Journal of Atmospheric and Environmental Optics, Volume. 19, Issue 6, 680(2024)
Retrievals and performance assessment of global marine aerosol optical properties from DPC/GRASP
[1] Albrecht B A. Aerosols, cloud microphysics, and fractional cloudiness[J]. Science, 245, 1227-1230(1989).
[2] Ma Y Y, Zhang M, Jin S K et al. Long-term investigation of aerosol optical and radiative characteristics in a typical megacity of central China during winter haze periods[J]. Journal of Geophysical Research: Atmospheres, 124, 12093-12106(2019).
[3] Rosenfeld D, Lohmann U, Raga G B et al. Flood or drought: How do aerosols affect precipitation?[J]. Science, 321, 1309-1313(2008).
[4] Eck T F, Holben B N, Sinyuk A et al. Climatological aspects of the optical properties of fine/coarse mode aerosol mixtures[J]. Journal of Geophysical Research: Atmospheres, 115, D19205(2010).
[5] Kaufman Y J, Tanré D, Gordon H R et al. Passive remote sensing of tropospheric aerosol and atmospheric correction for the aerosol effect[J]. Journal of Geophysical Research: Atmospheres, 102, 16815-16830(1997).
[6] Jin S K, Ma Y Y, Gong W et al. Cloud detection for FY-3D MERSIⅡ images combine radiative transfer simulation and shallow neural network[J]. National Remote Sensing Bulletin, 26, 2136-2146(2022).
[7] Yang L K, Hu X Q, Wang H et al. Preliminary test of quantitative capability in aerosol retrieval over land from MERSI-II onboard FY-3D[J]. National Remote Sensing Bulletin, 26, 923-940(2022).
[8] Levy R C, Mattoo S, Munchak L A et al. The Collection 6 MODIS aerosol products over land and ocean[J]. Atmospheric Measurement Techniques, 6, 2989-3034(2013).
[9] Remer L A, Kleidman R G, Levy R C et al. Global aerosol climatology from the MODIS satellite sensors[J]. Journal of Geophysical Research: Atmospheres, 113, D14-07(2008).
[10] Lenoble, J, Remer, L, Tanre, D et al[M]. Aerosol Remote Sensing, 323-324(2013).
[11] Deschamps P Y, Breon F M, Leroy M et al. The POLDER mission: Instrument characteristics and scientific objectives[J]. IEEE Transactions on Geoscience and Remote Sensing, 32, 598-615(1994).
[12] Liu W Q, Chen Z Y, Liu J G et al. Atmospheric stereoscopic monitoring technology and development trend in China[J]. Environmental Monitoring in China, 34, 1-9(2018).
[13] Chen L F, Shang H Z, Fan M et al. Mission overview of the GF-5 satellite for atmospheric parameter monitoring[J]. National Remote Sensing Bulletin, 25, 1917-1931(2021).
[14] Zhang M M, Wen Y, Zhu S F et al. Engineering design and in-orbit performance evaluation of polarization crossfire suite onboard the hyperspectral observation satellite[J]. Journal of Atmospheric and Environmental Optics, 18, 295-309(2023).
[15] Li Z Q, Hou W Z, Hong J et al. Directional polarimetric camera (DPC): Monitoring aerosol spectral optical properties over land from satellite observation[J]. Journal of Quantitative Spectroscopy and Radiative Transfer, 218, 21-37(2018).
[16] Diner D J, Beckert J C, Reilly T H et al. Multi-angle Imaging SpectroRadiometer (MISR) instrument description and experiment overview[J]. IEEE Transactions on Geoscience and Remote Sensing, 36, 1072-1087(1998).
[17] Nadal F, Breon F M. Parameterization of surface polarized reflectance derived from POLDER spaceborne measurements[J]. IEEE Transactions on Geoscience and Remote Sensing, 37, 1709-1718(1999).
[18] Dubovik O, Herman M, Holdak A et al. Statistically optimized inversion algorithm for enhanced retrieval of aerosol properties from spectral multi-angle polarimetric satellite observations[J]. Atmospheric Measurement Techniques, 4, 975-1018(2011).
[19] Dubovik O, Lapyonok T, Litvinov P et al. GRASP: A versatile algorithm for characterizing the atmosphere[J]. SPIE Newsroom(2014).
[20] Chen C, Dubovik O, Fuertes D et al. Validation of GRASP algorithm product from POLDER/PARASOL data and assessment of multi-angular polarimetry potential for aerosol monitoring[J]. Earth System Science Data, 12, 3573-3620(2020).
[21] Li L, Che H Z, Zhang X D et al. A satellite-measured view of aerosol component content and optical property in a haze-polluted case over North China Plain[J]. Atmospheric Research, 266, 105958(2022).
[22] Jin S K, Ma Y Y, Chen C et al. Performance evaluation for retrieving aerosol optical depth from the directional polarimetric camera (DPC) based on the GRASP algorithm[J]. Atmospheric Measurement Techniques, 15, 4323-4337(2022).
[23] Li L, Che H Z, Derimian Y et al. Retrievals of fine mode light-absorbing carbonaceous aerosols from POLDER/PARASOL observations over East and South Asia[J]. Remote Sensing of Environment, 247, 111913(2020).
[24] Li L, Derimian Y, Chen C et al. Climatology of aerosol component concentrations derived from multi-angular polarimetric POLDER-3 observations using GRASP algorithm[J]. Earth System Science Data, 14, 3439-3469(2022).
[25] Zhang X D, Li L, Chen C et al. Validation of the aerosol optical property products derived by the GRASP/Component approach from multi-angular polarimetric observations[J]. Atmospheric Research, 263, 105802(2021).
[26] Levy R C, Mattoo S, Munchak L A et al. The Collection 6 MODIS aerosol products over land and ocean[J]. Atmospheric Measurement Techniques, 6, 2989-3034(2013).
[27] Holben B N, Eck T F, Slutsker I et al. AERONET: A federated instrument network and data archive for aerosol characterization[J]. Remote Sensing of Environment, 66, 1-16(1998).
[28] Giles D M, Sinyuk A, Sorokin M G et al. Advancements in the Aerosol Robotic Network (AERONET) Version3 database: Automated near-real-time quality control algorithm with improved cloud screening for Sun photometer aerosol optical depth (AOD) measurements[J]. Atmospheric Measurement Techniques, 12, 169-209(2019).
[29] O'Neill N T, Eck T F, Smirnov A et al. Spectral discrimination of coarse and fine mode optical depth[J]. Journal of Geophysical Research: Atmospheres, 108, 4559(2003).
[30] Gergely M, Zibordi G. Assessment of AERONET-OC LWN uncertainties[J]. Metrologia, 51, 40-47(2014).
[31] Smirnov A, Holben B N, Slutsker I et al. Maritime Aerosol Network as a component of Aerosol Robotic Network[J]. Journal of Geophysical Research: Atmospheres, 114, D06204(2009).
[32] Dubovik O, Fuertes D, Litvinov P et al. A comprehensive description of multi-term LSM for applying multiple a priori constraints in problems of atmospheric remote sensing: GRASP algorithm, concept, and applications[J]. Frontiers in Remote Sensing, 2, 706851(2021).
[33] Cox C, Munk W. Measurement of the roughness of the sea surface from photographs of the sun's glitter[J]. Journal of the Optical Society of America, 44, 838(1954).
[34] Lei X F, Liu Z H, Tao F et al. Data comparison and cross-calibration between Level 1 products of DPC and POSP onboard the Chinese GaoFen-5(02) satellite[J]. Remote Sensing, 15, 1933(2023).
[35] Zhu S F, Zhu M Y, Qie L L, al et. satellite[J]. Journal of Atmospheric and Environmental Optics, 18, 310-322(02).
[36] Zhang S G, Zhang J J, Xun L N et al. Cloud detection of GF-5 remote sensing image based on multimodal fusion[J]. Journal of Atmospheric and Environmental Optics, 18, 371-382(2023).
[37] Li L, Dubovik O, Derimian Y et al. Retrieval of aerosol components directly from satellite and ground-based measurements[J]. Atmospheric Chemistry and Physics, 19, 13409-13443(2019).
[38] Bond T C, Bergstrom R W. Light absorption by carbonaceous particles: An investigative review[J]. Aerosol Science and Technology, 40, 27-67(2006).
[39] Sun H L, Biedermann L, Bond T C. Color of brown carbon: A model for ultraviolet and visible light absorption by organic carbon aerosol[J]. Geophysical Research Letters, 34, L17813(2007).
[40] Ghosh G. Dispersion-equation coefficients for the refractive index and birefringence of calcite and quartz crystals[J]. Optics Communications, 163, 95-102(1999).
[41] Longtin D R, Shettle E P, Hummel J R et al. A wind dependent desert aerosol model: Radiative properties[J]. Scientific Reports(1988).
[42] Toon O B, Pollack J B, Khare B N. The optical constants of several atmospheric aerosol species: Ammonium sulfate, aluminum oxide, and sodium chloride[J]. Journal of Geophysical Research, 81, 5733-5748(1976).
[43] Schuster G L, Dubovik O, Holben B N et al. Inferring black carbon content and specific absorption from Aerosol Robotic Network (AERONET) aerosol retrievals[J]. Journal of Geophysical Research: Atmospheres, 110, D10-17(2005).
[44] Tang I N, Munkelwitz H R. Simultaneous determination of refractive index and density of an evaporating aqueous solution droplet[J]. Aerosol Science and Technology, 15, 201-207(1991).
[45] Tang I N. Chemical and size effects of hygroscopic aerosols on light scattering coefficients[J]. Journal of Geophysical Research: Atmospheres, 101, 19245-19250(1996).
[46] Dong J T, Li Z Q, Xie Y S et al. Spatial distribution of fine-mode aerosol optical depth over land in spring 2022 based on DPC/GF-5(02)[J]. Journal of Atmospheric and Environmental Optics, 18, 323-338(2023).
Get Citation
Copy Citation Text
Shikuan JIN, Yingying MA, Zhongting WANG, Jin HONG, Feinan CHEN, Rufang TI, Cheng CHEN, Zhen LIU, Siyao ZHAI, Wei GONG. Retrievals and performance assessment of global marine aerosol optical properties from DPC/GRASP[J]. Journal of Atmospheric and Environmental Optics, 2024, 19(6): 680
Category:
Received: Sep. 18, 2023
Accepted: --
Published Online: Jan. 8, 2025
The Author Email: Shikuan JIN (jinsk@whu.edu.cn)