What really controls the atmospheric corrosion of zinc? Effect of marine aerosols on atmospheric corrosion of zinc

被引:79
作者
Cole, I. S. [1 ]
Azmat, N. S. [1 ,2 ]
Kanta, A. [2 ]
Venkatraman, M. [1 ]
机构
[1] CSIRO Mat Sci & Engn, Clayton, Vic, Australia
[2] Monash Univ, ARC Ctr Excellence Design Light Met, Clayton, Vic 3800, Australia
关键词
Aerosol; Transportation; Deposition; Zinc; Corrosion; Droplet; Oxide; Review; EXPOSED METAL PLATES; RAINWATER COMPOSITION; SURFACE TEMPERATURES; HOLISTIC MODEL; PART; MECHANISM; CHLORIDE; DEPENDENCE; PRODUCTS; SO2;
D O I
10.1179/174328009X411145
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This paper reviews the processes that control the production, transportation and deposition of aerosols and examines how these parameters affect the atmospheric corrosion of zinc on which the aerosols have deposited. The factors that influence the size and chemistry of aerosols are summarised. It is shown that marine aerosols may be acidified through the absorption of gases and strong acids, and that they may attain very low pH values. Aerosol transportation and deposition are size dependent, with aerosol deposition increasing with aerosol size and decreasing with transportation distance. Acidified marine aerosols may be transported to considerable distances from the sources of the acid precursor gases. The review examines the differences in the electrochemical phenomena on zinc surfaces under fine acidified marine or industrial aerosols and under large near neutral aqueous droplets, and shows that the low pH, fine size and high dissolved ionic salt content of the acidified marine aerosols leads to significant oxide dissolution and higher corrosion rates. Acidified marine aerosols disrupt protective oxide films and establish electrochemical cells in which anodic corrosion separation and resistance through the solution are small and oxygen depletion is unlikely. The authors' analysis shows that the susceptibility of zinc to chloride containing environments may in part be associated with the effect of acidified marine aerosols.
引用
收藏
页码:117 / 133
页数:17
相关论文
共 76 条
[1]   PASSIVE ZINC ELECTRODES - APPLICATION OF THE EFFECTIVE MEDIUM THEORY [J].
AURIANBLAJENI, B ;
TOMKIEWICZ, M .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1985, 132 (04) :869-870
[2]  
AYERS GP, 1988, CLEAN AIR, V22, P53
[3]   A GENERAL CORROSION FUNCTION IN TERMS OF ATMOSPHERIC POLLUTANT CONCENTRATIONS AND RAIN PH [J].
BENARIE, M ;
LIPFERT, FL .
ATMOSPHERIC ENVIRONMENT, 1986, 20 (10) :1947-1958
[4]   IN-SITU RAMAN-STUDY OF THE CORROSION OF ZINC-COATED STEEL IN THE PRESENCE OF CHLORIDE .1. CHARACTERIZATION AND STABILITY OF ZINC CORROSION PRODUCTS [J].
BERNARD, MC ;
HUGOTLEGOFF, A ;
PHILLIPS, N .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1995, 142 (07) :2162-2167
[5]  
BIESTEK T, 1982, ATMOSPHERIC CORROSIO, P631
[6]  
Brown P.W., 1982, Athmospheric Corrosion, Hrsg, P31
[7]   AQUEOUS-PHASE CHEMICAL PROCESSES IN DELIQUESCENT SEA-SALT AEROSOLS - A MECHANISM THAT COUPLES THE ATMOSPHERIC CYCLES OF S AND SEA SALT [J].
CHAMEIDES, WL ;
STELSON, AW .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 1992, 97 (D18) :20565-20580
[8]   OCEANIC PHYTOPLANKTON, ATMOSPHERIC SULFUR, CLOUD ALBEDO AND CLIMATE [J].
CHARLSON, RJ ;
LOVELOCK, JE ;
ANDREAE, MO ;
WARREN, SG .
NATURE, 1987, 326 (6114) :655-661
[9]   Initial NaCl-particle induced atmospheric corrosion of zinc-effect of CO2 and SO2 [J].
Chen, Z. Y. ;
Persson, D. ;
Leygraf, C. .
CORROSION SCIENCE, 2008, 50 (01) :111-123
[10]   Thermodynamic model of the system H+-NH4+-SO42--NO3--H2O at tropospheric temperatures [J].
Clegg, SL ;
Brimblecombe, P ;
Wexler, AS .
JOURNAL OF PHYSICAL CHEMISTRY A, 1998, 102 (12) :2137-2154