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Vibrational spectroscopic identification of isoprene, pinenes and their mixture 被引量:2

Vibrational spectroscopic identification of isoprene, pinenes and their mixture
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摘要 Here we show a study of vibrational spectroscopic identification of a few typical organic compounds which are known as the main sources of organic aerosols(OAs) particle matter in air pollution. Raman and IR spectra of isoprene, terpenoids, pinenes and their mixture are meticulously examined, showing distinguishable intrinsic vibrational spectroscopic fingerprints for these chemicals, respectively. As a reference, first-principles calculations of Raman and infrared activities are also conducted. It is interestingly found that, the experimental spectra are peak-to-peak consistent with the DFT(Density Functional Theory)-calculated vibrational activities. Also found is that, in a certain case such as for bpinene, a dimer model, rather than an isolated single molecular model, reproduces the experimental results, indicating unneglected intermolecular interactions. Starting with this study, we are endeavoring to advocate a database of Raman/IR fingerprint spectra for OA haze identification. Here we show a study of vibrational spectroscopic identification of a few typical organic compounds which are known as the main sources of organic aerosols(OAs) particle matter in air pollution. Raman and IR spectra of isoprene, terpenoids, pinenes and their mixture are meticulously examined, showing distinguishable intrinsic vibrational spectroscopic fingerprints for these chemicals, respectively. As a reference, first-principles calculations of Raman and infrared activities are also conducted. It is interestingly found that, the experimental spectra are peak-to-peak consistent with the DFT(Density Functional Theory)-calculated vibrational activities. Also found is that, in a certain case such as for bpinene, a dimer model, rather than an isolated single molecular model, reproduces the experimental results, indicating unneglected intermolecular interactions. Starting with this study, we are endeavoring to advocate a database of Raman/IR fingerprint spectra for OA haze identification.
出处 《Chinese Chemical Letters》 SCIE CAS CSCD 2016年第4期527-534,共8页 中国化学快报(英文版)
基金 supported by Young Professionals Program in Institute of Chemistry,Chinese Academy of Sciences (No. Y3297B1261) financial support from CAS project (Nos. Y31M0112C1 and Y5294512C1)
关键词 Organic aerosol RAMAN IR ISOPRENE TERPENOIDS Pinenes Organic aerosol Raman IR Isoprene Terpenoids Pinenes
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  • 1M. Hallquist, J.C. wenger, U. Baltensperger, et al., The formation, properties and impact of secondary organic aerosol: current and emerging issues, Atmos. Chem. Phys. 9 (2009) 5155-5236.
  • 2M.O. Andreae, A new look at aging aerosols, Science 326 (2009) 1493-1494.
  • 3D.W. Dockery, C.A. Pope, X.P. Xu, et al., An Association between air pollution and mortality in six U.S. Cities, N. Engl. J. Med. 329 (1993) 1753-1759.
  • 4J.C. Chow, J.G. Watson, J.L. Mauderly, et al., Health effects of fine particulate air pollution: lines that connect, J. Air Waste Manage. Assoc. 56 (2006) 1368-1380.
  • 5M. Kanakidou, J.H. Seinfeld, S.N. Pandis, et al., Organic aerosol and global climate modelling: a review, Atmos. Chem. Phys. 5 (2005) 1053-1123.
  • 6D. Chand, R. Wood, T.L. Anderson, S.K. Satheesh, R.J. Charlson, Satellite-derived direct radiative effect of aerosols dependent on cloud cover, Nat. Geosci. 2 (2009) 181-184.
  • 7J.C. Fyfe, K. yon Salzen, N.P. Gillett, et al., One hundred years of Arctic surface temperature variation due to anthropogenic influence, Sci. Rep. 3 (2013) 2645.
  • 8J.E. Penner, X.Q. Dong, Y. Chen, Observational evidence of a change in radiative forcing due to the indirect aerosol effect, Nature 427 (2004) 231-234.
  • 9D.V. Spracklen, B. Bonn, K.S. Carslaw, Boreal forests, aerosols and the impacts on clouds and climate, Philos. Trans. R. Soc. London, Ser. A 366 (2008) 4613-4626.
  • 10K.S. Carslaw, O. Boucher, D.V. Spracklen, et al., A review of natural aerosol interactions and feedbacks within the Earth system, Atmos. Chem. Phys. 10 (2010) 1701-1737.

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