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000002705 084__ $$2WoS$$aMeteorology & Atmospheric Sciences
000002705 1001_ $$0P:(DE-Juel1)6775$$aLi, X.$$b0$$uFZJ
000002705 245__ $$aMAX-DOAS measurements in southern China: retrieval of aerosol extinctions and validation using ground-based in-situ data
000002705 260__ $$aKatlenburg-Lindau$$bEGU$$c2010
000002705 300__ $$a2079 - 2089
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000002705 440_0 $$09601$$aAtmospheric Chemistry and Physics$$v10$$x1680-7316$$y5
000002705 500__ $$aThe authors like to thank Roman Sinreich, Udo Friess, and Ulrich Platt (Heidelberg) for lending the Mini-MAX DOAS instrument, for the MiniMax software, and for fruitful discussions. The technical help and support at the field site from the PRiDe-PRD2006 campaign team, especially Rolf Haseler (Julich), Min Hu, Limin Zeng, and Yuanhang Zhang (Beijing) are gratefully acknowledged. We thank all participants of the distributed computing of the RTM. This work was supported by the China National Basic Research and Development Program
000002705 520__ $$aWe performed MAX-DOAS measurements during the PRiDe-PRD2006 campaign in the Pearl River Delta region 50 km north of Guangzhou, China, for 4 weeks in June 2006. We used an instrument sampling at 7 different elevation angles between 3 degrees and 90 degrees. During 9 cloud-free days, differential slant column densities (DSCDs) of O-4 (O-2 dimer) absorptions between 351 nm and 389 nm were evaluated for 6 elevation angles. Here, we show that radiative transfer modeling of the DSCDS can be used to retrieve the aerosol extinction and the height of the boundary layer. A comparison of the aerosol extinction with simultaneously recorded, ground based nephelometer data shows excellent agreement.
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000002705 7001_ $$0P:(DE-Juel1)16306$$aBrauers, T.$$b1$$uFZJ
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000002705 7001_ $$0P:(DE-HGF)0$$aGarland, R.M.$$b3
000002705 7001_ $$0P:(DE-HGF)0$$aWagner, T.$$b4
000002705 7001_ $$0P:(DE-HGF)0$$aDeutschmann, T.$$b5
000002705 7001_ $$0P:(DE-Juel1)16324$$aWahner, A.$$b6$$uFZJ
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