3Mendonza A R, Corvo A F. Outdoor and indoor atmospheric corrosion of carbon steel [ J ]. Corrosion science, 1999 (41) :75 -86.
4HEW, Odnevall Wall Nder I, LEYGREF C A laboratory study of copper and zinc runoff during first flush and steady- state condition [J]. Corrosion science, 2001 (43 } :127 - 146.
5Strandberg H,Johansson - G. The formation of black patina on copper I humid air containing traces of SO2 [ J ]. Joumal of the electrochemical society, 2000, 147 ( 70 ) : 2543 - 2551.
6FEL IuS, MARIACAL JR et al. X - ray phtoelectron spectroscopy study of the effect of nitrogen dioxide and sulfur dioxide on the atmospheric corrosion of copper at low relative humidity values [ J ]. Corrosion, 2005,61 (7) : 627 - 638.
7Graedel T E, Nassau K,Franey J P. Copper patinasformed in the atmosphere:I Introduction [ J]. Coorrosion Science, 2003,45 : 1439 - 1453.
8Watanabe Masamitsu, Higash I Yasnhiro. Tohru tanaka differences between coorron products formed on copper exposed in Tokyo in summer and winter [ J ]. Corrosion science,2003,45 : 1439 - 1453.
9Lengletm, Lopitaux J, Leygrafc et al. Analysis of corrosion products formed on copper in H2S/CI2/NO2 exposure [J]. Journal of the electrochemical society, 1995, 142 (11 ) : 3690 - 3696.
10Aastrup T, Wadsakm, Leygrafc et al. In situstudies of the initial atmospheric corrosion of copper Influence of humidity, sulfur dioxide, ozone, and nitrogen dioxide [ J ]. Joumal of the electrochemical society, 2000, 147 ( 7 ) : 2543 - 2551.