GSTDTAP  > 地球科学
DOI10.5194/acp-18-5235-2018
Determination of the refractive index of insoluble organic extracts from atmospheric aerosol over the visible wavelength range using optical tweezers
Shepherd, Rosalie H.1,2; King, Martin D.2; Marks, Amelia A.3; Brough, Neil3; Ward, Andrew D.1
2018-04-18
发表期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2018
卷号18期号:8页码:5235-5252
文章类型Article
语种英语
国家England
英文摘要

Optical trapping combined with Mie spectroscopy is a new technique used to record the refractive index of insoluble organic material extracted from atmospheric aerosol samples over a wide wavelength range. The refractive index of the insoluble organic extracts was shown to follow a Cauchy equation between 460 and 700 nm for organic aerosol extracts collected from urban (London) and remote (Antarctica) locations. Cauchy coefficients for the remote sample were for the Austral summer and gave the Cauchy coefficients of A = 1.467 and B = 1000 nm(2) with a real refractive index of 1.489 at a wavelength of 589 nm. Cauchy coefficients for the urban samples varied with season, with extracts collected during summer having Cauchy coefficients of A D 1.465 +/- 0.005 and B = 4625 +/- 1200 nm(2) with a representative real refractive index of 1.478 at a wavelength of 589 nm, whilst samples extracted during autumn had larger Cauchy coefficients of A = 1.505 and B = 600 nm(2) with a representative real refractive index of 1.522 at a wavelength of 589 nm. The refractive index of absorbing aerosol was also recorded. The absorption Angstrom exponent was determined for woodsmoke and humic acid aerosol extract. Typical values of the Cauchy coefficient for the woodsmoke aerosol extract were A = 1.541 +/- 0.03 and B = 14800 +/- 2900 nm(2), resulting in a real refractive index of 1.584 +/- 0.007 at a wavelength of 589 nm and an absorption Angstrom exponent of 8.0. The measured values of refractive index compare well with previous monochromatic or very small wavelength range measurements of refractive index. In general, the real component of the refractive index increases from remote to urban to woodsmoke. A one-dimensional radiative-transfer calculation of the top-of-the-atmosphere albedo was applied to model an atmosphere containing a 3 km thick layer of aerosol comprising pure water, pure insoluble organic aerosol, or an aerosol consisting of an aqueous core with an insoluble organic shell. The calculation demonstrated that the top-of-the-atmosphere albedo increases by 0.01 to 0.04 for pure organic particles relative to water particles of the same size and that the top-of-the-atmosphere albedo increases by 0.03 for aqueous core-shell particles as volume fraction of the shell material increases to 25 %.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000430450200002
WOS关键词ABSORPTION ANGSTROM EXPONENT ; AIR-WATER-INTERFACE ; HUMIC-LIKE SUBSTANCES ; BIOMASS BURNING EMISSIONS ; PHOTOACOUSTIC SPECTROMETER ; LIGHT-SCATTERING ; BROWN CARBON ; CHEMICAL-COMPOSITION ; HYGROSCOPIC GROWTH ; RAMAN-SCATTERING
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/17261
专题地球科学
作者单位1.STFC Rutherford Appleton Lab, Cent Laser Facil, Res Complex, Oxford OX11 0FA, England;
2.Royal Holloway Univ London, Dept Earth Sci, Egham TW20 0EX, Surrey, England;
3.British Antarctic Survey, Madingley Rd, Cambridge CB3 0ET, England
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Shepherd, Rosalie H.,King, Martin D.,Marks, Amelia A.,et al. Determination of the refractive index of insoluble organic extracts from atmospheric aerosol over the visible wavelength range using optical tweezers[J]. ATMOSPHERIC CHEMISTRY AND PHYSICS,2018,18(8):5235-5252.
APA Shepherd, Rosalie H.,King, Martin D.,Marks, Amelia A.,Brough, Neil,&Ward, Andrew D..(2018).Determination of the refractive index of insoluble organic extracts from atmospheric aerosol over the visible wavelength range using optical tweezers.ATMOSPHERIC CHEMISTRY AND PHYSICS,18(8),5235-5252.
MLA Shepherd, Rosalie H.,et al."Determination of the refractive index of insoluble organic extracts from atmospheric aerosol over the visible wavelength range using optical tweezers".ATMOSPHERIC CHEMISTRY AND PHYSICS 18.8(2018):5235-5252.
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