Literature DB >> 26389581

Comparison of Hygroscopicity, Volatility, and Mixing State of Submicrometer Particles between Cruises over the Arctic Ocean and the Pacific Ocean.

Gibaek Kim1, Hee-Joo Cho1, Arom Seo1, Dohyung Kim1, Yeontae Gim2, Bang Yong Lee2, Young Jun Yoon2, Kihong Park1.   

Abstract

Ship-borne measurements of ambient aerosols were conducted during an 11 937 km cruise over the Arctic Ocean (cruise 1) and the Pacific Ocean (cruise 2). A frequent nucleation event was observed during cruise 1 under marine influence, and the abundant organic matter resulting from the strong biological activity in the ocean could contribute to the formation of new particles and their growth to a detectable size. Concentrations of particle mass and black carbon increased with increasing continental influence from polluted areas. During cruise 1, multiple peaks of hygroscopic growth factor (HGF) of 1.1-1.2, 1.4, and 1.6 were found, and higher amounts of volatile organic species existed in the particles compared to that during cruise 2, which is consistent with the greater availability of volatile organic species caused by the strong oceanic biological activity (cruise 1). Internal mixtures of volatile and nonhygroscopic organic species, nonvolatile and less-hygroscopic organic species, and nonvolatile and hygroscopic nss-sulfate with varying fractions can be assumed to constitute the submicrometer particles. On the basis of elemental composition and morphology, the submicrometer particles were classified into C-rich mixture, S-rich mixture, C/S-rich mixture, Na-rich mixture, C/P-rich mixture, and mineral-rich mixture. Consistently, the fraction of biological particles (i.e., P-containing particles) increased when the ship traveled along a strongly biologically active area.

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Year:  2015        PMID: 26389581     DOI: 10.1021/acs.est.5b01505

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  1 in total

1.  Substantial Seasonal Contribution of Observed Biogenic Sulfate Particles to Cloud Condensation Nuclei.

Authors:  Kevin J Sanchez; Chia-Li Chen; Lynn M Russell; Raghu Betha; Jun Liu; Derek J Price; Paola Massoli; Luke D Ziemba; Ewan C Crosbie; Richard H Moore; Markus Müller; Sven A Schiller; Armin Wisthaler; Alex K Y Lee; Patricia K Quinn; Timothy S Bates; Jack Porter; Thomas G Bell; Eric S Saltzman; Robert D Vaillancourt; Mike J Behrenfeld
Journal:  Sci Rep       Date:  2018-02-19       Impact factor: 4.379

  1 in total

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