Day- time concentrations of biogenic volatile organic compounds in a boreal forest canopy and their relation to environmen- tal and biological factors, Atmos. Chem. Phys., 9, 5447-5459, doi:10.5194/acp-9-5447-2009, 2009.
[b21]

via grobid
Day-time concentrations of biogenic volatile organic compounds in a boreal forest canopy and their relation to environmental and biological factors
H. K. Lappalainen, S. Sevanto, J. Bäck, T. M. Ruuskanen, P. Kolari, R. Taipale, J. Rinne, M. Kulmala (+ more)
2009   Atmospheric Chemistry and Physics
doi:10.5194/acp-9-5447-2009 
web.archive.org [PDF]
[b22]

via fuzzy
monoterpene pollution episodes in a forest environment: indication of anthropogenic origin and association with aerosol particles
Li Liao, Miikka Dal Maso, Risto Taipale, Janne Rinne, Junninen, Äijälä, Pavel Alekseychik, Mira Hulkkonen (+ more)
2011    unpublished
web.archive.org [PDF]
[b23]

via grobid
Simulations of atmospheric OH, O<sub>3</sub> and NO<sub>3</sub> reactivities within and above the boreal forest
D. Mogensen, R. Gierens, J. N. Crowley, P. Keronen, S. Smolander, A. Sogachev, A. C. Nölscher, L. Zhou (+ more)
2015   Atmospheric Chemistry and Physics
doi:10.5194/acp-15-3909-2015 
web.archive.org [PDF]
[b24]

via grobid
Nieminen, T., Asmi, A., Dal Maso, M., Aalto, P. P., Keronen, P., Petäjä, T., Kulmala, M., and Kerminen, V.-M.: Trends in atmo- spheric new particle formation: 16 years of observations in bo- real forest environment, Boreal Environ. Res., 19 (Supplement B), 191-214, 2014.
[b25]

via grobid
O'Dowd, C. D., Aalto, P., Hameri, K., Kulmala, M., and Hoffmann, T.: Aerosol formation -Atmospheric particles from organic va- pors, Nature, 416, 497-498, 2002.
[b26]

via grobid
Osthoff, H. D., Pilling, M. J., Ravishankara, A. R., and Brown, S. S.: Temperature dependence of the NO 3 absorption cross-section above 298 K and determination of the equilibrium constant for NO 3 + NO 2 ↔ N 2 O 5 at atmospherically relevant conditions, Phys. Chem. Chem. Phys., 9, 5785-5793, 2007.
[b27]

via grobid
On the roles of sulphuric acid and low-volatility organic vapours in the initial steps of atmospheric new particle formation
P. Paasonen, T. Nieminen, E. Asmi, H. E. Manninen, T. Petäjä, C. Plass-Dülmer, H. Flentje, W. Birmili (+ more)
2010   Atmospheric Chemistry and Physics
doi:10.5194/acp-10-11223-2010 
web.archive.org [PDF]
[b28]

via grobid
Paasonen, P., Asmi, A., Petäjä, T., Kajos, M. K., Äijälä, M., Junni- nen, H., Holst, T., Abbatt, J. P. D., Arneth, A., Birmili, W., van der Gon, H. D., Hamed, A., Hoffer, A., Laakso, L., Laaksonen, A., Richard Leaitch, W., Plass-Dülmer, C., Pryor, S. C., Räisä- nen, P., Swietlicki, E., Wiedensohler, A., Worsnop, D. R., Ker- minen, V.-M., and Kulmala, M.: Warming-induced increase in aerosol number concentration likely to moderate climate change, Nat. Geosci., 6, 438-442, doi:10.1038/ngeo1800, 2013.
[b29]

via grobid
Warming-induced increase in aerosol number concentration likely to moderate climate change
Pauli Paasonen, Ari Asmi, Tuukka Petäjä, Maija K. Kajos, Mikko Äijälä, Heikki Junninen, Thomas Holst, Jonathan P. D. Abbatt (+ more)
2013   Nature Geoscience
doi:10.1038/ngeo1800 
web.archive.org [PDF]
Showing 1 - 30 of 38 references  next »